WO2020216217A1 - Ensemble réservoir d'eau, base et climatiseur - Google Patents

Ensemble réservoir d'eau, base et climatiseur Download PDF

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Publication number
WO2020216217A1
WO2020216217A1 PCT/CN2020/085911 CN2020085911W WO2020216217A1 WO 2020216217 A1 WO2020216217 A1 WO 2020216217A1 CN 2020085911 W CN2020085911 W CN 2020085911W WO 2020216217 A1 WO2020216217 A1 WO 2020216217A1
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WO
WIPO (PCT)
Prior art keywords
water tank
base
air conditioner
upper water
sink
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Application number
PCT/CN2020/085911
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English (en)
Chinese (zh)
Inventor
贺佳伟
许超魁
王千广
王杰杰
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
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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 WO2020216217A1 publication Critical patent/WO2020216217A1/fr

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    • 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
    • F24F13/32Supports for air-conditioning, air-humidification or ventilation units

Definitions

  • the embodiment of the present disclosure relates to a sink assembly, a base and an air conditioner.
  • the heat exchanger is one of the indispensable parts for the air conditioner to adjust the indoor temperature. It can reduce the indoor temperature by switching between different modes of evaporative heat absorption or condensation heat release. Or increased regulation.
  • condensed water is prone to be generated on the heat exchanger. Therefore, in order to prevent the condensed water from invading the electronic components and other components inside the air conditioner, it is usually necessary to set a water receiving groove at the end of the heat exchanger to realize the The collection and discharge of condensed water can avoid accidents such as leakage, short circuit, and even fire.
  • some technical documents connect the heat exchanger with the upper base, and set a front water tank and a rear water tank on the lower base connected to the upper base, and connect them to both ends of the heat exchanger respectively to achieve Collect and discharge the condensed water produced on the heat exchanger.
  • the upper base connected to the heat exchanger will also produce condensed water along with the heat exchanger, and the condensed water will be generated on the inner and outer side walls of the upper base.
  • the sink is connected to the ends of both sides of the heat exchanger, which cannot collect and drain the condensed water generated on the outer side wall (back) of the upper base, which affects the overall working environment of the air conditioner and easily causes condensed water to fall into the use space The occurrence of this situation further affects the comfort of air conditioner users.
  • the embodiments of the present disclosure are completed in view of the above-mentioned known technology, and their purpose is to provide a sink assembly, a base, and an air conditioner that can effectively collect condensed water generated by the heat exchanger of the air conditioner and the inner and outer side walls of the upper base .
  • a water tank assembly which includes: an upper water tank and a lower water tank arranged on the lower side of the upper water tank, wherein the upper water tank and the lower water tank are both long tanks. Shape structure, and a penetrating state along its length direction, and the upper water trough covers the lower water trough in the vertical direction.
  • the air conditioner can be effectively collected
  • the condensed water on the inner and outer side walls of the base of the air conditioner can prevent the occurrence of condensation and dripping, and improve the comfort of the air conditioner.
  • by making the upper sink vertically cover the lower sink it can also effectively reduce the ash layer underneath.
  • the possibility of deposits in the sink can effectively prevent the occurrence of clogging of the sink by the ash layer, so as to further prevent the accumulation of condensed water from dripping into the use space and improve the comfort of the air conditioner user.
  • the upper water tank is further provided with a first water passage hole, the first water passage hole penetrates the upper water tank, and the upper water tank The water tank and the lower water tank form a through connection through the first water passing hole. Because the upper water tank is arranged above the lower water tank, the condensed water collected in the upper water tank can flow into the lower water tank through the first water channel, especially when the water flow in the upper water tank is large, The setting can fully reduce the overwater pressure of the upper water tank and effectively prevent the occurrence of condensate overflow.
  • the upper water tank has a high end and a low end with a height difference
  • the first water hole is located at the high end of the upper water tank.
  • the upper water tank can be kept in an inclined state, so that the condensed water collected therein flows to the lower end, so as to avoid the accumulation of condensate in the upper water tank; and, by setting the first water hole At the high end of the upper water tank, it can be ensured that only when the water flow in the upper water tank is large enough, it will flow into the lower water tank through the first water passage, thereby reducing the pressure of the water flow in the lower water tank and effectively preventing the condensate from overflowing from the lower water tank. happened.
