WO2019206244A1 - Climatiseur portatif - Google Patents

Climatiseur portatif Download PDF

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Publication number
WO2019206244A1
WO2019206244A1 PCT/CN2019/084393 CN2019084393W WO2019206244A1 WO 2019206244 A1 WO2019206244 A1 WO 2019206244A1 CN 2019084393 W CN2019084393 W CN 2019084393W WO 2019206244 A1 WO2019206244 A1 WO 2019206244A1
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WO
WIPO (PCT)
Prior art keywords
water
air conditioner
conditioner according
mobile air
disposed
Prior art date
Application number
PCT/CN2019/084393
Other languages
English (en)
Chinese (zh)
Inventor
叶鲁伟
冷晓刚
成日雄
陈明侠
王长刚
耿德国
Original Assignee
宁波奥克斯电气股份有限公司
奥克斯空调股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 宁波奥克斯电气股份有限公司, 奥克斯空调股份有限公司 filed Critical 宁波奥克斯电气股份有限公司
Publication of WO2019206244A1 publication Critical patent/WO2019206244A1/fr

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F1/00Room units for air-conditioning, e.g. separate or self-contained units or units receiving primary air from a central station
    • F24F1/02Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing
    • F24F1/022Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing comprising a compressor cycle
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/30Control or safety arrangements for purposes related to the operation of the system, e.g. for safety or monitoring
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/22Means for preventing condensation or evacuating condensate
    • F24F13/222Means for preventing condensation or evacuating condensate for evacuating condensate
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/30Arrangement or mounting of heat-exchangers
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25BREFRIGERATION MACHINES, PLANTS OR SYSTEMS; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS
    • F25B39/00Evaporators; Condensers
    • F25B39/04Condensers
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F2221/00Details or features not otherwise provided for
    • F24F2221/12Details or features not otherwise provided for transportable
    • F24F2221/125Details or features not otherwise provided for transportable mounted on wheels

Definitions

  • the present disclosure relates to the field of air conditioning technology, and in particular, to a mobile air conditioner.
  • the mobile air conditioners are smaller and do not need to be installed. They are easy to move and can be placed in different positions in the house.
  • the condensed water will be condensed on the top plate.
  • the condensed water is accumulated too much, it will flow down the side wall or panel of the mobile air conditioner, causing inconvenience to the user.
  • the mobile air conditioner has a chassis, and the chassis can be divided into four areas according to its water channel, namely: a water level control area, a water absorption area, a water tank area and a water pumping area.
  • the water tank area is connected with the water absorption area and the water pumping area, and the water tank area is used for buffering the water on the chassis.
  • the water in the water pumping area can be pumped to the condenser fins by the water wheel, and the water in the water absorption area is pumped out. Whether the structural design of the mobile air-conditioning chassis is reasonable will directly affect the use efficiency, service life, and duration of use of the mobile air conditioner.
  • a mobile air conditioner including an upper water tray and a chassis structure, the chassis structure including: a water absorption zone, a water tank zone, a watering zone, and a water level control zone;
  • the upper water tray is disposed at the top of the air supply volute, and comprises a water accumulation component and a water collecting plate, wherein the water collecting plate is disposed between the water collecting component and the air outlet of the air supply volute, and the water collecting component is provided with a water falling portion;
  • the falling water portion corresponds to the position of the water hitting area of the chassis structure.
  • the water collecting plate and the air outlet connection position are provided with an inclined end surface.
  • the upper water tray further includes at least one air deflector and a rotating shaft, and the air deflector is fixed to the air outlet through a rotating shaft, and the air deflector is rotatable through the rotating shaft.
  • the wind deflector has an arcuate cross section, and the surface of the wind deflector is longitudinally disposed with guide ribs.
  • the surface of the water collecting plate is inclined and the wind deflecting plate is disposed obliquely.
  • the water accumulation assembly includes a first water tank that is coupled to the air outlet, the first water tank, and the water drop portion includes a water drop hole that is disposed at a bottom of the first water tank.
  • the water accumulation assembly includes a second water tank including a guide assembly, one end of the guide assembly is coupled to the inclined bottom plate of the second water tank, and the other end is fixedly coupled to the annular outer wall of the air supply volute .
  • the guide assembly is of an inverted "L" shape including a first guide tube disposed laterally and a second guide tube disposed vertically, the second guide tube being coupled to the second guide tube One end is tilted.
  • the water accumulation assembly includes a first water tank and a second water tank, the first water tank being located between the water collecting plate and the second water tank;
  • a cofferdam is arranged between the first water tank and the second water tank, and the cofferdam is provided with a notch;
  • the bottom of the first water tank is provided with a water drop hole, and the second water tank is connected to the guide assembly.
  • a downpipe is disposed at a lower end of the water drop hole, and a notch is provided at an exit edge of the downpipe, and the inner wall of the downpipe is inclined downward.
  • the outer wall of the downpipe is threaded.
  • At least one tooth is provided at the lower port edge of the water drop hole.
  • the plurality of teeth are evenly distributed.
  • the tooth openings are triangular grooves with sharp edges or acute angles.
  • the water accumulation assembly further includes a water deflector and a flow guide, the water deflector is disposed on the water collecting plate, and the flow guiding member is located at a periphery of the air outlet and the water collecting plate.
  • the water collecting plate is rectangular, and the two edges of the water collecting plate are respectively connected to the air outlet, the first water tank, and the other two edges of the water collecting plate are provided with a water blocking plate.
  • the water collecting plate is rectangular, and the two edges of the water collecting plate are respectively connected to the air outlet and the second water tank, and the other two edges of the water collecting plate are provided with a water blocking plate.
  • the flow guide is a channel structure.
  • the water drop hole is provided with a flow guiding assembly, one end of which is sealingly connected to the water drop hole.
  • the flow directing component is a hose.
  • the mobile air conditioner further includes a middle water receiving tray, and the other end of the flow guiding assembly is connected to a guiding hole disposed on the middle water receiving tray, and the guiding hole is disposed through the middle water receiving tray.
  • the flow guiding assembly includes a first flow guiding portion, a second flow guiding portion, and a third flow guiding portion, the first guiding portion is disposed on the water collecting hole, and the second guiding portion is disposed at On the air supply volute, the third flow guiding portion is disposed on the guiding hole; the first guiding portion is connected to the second guiding portion, and the second guiding portion is connected to the third guiding portion.
  • the second flow guide is disposed along an outer edge of the arc of the blower volute, and the second flow guide is tubular or trough-like.
  • the second flow guiding portion is in the shape of a notch having a U-shaped cross section, and the open end surface of the second flow guiding portion is sealingly connected with the outer circumferential surface of the arc of the air supply volute A pipe structure with an internal chamber.
  • the second flow guiding portion and the center axis of the blower volute in the width direction are coplanar.
  • the third flow guiding portion is disposed on the intermediate water tray, and the third flow guiding portion is obliquely disposed toward the hole.
  • a connection assembly is disposed between the first flow guiding portion and the water inlet hole, the first flow guiding portion and the second flow guiding portion, the second flow guiding portion, and the third flow guiding portion.
  • connection assembly includes a first connection portion and a second connection portion, the first connection portion and the second connection portion being respectively disposed on the two components connected to each other, the first connection portion and the second connection The part is fitted and detachably connected.
  • the first connecting portion includes a fixing block of a U-shaped structure, the fixing block is provided with a card slot extending along the U-shaped structure; and the second connecting portion includes a mating block of the U-shaped structure, the matching block An extension member is provided, and the extension member can be caught in the card slot.
  • a flexible layer is disposed between the card slot and the extension.
  • the angle of inclination of the inclined end faces is 4-5°.
  • the water deflector and the air deflector have an angle of inclination of 1-2°.
  • the upper water tray further includes a drainage assembly
  • the drainage assembly includes a drainage plate
  • the drainage plate and the upper end of the evaporator are fixedly connected
  • the water blocking assembly is disposed around the drainage plate
  • at least one of the drainage plates is disposed
  • the drain hole and/or the water retaining assembly are provided with a flow guiding hole at a position corresponding to the first water tank.
  • At least one guide strip is provided on the drainage plate.
  • a flow port is provided on the guide strip.
  • a filtering device is disposed within the flow aperture.
  • the drain plates are disposed obliquely.
  • the chassis structure further includes:
  • At least one water retaining rib parallel to the cross section of the connecting passage, is disposed at any position in the axial direction of the connecting passage.
  • the top end of the water retaining rib is provided with at least one notch.
  • the chassis structure further includes:
  • the gathering department is located between the watering area and the sink area and is close to the gathering area of the watering area.
  • the chassis structure further includes a water striking structure, the water striking structure is disposed in the water pumping area, and the water striking structure comprises:
  • At least one water wheel which is disposed above the water tank and at least partially accommodated in the water tank;
  • the water level control zone is provided with a liquid level warning device
  • the liquid level early warning device comprises:
  • a water storage tank comprising a first water storage tank and a second water storage tank for collecting the accumulated water generated during the operation of the air conditioner;
  • Level switch including:
  • the first level liquid level switch is suspended and fixed above the first water storage tank for monitoring the water level of the first water storage tank;
  • a second level liquid level switch is suspended and fixed above the second water storage tank for monitoring the water level of the second water storage tank;
  • the first-level alarm signal is triggered; when the water level of the second water storage tank rises, the level liquid level switch When the float reaches the secondary alarm position, the secondary alarm signal is triggered.
  • the chassis structure further includes a drainage structure, the drainage structure comprising:
  • a filter assembly mounted in a recess provided in the chassis
  • the drain nozzle structure is connected to the water pump through the second communication pipe.
  • the drain nozzle structure includes a drain nozzle body, the drain nozzle body includes a fixed plate, the fixed plate is provided with a drain joint and an external water outlet, and the second communication pipe is connected with the drain joint, and the water cover It is connected to the external water outlet; and the water outlet joint intersects with the external water outlet and penetrates inside.
  • At least one support rib is disposed in the sink region, and the support rib is a plate-like structure connected to the bottom of the sink region.
