CN220247076U - Air water preparation system for guaranteeing water quality based on drying treatment - Google Patents

Air water preparation system for guaranteeing water quality based on drying treatment Download PDF

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Publication number
CN220247076U
CN220247076U CN202222708106.XU CN202222708106U CN220247076U CN 220247076 U CN220247076 U CN 220247076U CN 202222708106 U CN202222708106 U CN 202222708106U CN 220247076 U CN220247076 U CN 220247076U
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water
air
filter element
exhaust
fan
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顾勇
顾天然
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Chongqing Air Water Intelligent Technology Research Institute
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Chongqing Air Water Intelligent Technology Research Institute
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A20/00Water conservation; Efficient water supply; Efficient water use

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Abstract

The utility model discloses an air water preparation system for ensuring water quality based on drying treatment, which comprises a water preparation machine outer box body, wherein an air water preparation device is arranged at the upper part of the water preparation machine outer box body, and a water storage purification treatment device is arranged at the lower part of the water preparation machine outer box body; the air water making device comprises a water making sheet; the water storage purification treatment device comprises a source water tank, wherein the source water tank is arranged below a water making sheet, a water collecting disc is arranged below the water making sheet, an isolation gap is reserved between the water collecting disc and the source water tank, and the water collecting disc is communicated with the source water tank through a condensed water conveying pipe; the device also comprises a drying structure for drying the inner wall of the isolation gap and the outer wall of the condensed water conveying pipe in the isolation gap; by adopting the structure, the drying structure is arranged at the bottom of the water collecting disc, and water condensed at the bottoms of the condensed water conveying pipe and the water collecting disc is removed in an air-drying treatment mode, so that the adverse effect of condensed water which cannot be collected by the bottoms of the condensed water conveying pipe and the water collecting disc on equipment is fundamentally solved.