  • At least one step with a height difference is provided between the high end and the low end.
  • a first diversion rib is provided on the outer side wall of the upper water tank, which is suitable for guiding the condensed water into the lower water tank.
  • the first guide rib can effectively guide the condensed water generated on the outer side wall of the upper sump to flow into the lower sump, thereby ensuring the effectiveness of condensate collection.
  • a second water passage hole is further provided on the lower water tank, and the second water passage hole penetrates the lower water tank, and the lower water tank The water tank is connected to the drainage component through the second water passing hole.
  • the condensed water collected in the drain tank can flow into the drainage part through the second water passage, so as to effectively drain the water in the drain tank, prevent the condensate from accumulating in the drain tank and overflow, etc., and improve The comfort of the air conditioner.
  • the lower water tank is arranged obliquely and has the highest end of the lower water tank and the lowest end of the lower water tank, wherein the second water passage hole is located in the lower water tank.
  • the lowest end of the sink In this case, the lower water tank can be kept in an inclined state, and the second water passage hole can be arranged at the lowest end of the lower water tank, so that the condensate collected in the lower water tank can flow to the lowest end of the lower water tank and pass through the second water The hole is drained to avoid the accumulation or overflow of condensed water in the sink.
  • the upper water tank includes: a first upper water tank; a second upper water tank forming a through connection with the first upper water tank; and an intermediate plate, It is located between the first upper water tank and the second upper water tank, and a notch is provided on the intermediate plate to form the through connection of the first upper water tank and the second upper water tank.
  • the condensed water generated on the inner and outer side walls of the base of the air conditioner and its heat exchanger can be collected separately to improve the condensation.
  • the comprehensiveness of water collection; and the through-connection of the first upper water tank and the second upper water tank is formed by setting a gap on the middle plate, thereby preventing the occurrence of overflow caused by excessive accumulation of water in the water tank, thereby improving the air conditioner Use comfort.
  • a base which includes: a lower base; and the sink assembly as described above, and the sink assembly is disposed on the lower base.
  • the above-mentioned water tank assembly on the lower base, when the base is applied to the air conditioner, it can not only collect the condensed water generated by the heat exchanger, but also effectively collect the air conditioner.
  • the condensate on the inner and outer side walls of the base of the air conditioner can prevent the occurrence of condensed water dripping and improve the comfort of the air conditioner; and by making the upper sink in the sink assembly vertically cover the lower sink, it can also be effective Reduce the possibility of the ash layer depositing in the sink, thereby effectively preventing the sink from being blocked by the ash layer, so as to further prevent the accumulation of condensed water from dripping into the use space and improve the comfort of the air conditioner user.
  • the sink assembly and the lower base are integrally formed.
  • the sealing performance of the base can be improved, the leakage of condensate generated during the operation of the air conditioner can be prevented more effectively, the preparation process of the air conditioner can be simplified, and the production efficiency can be improved.
  • the base further includes: an upper base, which is connected to the lower base through the upper water tank, and on the outer side wall of the upper base A second guide rib is provided, which is suitable for guiding the condensed water into the upper water tank.
  • the second guide rib can effectively guide the condensate generated on the outer side wall of the base to flow into the upper water tank, thereby ensuring the effectiveness of condensate collection.
  • the upper base abuts against the lower base through the middle plate of the upper sink.
  • one side end of the heat exchanger can be connected to the second upper water tank, and the outer side wall of the upper base can be connected to the first upper water tank. It is more convenient to realize the condensate generated by the heat exchanger and the inner and outer side walls of the base, improve the comprehensiveness of condensate collection, further prevent the occurrence of condensate leakage and drip, and improve the comfort of the air conditioner.
  • a protruding part is further provided at the abutment of the upper base and the upper water tank, and the upper base and the upper water tank pass through the protrusion.
  • the exit member forms the abutment.
  • the base further includes a drainage component, which is provided on one end of the lower base and formed with the upper sink and the lower sink. Through connection.
  • a drainage component which is provided on one end of the lower base and formed with the upper sink and the lower sink.