  • FIG. 1 is a schematic overall view of the chassis structure of the present disclosure
  • FIG. 2 is a partial schematic view of the chassis structure of the present disclosure
  • Figure 3 is a schematic view of a plurality of water retaining ribs
  • Figure 4 is a schematic structural view of the plug portion
  • Figure 5 is a schematic view of the structure of the water retaining rib
  • FIG. 6 is a partial schematic view 2 of the chassis structure of the present disclosure.
  • Figure 7 is a schematic view of the convergence portion of the present disclosure.
  • Figure 8 is a schematic view showing the installation position of the water wheel of the present disclosure.
  • Figure 9 is a schematic structural view 1 of the water tank of the present disclosure.
  • Figure 10 is a schematic structural view 2 of the water tank of the present disclosure.
  • Figure 11 is a schematic structural view of the water wheel of the present disclosure.
  • Figure 12 is a top view of the water wheel of the present disclosure.
  • Figure 13 is a top view of the water wheel of the present disclosure.
  • Figure 14 is a schematic overall view of the fastening device of the liquid level switch of the present disclosure.
  • Figure 15 is a schematic view of the screw column of the present disclosure.
  • Figure 16 is a schematic view showing the connection of the liquid level switch and the liquid level switch fixing bracket of the present disclosure
  • Figure 17 is a schematic overall view of the liquid level switch of the present disclosure.
  • Figure 18 is a schematic view of the water level control area of the present disclosure.
  • Figure 19 is a schematic view of the multi-level liquid level switch of the present disclosure.
  • Figure 20 is a second schematic diagram of a multi-level liquid level switch of the present disclosure.
  • Figure 21 is a schematic view of the float of the present disclosure.
  • Figure 22 is a schematic structural view of a drainage structure of the present disclosure.
  • Figure 23 is a schematic view showing the position of the groove of the chassis structure of the present disclosure.
  • Figure 24 is a schematic view of the filter assembly of the present disclosure.
  • Figure 25 is an enlarged view of A of Figure 23;
  • Figure 26 is a schematic view showing the structure of the drain nozzle of the present disclosure.
  • Figure 27 is a schematic view showing the installation of the drain nozzle structure of the present disclosure.
  • Figure 28 is a schematic view of the notch of the drain nozzle of the present disclosure.
  • Figure 29 is a schematic view showing the installation of the notched drain nozzle of the present disclosure.
  • Figure 30 is a schematic structural view of the external notch member of the present disclosure.
  • Figure 31 is a schematic view of the support rib of the present disclosure.
  • FIG. 32 is a structural diagram of a mobile air conditioner according to an embodiment of the present disclosure.
  • FIG. 33 is a top plan view of an upper water tray according to an embodiment of the present disclosure.
  • Figure 34 is a structural view of a water accumulation assembly according to Embodiment 11 of the present disclosure.
  • Figure 35 is a structural view of the air deflector according to the embodiment of the present disclosure.
  • Figure 36 is a structural view of a water accumulation assembly according to Embodiment 12 of the present disclosure.
  • FIG. 37 is a structural diagram of a water accumulation assembly according to Embodiment 13 of the present disclosure.
  • Figure 38 is a structural view showing a water drop hole according to Embodiment 14 of the present disclosure.
  • Figure 39 is a structural view of a water drop hole according to Embodiment 15 of the present disclosure.
  • FIG. 40 is a structural diagram of a drainage assembly according to Embodiment 16 of the present disclosure.
  • Figure 41 is a structural diagram of a drainage assembly according to Embodiment 17 of the present disclosure.
  • Figure 42 is a structural diagram of a drainage assembly according to Embodiment 18 of the present disclosure.
  • FIG. 43 is a front elevational view showing the structure of a flow guiding assembly according to an embodiment of the present disclosure.
  • Figure 44 is a side view showing the structure of the flow guiding assembly according to the embodiment of the present disclosure.
  • Figure 45 is a structural diagram of a connection assembly according to an embodiment of the present disclosure.
  • the present invention provides a mobile air conditioner including a chassis structure.
  • the chassis structure includes: a water absorption area 321, a water level control area 313, a water tank area 322, and a water catching area 330; Also includes:
  • a connecting channel 3925 is disposed between the water absorbing area 321 and the water tank area 322 for connecting the water absorbing area 321 and the water tank area 322;
  • At least one water retaining rib 3926 which is parallel to the cross section of the connecting passage, is disposed at an arbitrary position in the axial direction of the connecting passage 3925 for isolating the water absorbing area 321 from the water tank area 322.
  • the water absorbing zone 321 is separated from the water tank area 322 by the water retaining rib 3926, so that the water tank area 322 can store a certain amount of accumulated water.
  • the water accumulated in the water tank area 322 can be preferentially concentrated to the water collecting area, and the water is pumped.
  • the wheel hits the fins of the condenser, which can also effectively prevent the backwater from flowing back to the water absorption zone 321, so that when the water wheel is working, the phenomenon of insufficient condensed water in the watering area 321 is avoided, resulting in unnecessary waiting. time.
  • the bottom of the suction zone 321 is provided with a recess 323.
  • the advantage of this arrangement is that the suction zone 321 is provided with a recess 323 which can effectively buffer a portion of the accumulated water when there is too much water.
  • the water retaining rib 3926 comprises two arrangements.
  • the water retaining rib 3926 and the connecting channel 3925 are integral, and the water retaining rib 3926 does not need to be separately manufactured, which reduces the processing procedure and avoids the water retaining rib 3926. The extra cost wasted by manufacturing alone.
  • the water retaining rib 3926 is a self-contained structure that cooperates with at least one plug portion 320 provided on the connecting passage 3925, and the water absorbing portion 321 is changed by inserting the water retaining rib 3926 into the different plug portion 320. With the size of the area of the sink area 322, the amount of water storage is adjusted.
  • the chassis structure further includes: a convergence portion 332 for connecting the water tank area 322 and the water-removing area 330. It is located between the water hitting area 330 and the water tank area 322, and is adjacent to the converging port 331 of the water hitting area 330;
  • the converging portion 332 is a concave structure having a low circumference in the middle, and the arrangement is advantageous in that the accumulated water is preferentially introduced into the converging portion 332 before the accumulated water enters the water collecting portion 330, so that the accumulated water is partially buffered in the converging portion 332; Relieve the speed at which the accumulated water enters the water-storing area 330 and reduce the load on the water wheel.
  • the concave structure of the convergence portion 332 is composed of a plurality of converging surfaces, and the converging surface includes: a converging surface 336, a converging surface 337, a converging surface 338, and a converging surface 339, and the four converging surfaces are reversed.
  • the time-of-needle combination is spliced, the convergence surfaces are all inclined, and the adjacent convergence surfaces are each presented with a certain angle, and all the convergence surfaces intersect at the convergence point 333.
  • This arrangement has the advantage that a portion of the accumulated water can be buffered in the converging portion 332 before entering the water hitting area 330; at the same time, the speed at which the accumulated water flows into the water hitting area 330 can be slowed down.
  • the angle between the adjacent converging surfaces is 174 degrees - 178 degrees.
  • the advantage of such an arrangement is that the angle between the adjacent converging surfaces is prevented from being too large, so that the entire converging surface is rendered flat, and the water accumulation cannot be effectively buffered; on the other hand, the sandwich between the adjacent converging portions 332 is prevented. The angle is too small, causing the entire convergence portion 332 to be too deep, and too much water is accumulated in the buffer, so that the accumulated water cannot enter the watering area 330 in time.
  • the inclined direction of the converging surface 336 and the converging surface 338 is inclined from the water tank portion 322 to the converging portion 332 from high to low, thereby preferentially guiding the water at the water tank portion 322 to the converging portion 332, thereby making the chassis The water preferentially flows to the watering area 330.
  • the convergence surface is a plane, and all the convergence surfaces intersect at the convergence point 333.
  • the advantage of this arrangement is that it facilitates the forming of the converging surface.
  • the converging surface is a curved surface, and all of the converging surfaces intersect at the converging point 333 to provide better cushioning of the accumulated water flowing into the converging portion 332.
  • the concave structure of the converging portion 332 is presented as a round bottom pot-shaped structure, so that the accumulated water can buffer a part of the accumulated water in the converging portion 332 before entering the water hitting area 330; at the same time, the stagnant water can be slowed down into the water hitting area 330. speed.
  • the design of the round bottom also avoids the accumulation of sediment at a point that is difficult to clean.
  • a water blocking block 335 is disposed between the converging portion 332 and the water-removing area 330, and the converging portion 332 is separated from the water-removing area 330.
  • the water blocking block 335 is provided with a converging port 331, a converging port 331 and a converging point 333. The positions are staggered from each other, so that the accumulated water can flow directly from the convergence point 333 into the water-storing area 330, thereby functioning as a better water storage buffer.
  • a water retaining structure 3310 is disposed between the convergence portion 332 and the water tank region 322, and the water retaining structure 3310 is provided with a water inlet 334.
  • the water inlet 334 and the convergence point 333 are mutually displaced, and the water inlet 334 and the convergence port 331 are positioned. The water is shifted from each other so that the accumulated water passes through the converging point 333 and then flows into the converging port 331 from the converging point 333 to buffer the accumulated water at the converging point 333 to prevent the accumulated water from directly flowing into the converging port 331.
  • a water retaining structure 3310 is disposed around the convergence portion 332.
  • the water retaining structure 3310 separates the water tank region 322 from the convergence portion 332.
  • the water retaining structure 3310 defines a plurality of water inlets 334, and the water inlet 334 is disposed at the convergence portion 332.
  • the water level is higher than the convergence point 333, the water inlet 334 is offset from the convergence point 333, and the water inlet 334 and the convergence port 331 are staggered.
  • the advantage of this arrangement is that the accumulated water smoothly enters the converging portion 332 from the sink region 322.
  • the mobile air conditioner as described above is different from the embodiment in that the mobile air conditioner further includes a water-washing structure for squeezing the condensed water onto the condenser fins, in combination with FIG. 1, FIG. 8 to FIG.
  • the water pumping structure comprises: a dozen water tanks 316 for accumulating condensed water; at least one water wheel 315, at least partially accommodated in the water tank 316, and condensed water accumulated in the water tank 316
  • the water motor 317 is connected to the water wheel 315 and drives the water wheel 315 to rotate; the bottom surface of the water tank 316 is a tank body 318, and the tank body 318 is recessed from the two ends to the middle, thereby forming a high middle and low side on both sides.