Description

Air water preparation system for guaranteeing water quality based on drying treatment
Technical Field
The utility model relates to the technical field of air water production, in particular to an air water production system for guaranteeing water quality based on drying treatment.
Background
The traditional air water making machine is a device for making condensed water by using moisture in air, the principle of the air water making device is that after refrigerating a water making sheet, the condensed water is condensed into water by using air with certain humidity, and the condensed water is collected by a water collecting disc and is discharged into a source water tank through a condensed water conveying pipe for standby, and the condensed water which cannot be collected is inevitably formed by the air on the water collecting disc and the condensed water conveying pipe in the refrigerating process of the water making sheet due to the fact that the water collecting disc and the condensed water conveying pipe are close to the water making sheet; in the prior art, the condensed water conveying pipe is sleeved with the foam capable of absorbing water, condensed water generated at the bottom of the water collecting disc flows to the foam, and condensed water on the outer wall of the condensed water conveying pipe can be absorbed, so that potential safety hazards caused by the condensed water on the bottom of the water collecting disc and the outer wall of the condensed water conveying pipe to equipment are effectively prevented, the foam has limited water absorbing capacity, the water absorbing effect is lost after absorbing certain water, and the foam is not replaced for a long time, so that the water absorbed by the foam can be deteriorated to produce peculiar smell to influence the quality of the water produced by the equipment;
therefore, it is urgent to fundamentally solve the above-mentioned technical problems.
Disclosure of Invention
According to the technical problems, the utility model provides an air water making system for ensuring water quality based on drying treatment, which mainly aims to air-dry condensed water which cannot be collected by a water making device by setting up a drying structure, so that hidden danger to equipment is effectively avoided; and the safety storage of the produced water is ensured through the arrangement between the special air water filter element and the source water tank, and the safety and the water quality taste of the produced water are improved through the special air water filter element when the product is drunk.
According to the technical problems to be solved, the technical proposal is as follows:
the utility model provides an air water making system for ensuring water quality based on drying treatment, which comprises a water making machine outer box body, wherein an air water making device is arranged at the upper part of the water making machine outer box body, and a water storage purification treatment device is arranged at the lower part of the water making machine outer box body;
the air water making device comprises a water making sheet for converting moisture in the air into condensed water; the water storage purification treatment device comprises a source water tank for storing condensed water produced by the air water production device, the source water tank is arranged below a water production sheet, a water collecting disc is arranged below the water production sheet, an isolation gap is reserved between the water collecting disc and the source water tank, and the water collecting disc is communicated with the source water tank through a condensed water conveying pipe;
the device also comprises a drying structure, wherein the drying structure is used for drying the inner wall of the isolation gap and the outer wall of the condensed water conveying pipe in the isolation gap;
by adopting the structure, the drying structure is arranged at the bottom of the water collecting disc, and the condensed water condensed on the outer wall of the condensed water conveying pipe and the bottom of the water collecting disc is removed in an air-drying treatment mode, so that the adverse effect of the condensed water which cannot be collected on the equipment caused by the condensed water on the outer wall of the condensed water conveying pipe and the bottom of the water collecting disc is fundamentally solved.
Further, an air inlet window is formed in one side of the outer box body of the water making machine, the air water making device further comprises a radiating fin for exchanging heat, a fan for sucking air and a compressor for compressing gaseous refrigerant into liquid refrigerant, and the water making fin, the radiating fin and the fan are sequentially arranged corresponding to the air inlet window;
the water making sheet is positioned at the inner side of the air inlet window, the cooling fin is arranged between the water making sheet and the fan, the air inlet of the fan faces the cooling fin, and the air outlet of the fan is communicated with the first air exhaust channel;
the water making sheet, the radiating sheet and the compressor form a refrigerant circulation loop through the air inlet window and each pipeline;
by adopting the structure, the gas refrigerant is compressed into the liquid refrigerant through the compressor, then the pressure of the liquid refrigerant is released and converted into the gas refrigerant to refrigerate the water making sheet, and the water making sheet after the air encounters refrigeration is condensed into water to realize the water making system.
Still further, the drying structure comprises a second exhaust channel arranged below the water collecting tray, a dehumidifying fan is arranged at one end of the second exhaust channel, one end of the second exhaust channel far away from the dehumidifying fan extends to one side of the outer box body of the water making machine to form a second exhaust outlet, one side of the second exhaust channel close to the water collecting tray is provided with an opening and is sealed and wrapped at the bottom of the water collecting tray to form a U-shaped channel section, and the lower end of the condensed water conveying pipe penetrates through the bottom wall of the U-shaped channel section and then is communicated with a source water tank; the first exhaust channel vertically extends downwards to the bottom of the lower box body to form a first exhaust outlet;
by adopting the structure, through the design of the U-shaped structure of the second exhaust channel, the dehumidifying fan can air-dry the condensed water conveying pipe and the tray bottom of the water collecting tray at the same time, and in order not to destroy the normal air flow path in the air water making device, the air blown out by the dehumidifying fan is discharged by the second exhaust outlet.
Still further, the drying structure comprises a second exhaust channel arranged below the water collecting tray, a dehumidifying fan is arranged at one end of the second exhaust channel, an opening is formed on one side of the second exhaust channel close to the water collecting tray and is sealed and wrapped at the bottom of the water collecting tray to form a U-shaped channel section, the lower end of the condensed water conveying pipe penetrates through the bottom wall of the U-shaped channel section and then is communicated with the source water tank, one end of the second exhaust channel far away from the dehumidifying fan is communicated with a first exhaust channel, and the first exhaust channel vertically extends downwards to the bottom of the lower box body to form a first exhaust outlet;