  • Another aspect of the embodiments of the present disclosure provides an air conditioner, which includes the base as described above.
  • the above-mentioned sink assembly on the base and applying the above-mentioned base to the air conditioner, not only can the condensed water generated by the heat exchanger be collected, but also the base of the air conditioner can be effectively collected
  • the condensed water on the inner and outer side walls prevents the occurrence of condensed water dripping, and improves the comfort of the air conditioner; and by making the upper sink in the sink assembly vertically cover the lower sink, it can also effectively reduce the dust layer
  • the possibility of depositing in the sink can effectively prevent the sink from being blocked by the ash layer, so as to further avoid the accumulation of condensed water and drip into the use space, and improve the comfort of the air conditioner user.
  • the sink assembly, base, and air conditioner provided by the embodiments of the present disclosure have the following advantages:
  • the water tank assembly when the water tank assembly is applied to the air conditioner, it can not only collect the condensed water generated by the heat exchanger, but also effectively collect the inner and outer side walls of the base of the air conditioner Condensate water, so as to prevent the occurrence of condensation and dripping, improve the comfort of the air conditioner; and by making the upper sink vertically cover the lower sink, it can also effectively reduce the possibility of ash deposits in the lower sink. This effectively prevents the occurrence of clogging of the drain tank with the ash layer, so as to further prevent the accumulation of condensed water from dripping into the use space, and improve the comfort of the air conditioner user.
  • the arrangement of the first water passage hole and the second water passage hole can fully reduce the water pressure of the upper water tank and the lower water tank, and discharge the condensate water in time, effectively preventing the accumulation and overflow of the condensate water.
  • Figure 1 (a) and (b) are respectively partial structural diagrams of the air conditioner involved in the embodiments of the disclosure.
  • FIG. 2 is a schematic diagram of a cross-sectional structure of a side surface of a base involved in an embodiment of the disclosure
  • Figure 3 is a partial enlarged view of I1 in Figure 2;
  • FIG. 4 is a schematic diagram of the rear structure of the base involved in the embodiment of the disclosure.
  • FIG. 5 is a schematic structural diagram of a lower base involved in an embodiment of the disclosure.
  • Figures 6 and 7 are respectively partial enlarged views of I2 and I3 in Figure 5;
  • FIG. 8 is a schematic structural diagram of the upper and lower bases of the air conditioner involved in the embodiments of the disclosure after being separated;
  • Figure 9 is a partial enlarged view of I4 in Figure 8.
  • FIG. 10 is a schematic diagram of part of the structure of the base involved in the embodiment of the disclosure.
  • Figures 1 (a) and (b) are respectively partial structural diagrams of the air conditioner involved in the embodiments of the disclosure.
  • the air conditioner involved in this embodiment may include a base and a heat exchanger 7, where the base may include an upper base 4 and a lower base 3, and the lower base 3 is also A water tank assembly 31 including an upper water tank 311 and a lower water tank 312 may be provided.
  • the upper base 4 may be connected to the lower base 3 through the upper water tank 311.
  • the heat exchanger 7 may be connected to the upper water tank 311.
  • the condensate generated on the inner and outer side walls of the upper base and the heat exchanger during the operation of the air conditioner can be effectively collected, thereby preventing the occurrence of the air conditioner. Condensation drips or leaks, etc., improve the comfort of the air conditioner.
  • FIG. 2 is a schematic cross-sectional structure diagram of the side surface of the base involved in an embodiment of the disclosure
  • FIG. 3 is a partial enlarged view of I1 in FIG. 2.
  • FIG. 2 schematically shows the structure of the base according to this embodiment, and the description of other structures of the base is omitted in the following description.
  • the lower water tank 312 may be located on the lower side of the upper water tank 311.
  • the upper water tank 311 may block the lower water tank 312 in the vertical direction.
  • the rear end of the lower water tank 312 may be retracted, so that the rear end of the upper water tank 311 and the rear end of the lower water tank 312 may have a distance difference Wmm, where W>0.
  • the so-called vertical direction refers to the up-and-down direction shown in the coordinate system in the figure;
  • the so-called shielding refers to looking down on the sink assembly from the top-down direction, and only the upper sink can be seen but the lower sink cannot be seen.