  • the groove structure 318 can be configured to collect the condensed water flowing into the tank body 318 at the bottom of the tank body 318, which is advantageous for eliminating the water stagnant angle of the water tank 316 and avoiding idle waste of part of the condensed water.
  • the water wheel 315 can pump the condensed water accumulated in the tank body 318 to the fins of the condenser as much as possible, thereby improving the working efficiency of the water wheel 315;
  • the groove structure of the groove body 318 is an arc structure conforming to the shape of the water wheel 315.
  • the tank body 318 includes a first trough section 3112 and a second trough section 3113; the first trough section 3112 is a downwardly inclined smooth slope so that the condensed water can quickly flow into the water tank; the second trough section 3113 is a water wheel The bottom end of the first slot section 3112 is smoothly connected with one end of the second slot section 3113, and the bottom end of the first slot section 3112 is higher than the bottommost end of the second slot section 3113. The bottom of the curved surface of the two groove segments 3113 is at the lowest position relative to the groove body 318;
  • the circumferential shape of the second slot section 3113 is adapted to the circumferential shape of the water wheel 315, and the water wheel 315 is mounted above the bottom surface of the second slot section 3113, so that the water pumping efficiency of the water wheel 315 is further improved. high;
  • the second slot section 3113 is flush with the end of the first slot section 3112 or higher than the other end of the second slot section 3113.
  • the condensed water can directly flow into the slot 318.
  • the two slots 3113 are gathered at the bottom end;
  • the two trough sections are matched so that the condensed water can flow into the trough body 318 better, and the water inrush angle of the trough body 318 is eliminated, so that the structural performance of the water tank 316 is better.
  • the water tank 316 further includes a step structure 319.
  • the top of the step structure 319 is further provided with a buffering surface.
  • the platform extends slightly toward the side of the water tank 316, and is connected with the tank body 318 to facilitate the accumulation of condensed water in the tank body 318;
  • the buffering table comprises a first side surface and a second side surface.
  • the first side surface and the second side surface are located on opposite sides of the buffering table.
  • the first side surface and the second side surface are inclined outwardly, and the second side surface is engaged with the tank body 318.
  • a first blocking piece 3110 and a second blocking piece 3111 are further disposed on both sides of the recessed portion of the groove body 318.
  • the first blocking piece 3110 and the second blocking piece 3111 are higher than the water-sink 316, and the first blocking piece 3110 and the second blocking piece 3111 Can limit the circulation path of condensed water;
  • the top ends of the first flap 3110 and the second flap 3111 are provided with one or more notches to facilitate the accumulation of condensed water in the water tap 316.
  • the first baffle 3110 and the second baffle 3111 are each a water table below the other side of the trough body 318.
  • the vertical height of the water table relative to the chassis is higher than the trough body, the first baffle 3110 and the second block.
  • the depth of the notch of the piece 3111 is flush with the surface of the water table to facilitate the flow of liquid into the tank.
  • the mounting position of the second flap 3111 corresponding to the water wheel 315 is provided with a groove, and the bottom end of the groove is a downwardly concave curved surface, the groove is for accommodating the connecting shaft of the water pump 317, and the connecting shaft is connected to the water. Wheel 315;
  • the shape of the groove is adapted to the circumferential shape of the connecting shaft of the water motor 317.
  • the water-washing structure is disposed in the water-storing area 330, and the water-storing area 330 is between the water-absorbing area 321 and the water level control area 313, and the water-storing area 330 is engaged with the water tank area 322;
  • a condenser is arranged above the water tank area 322, the condenser includes at least two fins, and the water wheel 315 is installed between the two fins, and the water wheel 315 hits the condensed water accumulated in the tank body 318 to two. On the fins, the evaporation of the condensate can be accelerated, and the structure is arranged more closely, saving space.
  • the number of the water wheel 315 is one.
  • the water wheel 315 includes a first water wheel 3151, a second water wheel 3152, and a third water pump. Wheel 3153;
  • the first water wheel 3151 and the second water wheel 3152 and the third water wheel 3153 are both disposed above the water tank 316.
  • the water pump 317 is connected to the first water wheel 3151 and the second water wheel 3152 via a first rotating shaft 3174, and the first rotating shaft 3174 drives the first water wheel 3151 and the second water wheel 3152 to rotate coaxially in the same direction;
  • the first rotating shaft 3174 is connected to the second rotating shaft 3175 via a gear set; the second rotating shaft 3175 drives the third watering wheel 3153 to rotate.
  • the second rotating shaft 3175 is driven by the gear set, and is further opposite to the rotating direction of the first rotating shaft 3174; then, the first water wheel 3151 and the second water wheel 3152 rotate in the same direction, and the third water wheel 3153 and the first water pump The direction of rotation of the wheel 3151 or the second water wheel 3152 is opposite.
  • the second rotating shaft 3175 is disposed coaxially with the first rotating shaft 3174.
  • the gear set includes a first tapered tooth 3171, a second tapered tooth 3172, and a third tapered tooth 3173; the first tapered tooth 3171 is coupled to the first rotating shaft 3174 and rotates in the same direction; the second tapered tooth 3172 and the second rotating shaft The 3175 is coupled and rotated in the same direction; the third bevel 3173 is simultaneously meshed with the first bevel tooth 3171 and the second bevel tooth 3172 such that the first bevel tooth 3171 and the second bevel tooth 3172 rotate in opposite directions.
  • the third water wheel 3153 rotates in the opposite direction with the first water wheel 3151 or the second water wheel 3152, and can condense the condensed water in the opposite direction, thereby increasing the contact area between the condenser and the condensed water, thereby improving the volatilization efficiency.
  • the water wheel 315 includes a first water wheel 3151 and a second water wheel 3152; and the second shaft 3175 is non-coaxial with the first shaft 3174.
  • the first bevel tooth 3171 and the second bevel tooth 3172 are in mesh with each other, so that the first water wheel 3151 and the second water wheel 3152 are rotated in opposite directions;
  • the first bevel tooth 3171 and the first rotating shaft 3174 are of a unitary structure; the second bevel tooth 3172 and the second rotating shaft 3175 are of a unitary structure;
  • first bevel tooth 3171 and the first rotating shaft 3174 are of a split structure; the second bevel tooth 3172 and the second rotating shaft 3175 are of a split structure.
  • the mobile air conditioner as described above is different from the embodiment in that, as shown in FIG. 14 to FIG. 21, the mobile air conditioner further includes at least one liquid level warning device for monitoring the water accumulated in the water level control area of the chassis.
  • the liquid level warning device includes:
  • the water storage tank includes a first water storage tank 3947 and a second water storage tank 3948 for collecting the accumulated water generated during the operation of the air conditioner;
  • the liquid level switch comprises: a first stage liquid level switch 3921, suspended and fixed above the first water storage tank 3947 for monitoring the water level of the first water storage tank 3947; the second level liquid level switch 3922, suspended and fixed at the first Above the second storage tank 3948, for monitoring the water level of the second water storage tank 3948;
  • the height of the water level is different, so as to ensure that after the first level liquid level switch 3921 triggers the alarm, it is ensured that there is enough time for the air conditioner to respond. Issue an adjustment command.
  • the timing of triggering the alarm by the first-stage liquid level switch 3921 and the second-stage liquid level switch 3922 is different to realize the control of the operation of the mobile air conditioner.
  • the first stage liquid level switch 3921 is connected to the liquid level switch fixing bracket 1394 through the connecting rod, so that the first level liquid level switch 3921 is suspended and fixed above the first water storage tank 3947, and the second level liquid level The switch 3922 is connected to the liquid level switch fixing bracket 2944 through the connecting rod 2, so that the second level liquid level switch 3922 is suspended and fixed above the second water storage tank 3948, thereby effectively avoiding the direct connection between the liquid level switch and the chassis. Easy to install and disassemble and repair, avoid unnecessary trouble.
  • the level of the primary alarm is different from the height of the secondary alarm location.
  • the advantage of this setting is that there is a certain time interval between the first level alarm and the second level alarm, so that after the air conditioner first level liquid level switch 3921 triggers the alarm, there is enough time to respond and issue an adjustment command in time. The occurrence of the first-level alarm and the second-level alarm are avoided at the same time.
  • the lower surface of the float of the first stage liquid level switch 3921 is lower than the upper edge of the first water storage tank 3947. It is ensured that the first level liquid level switch 3921 can effectively respond before the water accumulates in the first water storage tank 3947; preferably, the lower surface of the float of the second level liquid level switch 3922 is lower than the second water storage tank 3948 Upper edge. It is ensured that the second level liquid level switch 3922 can effectively respond before the water accumulates in the second water storage tank 3948.
  • the depth of the first water storage tank 3947 is different from the depth of the second water storage tank 3948.
  • the advantage of this arrangement is that, on the one hand, space can be saved better; on the other hand, considering the structural arrangement of the chassis, the first water storage tank 3947 can store as much water as possible before the first level alarm.
  • the first level liquid level switch 3921 and the second level liquid level switch 3922 are different in height from the water level control area. There is a certain time interval between the first level liquid level switch 3921 triggering alarm and the second level liquid level switch 3922 triggering the alarm, so that the air conditioner does not perform two alarm signals at the same time and loses protection significance.
  • the bottom of the first water storage tank 3947 and the second water storage tank 3948 are provided with a water outlet.
  • the advantage of the arrangement is that the accumulated water can be discharged in time to avoid potential safety hazards, and on the other hand, convenient. Discharge of water and after-sales maintenance.
  • the liquid level switch can be in the form of a float type liquid level switch or a reed switch liquid level switch.
  • the liquid level switch further includes a fastening device for fastening between the liquid level switch 3913 and the air conditioning chassis, and the fastening device comprises:
  • the liquid level switch fixing bracket 3912 is in an "L" shape, and the end surface 39124 of the liquid level switch fixing bracket 3912 is provided with at least one through hole, the liquid level switch 3913 is connected to the end surface 39124, and the liquid level switch fixing bracket 3912 is provided on the side 39123.