  • the upper and lower water tanks are combined up and down, so that when the water tank assembly is applied to the air conditioner, it can not only collect the condensed water generated by the heat exchanger, but also effectively collect the condensate in the base of the air conditioner.
  • the condensed water on the outer wall prevents the occurrence of condensation and dripping and improves the comfort of the air conditioner.
  • by making the upper sink vertically cover the lower sink it can also effectively reduce the deposition of ash in the lower sink. Possibility, thereby effectively preventing the occurrence of clogging of the drain tank with the ash layer, so as to further avoid the accumulation of condensed water and drip to the use space, and improve the comfort of the air conditioner user.
  • the structural features of the upper water tank 311 and the lower water tank 312 are not particularly limited.
  • the upper water tank 311 and the lower water tank 312 may both be tank-shaped structures.
  • the upper water tank 311 and the lower water tank 312 may both have a long groove-like structure, and are in a through state along their length. In this case, arranging the upper water tank and the lower water tank into a long groove shape and a penetrating structure can effectively improve the collection efficiency of condensate water, simplify the preparation process, and improve the practicability of the air conditioner.
  • the forming method between the sink assembly 31 and the lower base 3 is not particularly limited.
  • the sink assembly 31 may be integrally formed with the lower base 3.
  • the water tank assembly 31 may also be connected to the lower base 3 through components such as screws or buckles.
  • FIG. 4 is a schematic view of the back structure of the base involved in the embodiment of the disclosure
  • FIG. 5 is a schematic view of the structure of the lower base involved in the embodiment of the disclosure
  • FIGS. 6 and 7 are respectively partial enlarged views of I2 and I3 in FIG. 5 .
  • a first guide rib 3115 may be provided on the outer side wall of the upper water tank 311.
  • the so-called outer side wall refers to the outside of the tank wall of the upper water tank 311, that is, the back side of the upper water tank 311 or the side of the lower tank wall facing the outer space (opposite to the inner space of the water tank 311).
  • the first guide rib can effectively guide the condensed water generated on the outer side wall of the upper water tank to flow into the lower water tank, thereby ensuring the effectiveness of condensate collection.
  • a second guide rib 41 may be provided on the outer side wall of the upper base 4.
  • the term “outer side wall” refers to the side of the upper chassis 4 facing the outside, that is, the side facing the heat exchanger 7 of the air conditioner.
  • the second guide rib can effectively guide the condensate generated on the outer side wall of the base to flow into the upper water tank, thereby ensuring the effectiveness of condensate collection.
  • the number of the first guide rib 3115 and the second guide rib 41 is not particularly limited. In some examples, the numbers of the first diversion ribs 3115 and the second diversion ribs 41 may be the same or different. In other examples, the number of the first diversion ribs 3115 and the second diversion ribs 41 may be more than one, for example, two, five, ten, fifteen, etc., respectively. Thus, through the arrangement of more than one first diversion rib and second diversion rib, it is possible to more effectively collect the condensed water generated on the outer side wall of the upper sink or the outer side wall of the upper base, and improve the collection efficiency and overall collection. Sex.
  • the structure of the first diversion rib 3115 and the second diversion rib 41 is not particularly limited.
  • the structures of the first guide rib 3115 and the second guide rib 41 may be the same or different.
  • the structure of the first diversion rib 3115 and the second diversion rib 41 may be a regular structure, such as a sheet, a plate or a curved S-shape, etc., may also be an irregular structure, or a regular structure and A combination of irregular structures. Therefore, the structural characteristics of the first guide rib and the second guide rib can be set according to actual needs, so as to meet the different requirements of the air conditioner in different application scenarios and improve the practicability of the air conditioner.
  • the upper water tank 311 may also be provided with a first water passing hole 3111.
  • the first water passing hole 3111 may penetrate the upper water tank 311.
  • the upper water tank 311 and the lower water tank 312 may be connected through the first water hole 3111. Because the upper water tank is arranged above the lower water tank, the condensed water collected in the upper water tank can flow into the lower water tank through the first water channel, especially when the water flow in the upper water tank is large, The setting can fully reduce the overwater pressure of the upper water tank and effectively prevent the occurrence of condensate overflow.