  • the lower edge is provided with a connecting leg 39121, and the connecting leg 39121 is a thin-walled boss structure with a socket groove at the bottom;
  • the screw post 3911 is disposed on the chassis of the air conditioner, and the screw post 3911 is a stepped structure including a small column 39112 and a large column. 39111;
  • the socket groove of the connecting leg 39121 is sleeved outside the small column 39112 to form a detachable socket connection for limiting the liquid level switch fixing bracket 3912.
  • Connecting the liquid level switch 3913 to the chassis of the air conditioner avoids the occurrence of misalignment that may occur when the liquid level switch 3913 is connected to other non-chassis structures of the air conditioner, and further, the direct connection of the liquid level switch fixing bracket 3912 to the chassis is achieved.
  • the liquid level switch fixing bracket 3912 needs to be disassembled, which is convenient for installation and disassembly maintenance, and also avoids the damage caused by the frequent disassembly liquid level switch 3913 to the liquid level switch 3913.
  • the inner section of the socket groove of the connecting leg 39121 is the same as the sectional shape of the small column 39112, and the small column 39112 is inserted into the socket groove to be freely slidable in the axial direction.
  • the stability of the sleeve groove after the sleeve 39112 is ensured is convenient for installation and disassembly.
  • the center of the upper surface of the screw post 3911 is provided with a threaded hole 39113; the upper surface of the connecting leg 39121 is provided with a through hole 39122, and the through hole 39122 is inserted through the connecting leg 39121; the sleeve groove of the connecting leg 39121 is sleeved
  • the through hole 39122 of the upper surface of the connecting leg 39121 is aligned with the threaded hole 39113 of the upper surface of the screw post 3911 to achieve the concentricity of the hole position to avoid misalignment during installation; the through hole is passed through a screw.
  • 39122 is fixed to the screw hole 39113, and the liquid level switch fixing bracket 3912 is fixed to the screw post 3911, thereby further restricting the movement of the liquid level switch 3913 in the up and down direction, and also facilitating the later maintenance.
  • the cross-sectional area of the small column 39112 is smaller than the cross-sectional area of the large column 39111.
  • the upper surface of the large post 39111 can abut the bottom surface of the connecting leg 39121 to facilitate the installation in position while ensuring the positional accuracy of the liquid level switch 3913.
  • the liquid level switch 3913 is connected to the outwardly extending structure 39124 of the liquid level switch fixing bracket 3912 via the connecting rod 39131, and the liquid level switch fixing bracket 3912 is fastened to fix the liquid level switch 3913, thereby effectively
  • the direct connection of the liquid level switch 3913 to the air conditioning chassis is avoided, which facilitates installation and disassembly maintenance and avoids unnecessary troubles.
  • the structure of the screw post 3911 includes the following two types: First, the screw post 3911 is a separately designed structure, which is separated from the air conditioner chassis, and is fastened by a screw fastening method or a snapping manner or a mounting post provided on the chassis of the air conditioner. The connection of the screw post 3911 to the air conditioning chassis is achieved by means of a socket.
  • the advantage of this arrangement is that multiple holes can be made in the chassis, and the screw posts can be installed in a suitable position, which avoids the waste of cost by designing multiple screw columns on the chassis, and can also increase the overall aesthetics.
  • the screw post 3911 and the air conditioner chassis are integrated, which avoids unnecessary processes caused by the separate processing of the screw post 3911, thereby causing a large waste.
  • liquid level switch fixing bracket 3912 is provided with a knob, and the height of the liquid level switch 3913 is adjusted by the knob, thereby improving the use precision, facilitating pre-sales debugging and after-sales maintenance.
  • a screw column is arranged around the water storage tank, and the connection of the liquid level switch fixing bracket is realized by the connection of the screw column and the liquid level switch fixing bracket, and the liquid level switch is fixed indirectly.
  • the fixing of the liquid level switch fixing bracket 1394 is realized by the connection of the screw column 3945 and the liquid level switch fixing bracket 1394, and the liquid level is realized by the connection of the screw column 2946 and the liquid level switch fixing bracket 2944. The fixing of the switch fixing bracket 2944.
  • the first-level alarm position is lower than the upper edge of the water storage tank, so that the mobile air conditioner can receive the signal in time, the speed of the air supply fan is slowed down, the temperature of the condenser is increased, and the possibility that the air conditioner continues to operate normally causes the water to overflow. Sex. It is ensured that the first level liquid level switch 3921 can effectively respond before the water storage tank is filled with water.
  • the first level liquid level switch 3921 is connected to the air conditioning bottom plate through the liquid level switch fixing bracket, and the fixing and dismounting of the liquid level switch liquid level switch 3921 is realized by the fixing and dismounting of the liquid level switch fixing bracket to prevent the first level liquid level.
  • the damage of the switch 3921 is frequently caused by the disassembly; the second-stage liquid level switch 3922 is connected to the air-conditioning bottom plate through the liquid level switch fixing bracket, and the fixing of the liquid level switch fixing bracket is realized by the fixing and dismounting of the liquid level switch fixing bracket to realize the fixing of the liquid level switch liquid level switch 3922 With the disassembly, the damage caused by the frequent removal of the second-stage liquid level switch 3922 is prevented.
  • the first level liquid level switch 3921 and the second level liquid level switch 3922 may be in the form of a float type liquid level switch or a reed switch liquid level switch.
  • the water storage tank is provided with a water outlet at the bottom of the tank so that the water can be discharged in time in an emergency.
  • the reserve water storage area is provided with a water outlet at the bottom of the tank, which can effectively discharge the accumulated water.
  • the liquid level switch can also be a multi-stage liquid level switch, and the multi-level liquid level switch 3930 is suspended and fixed above the water storage tank for monitoring the water level of the water storage tank.
  • the multi-level liquid level switch includes:
  • the guiding rod 3936 is presented as a conical column structure, and the sectional area of the conical column structure is gradually decreased along the rising direction of the water level for defining the position of the floating ball 3931 and the float, and guiding the movement of the floating ball 3931 and the float.
  • the floating ball 3931 is in the form of a ring structure, which surrounds the guiding rod 3936 and is disposed on the largest side of the cross-sectional area of the guiding rod 3936.
  • the floating ball 3931 floats upward along the guiding rod 3936, and floats when the water level drops.
  • the ball 3931 descends along the guide bar 3936 until it falls back to the initial position;
  • the floats in one or more, are in a ring structure, which surrounds the guide rod 3936 and are named as the first stage float 3932, the second stage float 3933, and the third stage float 3934 along the rising direction of the water level.
  • the floats are arranged upward by natural numbers. The sequence is sequentially arranged above the floating ball 3931. When the water level floats, the float floats along the guiding rod 3936. When the water level drops, the float descends along the guiding rod 3936 until it falls back to the initial position;
  • the multi-level liquid level switch 3930 triggers an alarm, the speed of the air supply fan becomes slow, the temperature of the condenser rises, and the water removal efficiency increases; when the water level continues to rise
  • the floating ball 3931 drives the first stage float 3932 to continue to float.
  • the secondary float 3933 is touched, the blowing fan speed is further slowed down, the condenser temperature is increased, and the water removal efficiency is further enhanced; when the water level continues to rise, the floating ball 3931 drives The first stage float 3932 and the second stage float 3933 continue to float.
  • the third stage float 3934 is touched, the liquid level switch alarms and the mobile air conditioner stops.
  • the advantage of this setting is that the multi-protection mode is adopted to enhance the monitoring of the water level of the storage tank, and at the same time, the air conditioner is multi-adjusted to enhance the protection of the mobile air conditioner.
  • the inner ring of the float comprises a ring 39311 and a second ring 39313, and the area of the second ring 39313 is larger than the area of a ring 39311.
  • the guide bar 3936 is provided with a guide rail 3937, so that the movement of the float ball 3931 and the float can be better guided, and all the floats can be prevented from rotating or flipping during the movement.
  • a guide groove 39312 is disposed around the inner ring of the float, the width of which coincides with the width of the guide rail 3937, and a gap in which the float moves along the guide rail 3937 is left.
  • the inner ring of the single float has a different cross-sectional area at different positions along the rising direction of the water level, and has the same cross-sectional area as the position of the guide rod 3936.
  • the advantage of this setting is that each float is in a fixed position, which can accurately sense the position of the liquid level, prevent all the floats from being connected together, and generate unnecessary touches, misleading the alarm of the multi-level liquid level switch 3930. .
  • a gap is left between the float ball 3931 and the float and the adjacent float to prevent the contact of the adjacent float from interfering with the alarm signal.
  • the guiding rod 3936 is provided with a snap ring 3935, and the snap ring 3935 is disposed above all the floats to limit the float to prevent the float from slipping out.
  • the side of the guide rod 3936 having a smaller cross-sectional area is provided with a connecting rod 3938, which is connected to the multi-stage liquid level switch fixing bracket 3939 through the connecting rod 3938 to realize the connection between the multi-level liquid level switch and the chassis. Avoid the connection between the multi-level liquid level switch and the chassis or the air conditioner side plate. This can avoid the damage caused by frequent disassembly and assembly of the multi-level liquid level switch. Directly disassemble the liquid level switch fixing bracket to achieve multi-level liquid level. Disassembly and assembly of the switch.
  • the inner rings of different floats are different in the rising direction of the water level and at different positions, but the same as the cross-sectional area of the respective guide rods 3936, ensuring that the floats surround different positions of the guide rods 3936.
  • the guide rails 3937 are at least one, and the plurality of guide rails 3937 can better ensure the stability of the float when floating. All the arrays of guide rails 3937 are distributed around the guide rods 3936.
  • the symmetrical structure can ensure the symmetry about the guide rods 3936 when the floats are floating, and further increase the stability during the rise of the floats.
  • the float can have multiple stages, one, two, three...N-level floats, N is the total number of all floats, and the N-level floats are arranged above the floating ball 3931 in the order of natural numbers, all floats are along the guide rod 3936 Up and down, when the liquid level keeps rising, the float ball 3931 moves upward along the guide rod 3936, sequentially touches the N-stage float and drives all the touched floats to move upward together, and triggers the corresponding N-level alarm signal, when triggering N- When the level 1 signal is used, the speed of the air supply fan becomes slower, the temperature of the condenser rises, and the water removal efficiency increases.
  • the multi-level liquid level switch 3930 alarms and the mobile air conditioner stops.