  • the upper water tank 311 can be inclined.
  • the upper water tank 311 may have a high end 3112 and a low end 3113 with a height difference.
  • the first water passing hole 3111 may be located at the high end of the upper water tank.
  • the upper water tank can be kept in an inclined state, so that the condensed water collected therein flows to the lower end, so as to avoid the accumulation of condensate in the upper water tank; and, by setting the first water hole At the high end of the upper water tank, it can be ensured that only when the water flow in the upper water tank is large enough, it will flow into the lower water tank through the first water passage, thereby reducing the pressure of the water flow in the lower water tank and effectively preventing the condensate from overflowing from the lower water tank. happened.
  • the form of the height difference formed between the high end 3112 and the low end 3113 is not particularly limited.
  • the height difference can be formed by tilting the bottom side plate of the upper water tank 311 from the high end 3112 to the low end 3113.
  • a step 3114 may be provided between the high end 3112 and the low end 3113 to form a height difference. Therefore, the arrangement of the upper and lower ends of the upper water tank can be more conveniently and effectively realized through the inclined or step arrangement, and the height of the steps can be adjusted to achieve different degrees of inclination, which improves the practicability of the water tank assembly.
  • the number of steps 3114 with a height difference is not particularly limited.
  • the step 3114 may be at least one level, such as one level, two levels, three levels, and so on.
  • the gradual inclination of the upper sump can be achieved through different numbers of steps, so as to prevent the excessively large steep-descent inclination angle from causing the water flow rate to be too fast, and to prevent the condensate from splashing when flowing through the upper sump.
  • the lower water tank 312 may also be provided with a second water passing hole 3121.
  • the second water passage hole 3121 may penetrate the lower water tank 312.
  • the lower water tank 312 may be connected to the drainage component 6 through the second water passage hole 3121.
  • the condensed water collected in the drain tank can flow into the drainage part through the second water passage, so as to effectively drain the water in the drain tank, prevent the condensate from accumulating in the drain tank and overflow, etc., and improve The comfort of the air conditioner.
  • the lower water tank 312 may be inclined.
  • the lower water tank 312 may have the highest end 3122 of the lower water tank and the lowest end 3123 of the lower water tank.
  • the second water passing hole 3121 may be located at the lowest end 3123 of the lower sink.
  • the lower water tank can be kept in an inclined state, and the second water passage hole can be arranged at the lowest end of the lower water tank, so that the condensate collected in the lower water tank can flow to the lowest end of the lower water tank and pass through the second water The hole is drained to avoid the accumulation or overflow of condensed water in the sink.
  • FIG. 8 is a schematic structural diagram of the upper and lower bases of the air conditioner involved in an embodiment of the disclosure after being separated;
  • FIG. 9 is a partial enlarged view of I4 in FIG. 8.
  • the upper water tank 311 may further include a first upper water tank 3116 and a second upper water tank 3117, and located in the middle between the first upper water tank 3116 and the second upper water tank 3117 ⁇ 3118.
  • the first upper water tank 3116 and the second upper water tank 3117 may form a through connection.
  • a gap 3119 may be provided on the middle plate 3118 to form a through connection between the first upper water tank 3116 and the second upper water tank 3117.
  • the comprehensiveness of water collection; and the through-connection of the first upper water tank and the second upper water tank is formed by setting a gap on the middle plate, thereby preventing the occurrence of overflow caused by excessive accumulation of water in the water tank, thereby improving the air conditioner Use comfort.
  • the arrangement form of the notch 3119 is not particularly limited.
  • the notch 3119 may be a partial groove structure on the middle plate 3118, for example, a groove structure that penetrates the front and rear sides of the middle plate 3118, or a groove that penetrates the front and back and upper sides of the middle plate 3118. structure.
  • the gap 3119 may be a gap structure formed between a plurality of intermediate plates 3118. In this case, different notch forms can be selected according to actual needs to adapt to different air conditioner models, etc., so as to improve the practicality of the air conditioner.
  • connection manner and connection position of the upper base 4 and the lower base 3 are not particularly limited.
  • the upper base 4 may be connected to the lower base 3 through the middle plate 3118 of the upper sink 311.
  • the upper base 4 may abut the lower base 3 through the middle plate 3118 of the upper sink 311.
  • one side end of the heat exchanger can be connected to the second upper water tank, and the outer side wall of the upper base can be connected to the first upper water tank. It is more convenient to realize the condensate generated by the heat exchanger and the inner and outer side walls of the base, improve the comprehensiveness of condensate collection, further prevent the occurrence of condensate leakage and drip, and improve the comfort of the air conditioner.
  • a protruding part (not shown) may be provided at the abutment between the upper base 4 and the upper water tank 311.
  • the upper base 4 and the upper water tank 311 may be abutted by protruding parts.
  • the protruding parts may be bumps. In this case, the contact area of the upper base and the lower base in the abutting state can be effectively reduced, so that during the operation of the air conditioner, the noise generated at the abutment can be effectively reduced, and the user of the air conditioner can be improved.
  • FIG. 10 is a schematic diagram of part of the structure of the base involved in the embodiment of the disclosure.
  • the base may further include a drainage component 6.
  • the drainage component 6 may be disposed at one end of the lower base 3 and form a through connection with the upper water tank 311 and the lower water tank 312.
  • the upper water tank 311 may be directly connected with the drainage component 6, and the lower water tank 312 may be connected with the drainage component 6 through the second water passage 3121.
  • the structure of the drainage member 6 is not particularly limited.
  • the drainage component 6 may include a drainage channel 61 and a drainage port 62.
  • the lower end 3113 of the upper water tank 311 may be directly connected with the drainage channel 61, and the lower water tank 312 may be connected with the drainage channel 61 through the second water hole 3121.
  • the condensed water collected through the upper water tank and the lower water tank can be collected through the drainage channel, flow into the drain, and then flow out, so as to avoid the accumulation and overflow of the condensed water in the upper water tank or the lower water tank.

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (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 ensemble réservoir d'eau (31) comprenant un réservoir d'eau supérieur (311) et un réservoir d'eau inférieur (312) disposé sur le côté inférieur du réservoir d'eau supérieur (311). Le réservoir d'eau supérieur (311) et le réservoir d'eau inférieur (312) présentent une structure allongée en forme de rainure et s'étendent dans le sens de la longueur de celle-ci, et le réservoir d'eau supérieur (311) protège le réservoir d'eau inférieur (312) dans la direction verticale. La présente invention concerne en outre une base comprenant l'ensemble réservoir d'eau (31) et un climatiseur. La combinaison du réservoir d'eau supérieur avec le réservoir d'eau inférieur dans la direction verticale permet de collecter l'eau condensée générée par un échangeur de chaleur du climatiseur, et peut également collecter efficacement de l'eau condensée sur les parois latérales interne et externe de la base du climatiseur, ce qui empêche ainsi l'eau condensée de s'égoutter et améliore le confort d'utilisation du climatiseur ; en outre, la configuration du réservoir d'eau supérieur pour protéger le réservoir d'eau inférieur dans la direction verticale permet de réduire efficacement l'éventuelle accumulation de couches de poussière dans le réservoir d'eau inférieur, ce qui empêche efficacement le réservoir d'eau inférieur d'être bloqué par des couches de poussière, et évite en outre l'accumulation d'eau condensée et son égouttement vers un espace d'utilisation, ce qui améliore le confort de l'utilisateur lorsqu'il utilise le climatiseur.
PCT/CN2020/085911 2019-04-22 2020-04-21 Ensemble réservoir d'eau, base et climatiseur WO2020216217A1 (fr)

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CN201910322104.7 2019-04-22
CN201910322104.7A CN109974274A (zh) 2019-04-22 2019-04-22 水槽组件、底座及空调器

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Publication number Priority date Publication date Assignee Title
CN109974274A (zh) * 2019-04-22 2019-07-05 宁波奥克斯电气股份有限公司 水槽组件、底座及空调器
CN113719890A (zh) * 2020-05-22 2021-11-30 宁波奥克斯电气股份有限公司 空调室内机及空调器

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