  • the advantage of this setting is that the number of floats is adjusted according to the depth of different air conditioning water storage tanks, and the monitoring of the water level of the water storage tank is realized more accurately, and the protection of the air conditioner is enhanced.
  • the mobile air conditioner as described above is different from the embodiment in that the mobile air conditioner further includes a drainage structure.
  • the drainage structure includes a filter assembly 361, a water pump 362, and a drain nozzle structure 363. And a first communication conduit 364 and a second communication conduit 365;
  • the filter assembly 361 is mounted in a recess 323 provided in the chassis, the recess 323 is recessed downwardly from the plane of the chassis, and the filter assembly 361 is disposed in the recess 323 to help suck the liquid accumulated in the chassis; the filter assembly 361 passes
  • the first communication pipe 364 is connected to the water inlet of the water pump 362, and the water outlet of the water pump 362 is connected to the drain structure 363 at the edge of the chassis through the second communication pipe 365;
  • the condensed water accumulated in the chassis flows into the lower groove 323.
  • the condensed water filters the impurities in the liquid through the filter screen of the filter assembly 361, flows into the water pump 362, and then flows. Passing through the second communication conduit 365 and discharging the liquid filtered through the filter assembly by the drain nozzle structure 363;
  • the water pump 362 transmits the filtered condensate to prevent the impurities mixed in the liquid from entering the water pump 362 to damage the normal use of the water pump 362, which is beneficial to improving the working performance of the air conditioner, reducing the failure rate, and being able to lower the structure of the drain nozzle.
  • the condensed water of 363 is discharged to the outside of the air conditioner to increase the service life of the metal parts inside the air conditioner.
  • the filter assembly 361 includes a filter 366, a fixing assembly 367 and a connecting collar 368, the fixing assembly 367 of the filter assembly 361 includes a cover 3671 for closing the filter 366, and a fixing arm 3672 for supporting the filter assembly;
  • the cover 3671 and the fixed arm 3672 are of a unitary structure.
  • the hollow pipe 3673 in the middle of the fixing component 367 for the circulation of the liquid; the hollow pipe extends to the outside to form a conduction port, and the conduction port is also used for the connection with the first communication pipe 364, so that the filter assembly 361 is connected with the water pump 362. ;
  • the filter 366 and the fixing component 367 are joined by the connecting sleeve 368, and the detachable connecting method is adopted; the connecting manner of the filter 366 and the fixing component 367 can be a snap connection or a screw connection, and the filter can be removed for later maintenance. , cleaning up the accumulated impurities;
  • the fixed arm 3672 includes a first fixed arm and a second fixed arm extending horizontally symmetrically to both sides with the hollow duct 3673 as the center;
  • the connecting ring sleeve 368 is further provided with a sealing structure, and the sealing structure can provide sealing performance, so that the filter 366 and the fixing assembly 367 are more closely connected, preventing leakage of the filtered condensate, and unfiltered.
  • the liquid enters the pipeline.
  • the fixing arm 3672 is fixed by a fixing structure provided by the chassis, and the fixing structure is located on both sides of the fixing arm 3672 in the longitudinal direction; the fixing structure on one side is the first fixing member 3693 on the chassis, and the other side is the second fixing member.
  • the first fixing member 3693 is a three-dimensional table, and the shape may be a rectangular parallelepiped, a trapezoidal table or a truncated cone.
  • the first fixing member 3693 is provided with a hollow opening on the wall surface facing the filter 366, and the hollow opening is for receiving the first of the fixing arm 3672.
  • the inside of the hollow port is further provided with at least one abutting member for abutting the first fixing arm to prevent the first fixing arm from tilting in the length direction in the hollow port;
  • the first fixing member 3693 extends downward from the top to form a slot body, and the slot body penetrates through the hollow port.
  • the slot body can clearly observe whether the first fixing arm is installed in position during the installation process.
  • the shape of the hollow port is adapted to the shape of the first fixed arm, thereby reducing the turbulence of the first fixed arm in the hollow port.
  • the second fixing member is composed of two parts, one part is a supporting body 3692, and the supporting body 3692 is provided with a through hole corresponding to the shape of the fixing arm 3672, and the through hole may be a groove with a top opening or a wall surface of the supporting body 3692.
  • the outer side of the support body 3692 is provided with a post 3691, the post 3691 is an elastic member, and a top end of the post 3691 is provided with a card member;
  • the first fixed arm and the second fixed arm of the fixed arm 3672 respectively pass through the hollow opening of the stereoscopic table and the through hole of the support body 3692, and pass through the vertical direction of both the bottom surface of the groove body of the stereoscopic table and the bottom surface of the through hole of the support body 3692. Supporting, and the card member of the post 3691 and the top surface of the hollow of the trough are defined, and the fixed arm 3672 is fixed at a certain height;
  • the abutting member of the three-dimensional table and the wall surface of the post 3691 respectively abut against the two ends of the fixing arm 3672, and the fixing arm 3672 is fixed at a certain horizontal position by the fixing of the three-dimensional table and the horizontal direction of the wall of the post 3691;
  • the card member is provided with an inclined surface.
  • the first fixed arm of the fixed arm 3672 is first inserted into the hollow opening of the stereoscopic table, and then the second fixed arm of the fixed arm 3672 is pressed downward.
  • the column 3691 is bent away from the filter assembly 361 by the elastic force, and the second fixed arm slides along the inclined surface of the clip into the through hole of the support body 3692. After being mounted in position, the post 3691 rebounds to realize the filter assembly.
  • the card is connected to the 361; during the disassembly process, the column 3691 is tilted, and the filter assembly 361 can be easily taken out.
  • the fixed structure fixes the fixed arm 3672 at a certain position by the interaction force between the respective components, and has a detachable structure, and has a good fixing effect and is convenient for installation and disassembly.
  • the fixed arms 3672 have screw holes on both arms, and the fixing arms 3672 can be screwed through the screw holes.
  • the connection between the first communication pipe 364 and the water inlet of the filter assembly 361 and the water pump 362 is detachable; the connection between the second communication pipe 365 and the water outlet of the water pump 362 and the drain structure 363 is detachable.
  • the above-mentioned detachable connection can be, for example, a spiral connection, and can also be sleeved by the elasticity of the hose, so that the pipeline can be periodically cleaned during the later maintenance, and the impurities accumulated in the pipeline after long-term liquid flow are prevented from being affected. The work of the system.
  • the drain nozzle structure 363 includes a mounting bracket 3610, a drain nozzle body 341, and a water cover 3611 for sealing.
  • the drain nozzle body 341 is a hollow structure, and the drain nozzle body 341 includes an external water outlet 342 and is fixed. a plate 3613 and a drain port joint 3614, a second communication pipe 365 connected to the drain port joint 3614, and a water cover 3611 connected to the external water outlet port 342;
  • the plane of the fixing plate 3613 is perpendicular to the axis of the external water outlet 342, and the drain nozzle body 341 is fixed; the drain port joint 3614 is perpendicular to the external water outlet 342, and the drain port joint 3614 is externally disposed.
  • the nozzles 342 intersect, the interior penetrates, and the connecting surface portion adopts a circular arc structure, thereby smoothly transitioning and facilitating the circulation of the liquid.
  • the cross-sectional radius of the drain joint 3614 is smaller than the cross-sectional radius of the external water outlet 342; the axis of the drain joint 3614 is external The axis of the water outlet 342 is at an angle;
  • the water cover 3611 is connected to the drain body 341 in a detachable manner, for example, by a screw connection.
  • the water cover 3611 is connected to the drain body 341. Connected to prevent dust and other debris from entering the machine to damage the operation of the machine.
  • the water cover 3611 is removed, so that the condensed water can flow out through the drain structure 363;
  • the drain structure 363 is mounted above the level of the top end of the filter assembly 361, below the level of the bottom end of the water pump 362 to facilitate liquid discharge.
  • the fixing plate 3613 of the nozzle body 341 is provided with a fixing groove 3615.
  • the corresponding mounting frame 3610 is provided with a fixing hole. At least one connecting structure is fixedly connected to the fixing hole through the fixing groove 3615.
  • the fixing plate 3613 is pressed and fixed and fixed.
  • the plate 3613 is further provided with at least one positioning hole 3616, and the corresponding bottom case is provided with at least one positioning portion 3617; the positioning portion 3617 passes through the positioning hole 3616, and the drainage nozzle body 341 is stuck at a certain height, preferably,
  • the fixing hole and the fixing groove can be screwed to fix the drain body 341;
  • the inner wall of the external water outlet 342 is inclined downward to facilitate the discharge of water compared to the horizontal plane.
  • the water inlet and the outer surface of the water outlet of the drain joint 3614, the hollow pipe 3673 and the water pump 362 are all wave-shaped structures, and the wave-shaped structure is used to improve the sealing performance of each interface and the hose, and at the same time increase the friction and prevent the air conditioner. The hose accidentally fell off during use.
  • the drain nozzle body 341 is a hollow structure that is open at both ends and penetrates both sides;
  • the bottom of the outlet of the external water outlet 342 is provided with a notch, and the notch is formed by the bottom of the water outlet inwardly, which is used for destroying the water surface tension.
  • the accumulated condensed water blocks the external water outlet 342 due to the water surface tension, and cannot be smoothly discharged.
  • the condensed water accumulated in the ground pan can be efficiently discharged, and the residue is small, and the shape of the notch can be semicircular, elliptical, triangular, polygonal, trapezoidal.
  • the drain structure 363 further includes an external notch member 346.
  • the outer end of the outer notch member 346 is provided with a set of connecting portions, and the sleeve portion can be sleeved outside the drain nozzle to connect the outer notch member 346 to the external water outlet 342;
  • the outer notch member 346 is provided with a notch, and the notch is recessed from the side facing away from the side of the socket portion;
  • connection manner of the socket portion and the external water outlet 342 is detachable, so that the external water outlet 342 is more adaptable, and can be sleeved with different external notch members or different components, so that the application is wider.
  • a water guiding column 347 is further disposed on the external notch member 346.
  • the water guiding column 347 has a triangular structure. After the external notch member 346 is sleeved on the external water outlet 342, the first side of the water guiding column 347 is attached to the end surface of the external water outlet 342. The second side of the water guiding column 347 is inclined downward and extends to the position of the notch; the water guiding column 347 can guide the water at the end of the external water outlet 342 to the notch to drip.
  • the outer wall of the external water outlet 342 is also provided with a thread structure, which can be tightly threaded with the water cover, and can also be used for connecting the water guiding pipe, the thread structure is simple, and the connection and sealing effect is good.
  • the inner wall of the external water outlet 342 is inclined downward with respect to the horizontal surface, and the liquid is more likely to flow downward under the action of the inclined surface.
  • the mobile air conditioner as described above is different from the embodiment in that, as shown in FIG. 31, at least one supporting rib 633 is disposed in the water tank area 322, and the supporting rib 633 is a plate-like structure connected to the water tank area 322. Bottom; support rib 633 is used to support the condenser placed at the upper portion thereof, while leaving a space for accommodating water to the water tank area 322, and the support rib 633 can block the hot air from blowing through the water tank area 322, so that the hot air is more concentrated. Reduce wind loss on the condenser.
  • a gap is left between the adjacent support ribs 633 to form an inter-connected drainage channel; the condensed water in the water tank area 322 is prevented from generating a dead water area; the number of the support ribs 633 depends on the size of the space of the water tank area 322.
  • the mobile air conditioner includes: an upper water tray 1, a middle water tray 2, a chassis structure 3, an evaporator 4, a condenser 5, and a water wheel, wherein the upper water tray 1 is disposed in the mobile air conditioner.
  • the top of the wind volute 11 is for receiving the condensed water of the air outlet volute outlet 12;
  • the middle water receiving tray 2 is installed at the bottom of the evaporator 4 and the air supply volute 11 of the mobile air conditioner for receiving the evaporation of the mobile air conditioner
  • the condensed water on the outer side wall of the air supply volute 11 and the condenser 5 are installed below the middle water tray 2 and fixed on the chassis structure 3 for heating the condensed water on the outer side wall of the condenser 5 to Vaporizing at least a portion of the condensed water;
  • a chassis structure 3 disposed at the bottom of the mobile air conditioner for receiving condensed water diverted from the intermediate water tray 2 and the upper water tray 1 and condensing unvaporized portion on the outer side wall of the condenser 5 Water;
  • the mobile air conditioner when the mobile air conditioner is in normal operation, such as in the cooling mode, the cold air is in contact with the external hot air at the position of the air outlet 12 to generate condensed water, and the airflow passes through the evaporator 4 of the mobile air conditioner to generate condensed water, and the air supply volute 11
  • the outer side wall generates condensed water due to heat exchange. Since the temperature of the condensed water generated above is relatively low, the condensed water with low temperature can be fully recycled, and the condensed water is automatically discharged from the mobile air conditioner at the same time, thereby ensuring that the condensed water is automatically discharged from the mobile air conditioner.
  • the mobile air conditioner can continue to operate, and also avoids the user to manually discharge the condensed water generated by the mobile air conditioner, so that the mobile air conditioner is more intelligent, thereby improving the humanized demand of the mobile air conditioner and improving the user experience.
  • the condensed water is drained to the outer side wall of the condenser 5 through the structure of the upper water tray 1 and the middle water tray 2, and the low temperature condensed water exchanges heat with the outer wall of the high temperature condenser 5, thereby partially
  • the condensed water is directly vaporized into water vapor for discharge from the mobile air conditioner, which realizes the first recycling of the condensed water; in addition, it can also pass the water wheel that can be operated in conjunction with the compressor in the cooling mode while in the running state.
  • the air supply volute 11 is provided with an air outlet 12 at the top of the mobile air conditioner, and the air outlet 12 is provided with an upper water tray 1, and the upper water tray 1 includes a plurality of air deflectors 13 and
  • the rotating shaft 14 and the air guiding plate 13 are fixed to the air outlet 12 through the rotating shaft 14, and the air guiding plate 13 is rotatable through the rotating shaft 14, and the blowing direction of the air from the air outlet 12 is changed by rotating the air guiding plate 13.
  • the upper water tray 1 further comprises a water collecting device comprising a water accumulating assembly 17 and a water collecting plate 15, the water collecting plate 15 is disposed between the water accumulating assembly 17 and the air outlet 12, and the water collecting plate 15 is fixed at the air outlet One side of the 12, and the upper surface of the water collecting plate 15 and the air outlet 12 are integrally inclined.
  • the overall inclination angle is generally 1-2°; specifically, the edge of the air outlet 12 connected to the water collecting plate 15
  • the height is smaller than the height of the edge of the air outlet 12 away from the water collecting plate 15, that is, the height of the position of the edge of the air outlet 12 increases as the distance from the water collecting plate 15 increases, so the air deflector 13 disposed on the air outlet 12 is also inclined.
  • an inclined end surface 16 is disposed at a position where the water collecting plate 15 and the air outlet 12 are connected.
  • the inclined angle of the inclined end surface 16 is generally set to 4-5°, so that the condensed water generated on the air outlet 12 is more likely to slide down onto the water collecting plate 15, thereby improving The water accumulation capacity of the water collecting device.
  • the condensed water is affected by the air flow, so that the collection of the condensed water on the water collecting plate 15 is difficult.
  • the difference in the level of the air outlet 12 with respect to the level of the water collecting plate 15 is small, which may cause the air flow of the air outlet 12 to adversely affect the flow of the condensed water on the water collecting plate 15, even
  • the condensed water can be blown away from the water collecting plate 15 under a large air flow, eventually causing the condensed water to flow down the side wall or panel of the mobile air conditioner.
  • the arrangement of the inclined end faces 16 causes the water collecting plate 15 to form a concave structure, that is, the horizontal height of the water collecting plate 15 is much lower than the horizontal height of the air outlet 12, avoiding the air outlet. 12 The effect of the blown air flow on the condensed water on the water collecting plate 15.
  • the air supply volute 11 discharges cold air from the air outlet 12, and the cold air is likely to generate condensed water when it is in contact with the external hot air, and the condensed water will accumulate at the edge position of the air outlet 12 and the wind deflector 13.
  • the condensed water is collected in the water accumulating assembly 17 by the entire inclined surface of the upper surface of the water collecting plate 15 and the air outlet 12.
  • the water accumulating assembly 17 includes a first water tank 171 for receiving and being collected at the air outlet 12 and collected by the water collecting plate 15. Condensed water, the first water tank 171 is provided with a groove structure having a certain depth.
  • the final flow of the condensed water to the upper water receiving tray 1 is The lower end of the first water tank 171.
  • the first water tank 171 may be located in a certain orientation of the water collecting plate 15 as long as the condensed water can continue to flow from the wind deflector 13 and the water collecting plate 15 to the first water tank 171 in the orientation.
  • the water collecting plate 15 is disposed in a rectangular shape, and a corresponding two edges of the upper end surface of the water collecting plate 15 are respectively connected with the air outlet 12 and the first water tank 171, and the other corresponding edges of the upper end surface of the water collecting plate 15 are provided with a water blocking plate.
  • the upper water tray 1 is provided with a flow guiding member 173 around the air outlet 12 and the water collecting plate 15.
  • the flow guiding member 173 can be disposed as a guiding groove, and the guiding groove communicates with the first water tank 171. Since the air outlet 12 continues to blow out and the condensed water flows along the air deflector 13, the condensed water is susceptible to wind resistance, so that it is not easy to flow on the water collecting plate 15 by its own gravity, even if the condensed water is less windy.
  • the condensed water will reversely flow along the wind deflector 13 against the self-gravity under the action of the wind; the flow guiding member 173 is arranged to ensure that the condensed water moves to the edge position of the upper drain pan 1 in the case of reverse flow, and the deflector 173
  • the condensed water may also be received and conducted into the first water tank 171.
  • the first water tank 171 By arranging the first water tank 171 in the upper water tray 1 and receiving the condensed water collected by the moving air conditioner roof through the first water tank 171, it is possible to avoid the inconvenience caused to the user by the condensed water flowing down along the air conditioner side wall or the panel.
  • the first water tank 171 may quickly fill the condensed water.
  • the bottom of the first water tank 171 is provided with a water drop hole 174; the water drop hole 174 is provided with a flow guiding assembly, and the condensed water in the first water tank 171 is guided to the bottom of the mobile air conditioner through the flow guiding assembly. On the water wheel.
  • the original flow direction may be changed by the airflow blown from the air outlet 12, so that the path of the condensed water flowing to the water collecting plate 15 will be The offset occurs, which is detrimental to the accumulation of water in the first water tank 171.
  • the cross-sectional shape of the air deflector 13 is set to an arc shape to ensure that the shape of the air deflector 13 has a certain restricting guiding effect on the condensed water when the condensed water is formed on the air deflector 13 to prevent the condensed water from being detached by the air flow.
  • the two arc surfaces of the air deflector 13 are provided with guiding ribs 131.
  • the extending direction of the guiding ribs 131 is the same as the direction in which the wind deflecting plate 13 extends.
  • the arrangement of the guiding ribs 131 will be the guiding of the wind deflecting plate 13.
  • the two arc surfaces are separated into a plurality of strip-shaped trough structures, and the condensed water gathers in the strip-shaped trough structure and moves along the extending direction of the wind deflector 13 under the action of the guiding ribs 131, thereby reducing the influence of the airflow on the flow direction of the condensed water.
  • the condensed water is prevented from escaping from the air deflector 13 to the outside of the mobile air conditioner under the action of the wind, or dripping into the air supply volute 11 under its own gravity, thereby affecting the user experience.
  • the twelfth embodiment is further improved on the basis of the eleventh embodiment, and the improvement is that the water trap assembly 17 includes the second water tank 175; as shown in Fig. 36, in the present embodiment, the second water tank 175 Instead of the first water tank 171 in the eleventh embodiment, the second water tank 175 is for receiving the condensed water generated by the air outlet 12 and collected by the water collecting plate 15.
  • the second water tank 175 is disposed in a groove structure having a certain depth; preferably, the second water tank 175 includes four surrounding plates, and the surrounding plates are sealed and connected to each other to form a notch shape, wherein one of the surrounding plates and the water collecting plate 15
  • the lower end edge sealing connection, the coaming plate connected to the water collecting plate 15 is the water guiding plate 176; the upper edges of the other three coaming plates are slightly higher than the water guiding plate 176 connected to the water collecting plate 15; the bottom of the second water tank 175
  • the bottom plate 177 is disposed, and the bottom plate 177 is disposed obliquely to facilitate the accumulation of the condensed water at a low position of the bottom plate 177;
  • the water accumulation assembly 17 further includes a hollow guide assembly 178, and the guide assembly 178 is preferably disposed in an inverted "L" shape, and the guide assembly 178 One end is disposed on the water guiding plate 176 to communicate the inside of the guiding assembly 178 and the second water tank
  • the port of the guide assembly 178 When the bottom plate 177 is on, the port of the guide assembly 178 is gathered; the other end of the guide assembly 178 is fixedly connected with the annular outer wall of the air supply volute 11, so that the position of the guide assembly 178 and the air supply volute 11 and the upper water tray 1 are fixed; More The lower end surface of the water collecting plate 15 is disposed at a position corresponding to the upper end surface of the guiding assembly 178, and the reinforcing rib is fixedly connected with the water collecting plate 15, the guiding assembly 178, and the water guiding plate 176, thereby ensuring that the guiding assembly 178 is realized to the second water tank.
  • the condensed water guides the flow, and has a certain strengthening and strengthening effect on the connection state between the upper water tray 1 and the air supply volute 11.
  • the guiding assembly 178 includes a first guiding tube 1781 disposed laterally and a second guiding tube 1782 disposed vertically.
  • the lower end surface of the first guiding tube 1781 is inclined to ensure the condensed water can be in the gravity of the first guiding tube 1781. It flows down into the second guide tube 1782.
  • the lower end surface portion of the first guiding tube 1781 is disposed on the bottom plate 177, so that the lower end surface of the first guiding tube 1781 replaces part of the bottom plate 177.
  • connection position of the water guiding plate 176 and the water collecting plate 15 is set to a circular arc shape, so that the condensed water is slipped from the water collecting plate 15 to the water guiding plate 176.
  • the final flow of the condensed water is lower than that of the upper water receiving tray 1.
  • the second water tank 175 may be located in a certain orientation of the water collecting plate 15 as long as the condensed water can continue to flow from the air deflector 13 and the water collecting plate 15 to the second water tank 175 in the orientation.
  • the water collecting plate 15 is disposed in a rectangular shape, and a corresponding two edges of the upper end surface of the water collecting plate 15 are respectively connected with the air outlet 12 and the second water tank 175, and the water blocking plates are disposed on the other corresponding edges of the upper end surface of the water collecting plate 15.
  • the water accumulation assembly 17 includes both the first water tank 171 and the second water tank 175, that is, the first water tank 171 and the water collecting plate 15, the first water tank 171 and the second water tank. 175 is connected; specifically, a dam 179 is disposed between the first water tank 171 and the second water tank 175, and the dam 179 is provided with a notch 1791.
  • the first water tank 171 and the second water tank 175 are communicated through the notch 1791; the height of the upper end surface of the dam 179 Above the height of the air outlet 12, the height of the bottom end of the notch 1791 is equal to or lower than the lowest height of the water collecting plate 15, and when the water collecting hole 174 in the first water tank 171 is blocked, the condensed water in the first water tank 171 can pass through the notch 1791. It flows into the second water tank 175 and further flows through the guide assembly 178 to the middle water tray of the mobile air conditioner to avoid abnormal accumulation of condensed water in the first water tank 171.
  • the notch 1791 can be set as a notch having a large cross-sectional area, or as a plurality of elongated notches; when the notch 1791 is set as a notch having a large cross-sectional area, the condensed water can be ensured from the first
  • the flow rate of the water tank 171 flows into the second water tank 175; when the notch 1791 is provided as a plurality of elongated slots, the structure of the notch 1791 prevents the floating debris in the first water tank 171 from entering the second water tank through the gap 1791.
  • a notch 1742 is provided at the outlet edge of the down pipe 1741, and the inner wall of the down pipe 1741 is inclined downward; the outer wall of the down pipe 1741 can be provided with a thread for facilitating the installation of a water cover or a water pipe.
  • the notch 1742 of the downpipe 1741 is disposed to achieve the destruction of the surface tension of the condensed water at the outlet of the downpipe 1741, thereby ensuring that the condensed water in the first water tank 171 can be smoothly discharged when the water is at a lower water level, and the condensed water is prevented from being in the first water tank 171. Long-term accumulation.
  • FIG. 39 is a water hole hole.
  • the structural view of the ten embodiment; the tooth opening 1743 is preferably arranged to be annularly uniform around the axis of the water drop hole 174, and the tooth opening 1743 can be provided with other reasonable shapes such as a triangular groove type with sharp edges or acute angles.
  • the upper water tray 1 further includes a drainage assembly 18, the drainage assembly 18 is disposed at an upper portion of the evaporator 4, the drainage assembly 18 includes a drainage plate 181, the drainage plate 181 is fixedly connected to the air outlet 12, the water collecting plate 15, and the drainage plate 181 and the evaporation
  • the upper end of the device 4 is fixedly connected, and the positional relationship between the evaporator 4 and the water collecting device is positioned and reinforced under the influence of the drainage assembly 18.
  • the drain plate 181 is disposed obliquely so that the condensed water on the drain plate 181 is collected at a certain position on the drain plate 181.
  • a water blocking member 182 is disposed around the drainage plate 181 to prevent the condensed water on the drainage plate 181 from flowing out from the edge of the drainage plate 181.
  • the arrangement of the drainage plate 181 and the water retaining member 182 constitutes a water reservoir structure, and the condensed water on the drainage plate 181 is accumulated. Collected in the sink.
  • one side of the drainage plate 181 is provided with a plurality of drainage holes 183, and the condensed water on the drainage plate 181 flows through the drainage holes 183 to the intermediate water tray 2; the drainage plate 181 is disposed to the drainage hole 183.
  • the drainage plate 181 is provided with a plurality of guiding strips 184, and the guiding strips 184 can be equidistantly disposed in parallel, so that the upper surface of the drainage plate 181 is divided into several
  • the arrangement of the guide strips 184 ensures that the condensed water on the deflector 181 collects around the guide strips 184 under the influence of the airflow, and finally flows to the drain holes 183 under the influence of the airflow and its own gravity to realize condensed water from the drain plates 181. Discharge on.
  • the height dimension of the guide strip 184 is smaller than the height dimension of the water retaining member 182, so as to prevent the water level in each of the partitioned areas from being too high, which affects the normal discharge of the condensed water.
  • a plurality of flow ports 185 are disposed on the guiding strips 184, and different regions separated by the guiding strips 184 can communicate through the flow ports 185, and through the flow ports 185
  • the condensed water collected by the guide bars 184 in each region is finally collected at the position of the drain holes 183 and discharged through the drain holes 183.
  • the arrangement of the flow port 185 can play a certain filtering function, and the floating matter and the like on the drain plate 181 can be prevented from entering the mobile air conditioner through the drain hole 183.
  • the size of the flow port 185 can be varied to accommodate different filtering effects.
  • the condensed water on the deflector 181 is not treated in time, a large amount of condensed water is easily collected, and the condensed water is easily oozing out from the mobile air conditioner and moving along the side wall or panel of the mobile air conditioner under the influence of the airflow inside the mobile air conditioner. Downstream, causing inconvenience to the user; through the setting of the drainage component 18, the condensed water on the drainage plate 181 can be drained and drained in time to improve the user experience.
  • the eighteenth embodiment is further improved on the basis of the seventeenth embodiment, in that the water retaining member 182 is provided with a flow guiding hole 186 at a position corresponding to the first water tank 171; as shown in Fig. 42, the flow guiding hole 186
  • the water pool and the first water tank 171 are connected to each other, and the drainage plate 181 is inclined toward the first water tank 171, so that the condensed water on the drainage plate 181 is gathered by the flow hole 186 by the gravity thereof and further flows into the first water tank 171.
  • the arrangement of the drain holes 183 on the drain plate 181 is avoided.
  • a filtering device may be disposed in the flow guiding hole 186 to prevent floating objects such as floating objects on the drainage plate 181 from entering the first water tank 171 through the guiding hole 186.
  • the flow guiding assembly may be provided as a hose, one end of which is sealingly connected to the water collecting hole 174, and the other end of the hose is connected to a guiding hole provided on the middle water receiving tray 2, and the guiding hole is disposed through the middle water receiving tray 2.
  • the arrangement of the hose realizes the conduction of the first water tank 171 and the guiding hole, so that the condensed water in the first water tank 171 can be directly guided into the guiding hole through the hose, and the condensed water is directly guided through the guiding structure of the guiding hole.
  • the condensed water collides with the water wheel under the action of potential energy, and finally the condensed water is atomized to obtain water mist, and finally the water mist passes through the exhaust air arranged at the bottom of the mobile air conditioner.
  • the volute is discharged, thereby increasing the discharge speed of the condensed water inside the mobile air conditioner, thereby avoiding the source of the condensed water in the chassis structure 3, thereby controlling the rise of the condensed water level in the chassis structure 3, and avoiding the condensed water in the chassis structure 3
  • Many users need to manually discharge the condensed water to make the mobile air conditioner more intelligent, and also ensure that the mobile air conditioner can continue to operate, thereby improving the user experience.
  • the flow guiding assembly includes the first guiding portion 191, the second guiding portion 192 and the third guiding portion 193, as shown in FIG.
  • the first flow guiding portion 191 is disposed on the water drop hole 174
  • the second flow guiding portion 192 is disposed on the air supply volute 11
  • the third flow guiding portion 193 is disposed on the guiding hole;
  • the first flow guiding The portion 191 is connected to the second flow guiding portion 192
  • the second flow guiding portion 192 is connected to the third flow guiding portion 193 to realize communication between the water collecting hole 174 and the guiding hole.
  • the first flow guiding portion 191 is a tubular or groove-like structure disposed obliquely or vertically. If the first guiding portion 191 is a groove-shaped structure, the open end surface of the first guiding portion 191 faces the air supply volute In the direction of the 11 position, one end of the first flow guiding portion 191 is fixed at the position of the water drop hole 174, and the other end is connected to the second flow guiding portion 192; the second flow guiding portion 192 is disposed along the outer edge of the arc of the air blowing volute 11, and The second flow guiding portion 192 is disposed in a tubular or groove-like structure to ensure that the condensed water flows along the outer edge of the circular arc of the air supply volute 11 in the second flow guiding portion 192; the third flow guiding portion 193 is disposed in the middle water receiving tray 2 is located at the lower portion of the evaporator 4, the third flow guiding portion 193 forms a certain oblique angle with the horizontal plane, and the third
  • the guide flows to the hole position; one end of the third flow guiding portion 193 is fixedly connected to the guiding hole, and the other end of the third guiding portion 193 is connected with the second guiding portion 192, thereby achieving communication between the water collecting hole 174 and the guiding hole.
  • the second flow guiding portion 192 is disposed in a U-shaped notch shape, and the open end surface of the second flow guiding portion 192 is sealingly connected with the arc outer edge surface of the air supply volute 11 to form an interior.
  • the pipe structure of the chamber; the second flow guiding portion 192 and the center line of the air supply volute 11 in the width direction are coplanar, facilitating the installation of the second flow guiding portion 192, and the width dimension of the guiding portion can be set equal to or slightly It is smaller than the width of the air supply volute 11 to facilitate the collection of the condensed water generated on the air supply volute 11 by the second flow guiding portion 192; the center line of the water drop hole 174 may be disposed in the second flow guiding portion 192 and the air supply volute
  • the above-mentioned center line plane of the 11 facilitates the connection between the first flow guiding portion 191 and the second flow guiding portion 192; the third flow guiding portion 193 is fixed on the middle water receiving tray 2, and is ensured
  • the flow guiding assembly further includes a plurality of connecting assemblies 194, a first guiding portion 191 and a bottom surface of the first water tank 171, a first guiding portion 191 and a second guiding portion 192, a second guiding portion 192 and a third guiding portion 193.
  • the detachable connection between the two is achieved by the connection assembly 194.
  • the connecting component 194 includes a first connecting portion 1941 and a second connecting portion 1942.
  • the first connecting portion 1941 and the second connecting portion 1942 are respectively disposed on two components connected to each other, and the first connecting portion 1941 and the first connecting portion
  • the two connecting portions 1942 are disposed and detachably connected.
  • the first connecting portion 1941 is disposed at both ends of the first guiding portion 191; the second connecting portion 1942 and the first portion are respectively disposed at two ends of the second guiding portion 192
  • the connecting portion 1941; the second connecting portion 1942 is disposed on the bottom surface of the first water tank 171; and the second connecting portion 1942 is disposed in the third flow guiding portion 193.
  • the first connecting portion 1941 includes a fixing block of a U-shaped structure, and the fixing block is provided with a card slot 1943 extending along the U-shaped structure; correspondingly, the second connecting portion 1942 includes a mating block of a U-shaped structure, and the extending piece 1944 is disposed on the mating block
  • the extension member 1944 can be inserted into the card slot 1943 to realize the detachable connection of the first connecting portion 1941 and the second connecting portion 1942; the U-shaped structure of the fixing block and the mating block ensures the first connecting portion 1941 and the second
  • the connection between the connecting portions 1942 is restricted; and the connection between the card slot 1943 and the extension member 1944 is used to ensure the sealing of the connection position between the first connecting portion 1941 and the second connecting portion 1942 to avoid condensation. Exuding from the position of the connection assembly 194.
  • the first flow guiding portion 191 is provided with two end faces of the first connecting portion 1941 which are preferably horizontally disposed, so as to facilitate the first guiding portion 191 with respect to the second connecting portion 1942 and the second guiding portion 192 at the bottom of the first water tank 171.
  • the two connecting portions 1942 are mounted in alignment; specifically, only the extending members 1944 and the card slots 1943 at two positions are aligned, and the first guiding portion 191 and the first sink are realized by horizontally pushing the first guiding portion 191 171. Connection of the second flow guiding portion 192.
  • the first flow guiding portion 191 and the second flow guiding portion 192 are made of a material having a certain elastic variable, such as plastic or the like, to facilitate the integral mounting connection of the flow guiding assembly.
  • the size of the card slot 1943 is larger than the size of the extension member 1944, so that the card slot 1943 and the extension member 1944 are clearance-fitted to facilitate the connection between the first connection portion 1941 and the second connection portion 1942.
  • a flexible layer is disposed between the card slot 1943 and the extension member 1944.
  • the flexible layer may be a hard sponge, a fiber or the like to ensure the sealing between the card slot 1943 and the extension member 1944; and at the same time, the second flow guiding portion 192 is disposed in the air supply. On the volute 11, the air supply volute 11 will generate a certain vibration when it works, and the flexible layer has a certain damping effect to avoid the overall vibration of the flow guiding assembly.
  • the open arrangement of the first flow guiding portion 191 is more favorable for the flow of the condensed water in the flow guiding assembly than the arrangement of the hose, facilitating the flow guiding action of the guiding component to the condensed water, and the opening of the second guiding portion 192 is open. It is provided that a part of the condensed water generated in the air supply volute 11 can enter the second flow guiding portion 192 through the opening, thereby guiding the drainage of the condensed water to the water wheel.
  • the condensed water collected by the upper water tray 1 is directly guided to the water wheel through the guiding hole, and under the influence of the gravitational potential energy of the condensed water, the condensed water is impacted at a higher flow rate at the water wheel.
  • the condensed water is finally atomized to obtain water mist under the relative collision between the water wheel and the condensed water.
  • the water mist is discharged through the exhaust volute disposed at the bottom of the mobile air conditioner, thereby improving the condensed water inside the mobile air conditioner.
  • the discharge speed avoids the source of condensed water in the chassis structure 3, thereby controlling the rise of the condensate water level in the chassis structure 3, and avoiding the need for the user to manually discharge the condensed water due to excessive condensed water in the chassis structure 3. It makes the mobile air conditioner more intelligent, and also ensures that the mobile air conditioner can continue to operate, thereby improving the user experience.
  • the mobile air conditioner as described above is different from the embodiment in that the water retaining rib 3926 is a combination of a plurality of water retaining ribs, including: a first water retaining rib 325, a second water retaining rib 326, and a third blocking gear.
  • the water rib 327, the fourth water retaining rib 328 and the fifth water retaining rib 329, the height of the water retaining rib 3926 increases sequentially along the water flow direction of the water tank area 322 toward the water absorbing area 321, and the adjacent water retaining ribs 3926 remain.
  • the bottom of the connecting passage 3925 between the adjacent water retaining ribs 3926 is provided with a drain port, and the height of the water retaining rib 3926 is not higher than the upper edge of the connecting channel 3925.
  • the top end of the water retaining rib 3926 is provided with a plurality of notches 39261 to reduce the tension of the water when the accumulated water flows over, and the accumulated water flows along the notch 39261 to prevent the overflow of accumulated water and overflow of the water.
  • the occurrence of the phenomenon is distributed on the top of the water retaining ribs 3926 and is distributed in a wave shape.
  • the advantage of this setting is that the channel when the accumulated water overflows is increased, the gap 39261 is prevented from being too small, and the accumulated water cannot be overflowed in time, and the gap of the array distribution can also make the water balance flow over the water retaining rib 3926, and at the same time, Can increase the aesthetics of the structure.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Devices For Blowing Cold Air, Devices For Blowing Warm Air, And Means For Preventing Water Condensation In Air Conditioning Units (AREA)

Abstract

La présente invention concerne un climatiseur mobile, comprenant un plateau de réception d'eau de couche supérieure (1) et une structure de plateau inférieur (3). La structure de plateau inférieur (3) comprend : une zone d'aspiration d'eau (321), une zone de réservoir d'eau (322), une zone d'acheminement d'eau (330) et une zone de commande de niveau d'eau (313). Le plateau de réception d'eau de couche supérieure (1) est disposé au-dessus d'un boîtier en spirale d'alimentation en air (11) et comprend un composant d'accumulation d'eau (17) et une plaque de collecte d'eau (15). La plaque de collecte d'eau (15) est disposée entre le composant d'accumulation d'eau (17) et la sortie d'air (12) du boîtier en spirale d'alimentation en air (11). Le composant d'accumulation d'eau (17) est doté d'une partie de drainage d'eau. L'emplacement de la partie de drainage d'eau correspond à celui de la zone d'acheminement d'eau (330) de la structure de plateau inférieur (3). Le climatiseur mobile permet une distribution raisonnable de l'eau collectée sur le plateau de réception d'eau de couche supérieure (1) et la structure de plateau inférieur (3) à l'intérieur du climatiseur mobile, garantit que l'eau collectée est d'abord fournie à la zone d'acheminement d'eau (330), réduit les étapes de cycle d'eau, et augmente l'efficacité d'acheminement de l'eau.
PCT/CN2019/084393 2018-04-28 2019-04-25 Climatiseur portatif WO2019206244A1 (fr)

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CN201810402976.XA CN108870551B (zh) 2018-04-28 2018-04-28 一种移动空调器

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CN108344063B (zh) * 2018-04-28 2021-02-12 奥克斯空调股份有限公司 一种移动空调器
CN108870551B (zh) * 2018-04-28 2021-02-12 奥克斯空调股份有限公司 一种移动空调器
CN109974277A (zh) * 2019-04-30 2019-07-05 宁波奥克斯电气股份有限公司 一种空调器底盘排水结构及空调器
CN109974276A (zh) * 2019-04-30 2019-07-05 宁波奥克斯电气股份有限公司 一种空调器底盘及空调器
CN109974279A (zh) * 2019-04-30 2019-07-05 宁波奥克斯电气股份有限公司 一种空调器底盘结构及空调器
CN109974278A (zh) * 2019-04-30 2019-07-05 宁波奥克斯电气股份有限公司 一种底盘储水结构及空调器
CN109974275A (zh) * 2019-04-30 2019-07-05 宁波奥克斯电气股份有限公司 一种空调器底盘结构及空调器
CN112013571A (zh) * 2019-05-31 2020-12-01 宁波奥克斯电气股份有限公司 一种蒸发器支架及使用其的空调器
CN115406094B (zh) * 2022-08-26 2023-08-04 珠海格力电器股份有限公司 排水组件及空调机组

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