by adopting the structure, through the design of the U-shaped structure of the second exhaust channel, the dehumidifying fan can air-dry the condensed water conveying pipe and the tray bottom of the water collecting tray at the same time, and in order not to destroy a normal air flow path in the air water making device, the air blown out by the dehumidifying fan is discharged into the first exhaust channel and is discharged by the first exhaust outlet.
Still further, the first exhaust channel is bent through the bottom of the water collecting disc to form the drying structure, one end of the first exhaust channel far away from the air outlet of the fan transversely extends to one side of the outer box body of the water making machine to form a first exhaust outlet, one side of the first exhaust channel close to the water collecting disc is provided with an opening and is sealed and wrapped on the bottom of the water collecting disc to form a U-shaped channel section, and the lower end of the condensed water conveying pipe penetrates through the bottom wall of the U-shaped channel section and then is communicated with the source water tank;
by adopting the structure, the first air exhaust channel after bending is used as a drying structure, and the design of the U-shaped structure of the first air exhaust channel ensures that the air exhausted by the air outlet of the fan can air-dry the bottom of the condensed water conveying pipe and the water collecting disc simultaneously, and the air is exhausted through the first air exhaust port formed on one side of the outer box body of the water making machine.
Further, the first exhaust channel is bent to form an air inlet section, a dehumidifying section and an air outlet section, so that the drying structure is formed; the air inlet section is in butt joint with an air outlet of the fan; the dehumidifying section is arranged at the bottom of the water collecting disc, one side of the dehumidifying section, which is close to the water collecting disc, is provided with an opening and is sealed and wrapped at the bottom of the water collecting disc to form a U-shaped channel section, and the lower end of the condensed water conveying pipe penetrates through the bottom wall of the U-shaped channel section and then is communicated with the source water tank; the air outlet section vertically extends to the bottom of the lower box body towards the direction away from the air outlet of the fan to form a first air outlet;
by adopting the structure, the first exhaust channel after bending for many times is used as a drying structure, and the design of the U-shaped structure of the first exhaust channel ensures that the air exhausted from the air outlet of the fan simultaneously dries the condensed water conveying pipe and the bottom of the water collecting disc, and the first exhaust channel extends towards the direction away from the air outlet of the fan, so that the air flow path of the side inlet of the air water making device is reserved, the experience of a user is effectively improved, and the integral aesthetic feeling of the equipment is improved by hiding the air outlet.
Further, the drying structure also comprises a plurality of elastic turbulence sheets, wherein the turbulence sheets are arranged in the corresponding first air exhaust channel or second air exhaust channel of the drying equipment, and the turbulence sheets can shake along with wind so as to form turbulence in the corresponding first air exhaust channel or second air exhaust channel;
by adopting the structure, turbulent flow can be manufactured in the exhaust channel in the drying structure by shaking the turbulent flow sheet along with wind, so that the performance of the drying structure is effectively improved, and condensate water which cannot be collected is better removed.
Still further, the water storage purification treatment device also comprises an air water special filter element and a purified water tank for storing purified water, wherein the purified water tank is arranged between the source water tank and the air water special filter element; the source water tank purifies water through a special filter element for air water and then discharges the purified water tank for storage;
by adopting the structure, water in the source water tank can be discharged out of the water purifying tank for storage after being filtered and sterilized layer by layer through the special filter element for air and water.
Still further, the special filter element for air and water comprises a preposed filter element assembly and a postposed active carbon filter element, wherein the water in the source water tank is purified by the preposed filter element assembly and then discharged into a purified water tank for storage, and the purified water in the purified water tank is purified by the postposed active carbon filter element and then is provided with drinking water outwards;
by adopting the structure, the purified water can be safely and effectively stored, so that water is supplied timely, and drinking water with extremely poor bacteria exceeding taste due to overlong storage time can be effectively avoided when drinking is needed.
Finally, the preposed filter element component comprises a PP cotton filter element, an active carbon filter element and a reverse osmosis RO membrane filter element; the source water tank is communicated with the water purifying tank through the PP cotton filter element, the activated carbon filter element and the reverse osmosis RO membrane filter element in sequence;
by adopting the structure, the water in the source water tank can be purified for multiple times through the PP cotton filter element, the activated carbon filter element and the reverse osmosis RO membrane filter element and then discharged into the water purifying tank for storage; when drinking is needed, the stored water can further improve the taste of the drinking water through the rear activated carbon filter element.
Compared with the prior art, the utility model has the beneficial effects that:
adopt above technical scheme's air-to-water system based on quality of water is ensured in drying process, can be through remaining or generating unable collected comdenstion water air-dries on drying structure will water collector bottom and the comdenstion water conveyer pipe, avoided the comdenstion water to the adverse effect of equipment effectively to through the design of leading filter element assembly and rear-mounted active carbon filter core, can guarantee the mountability of drinking water and to the guarantee of quality of water effectively, also promoted the taste when drinking.
Drawings
FIG. 1 is a schematic view of the structure of an outer casing of a water generator according to a first embodiment of the present utility model;
FIG. 2 is a schematic view of the internal structure of the first embodiment;
FIG. 3 is an enlarged view of the drying structure of FIG. 2;
FIG. 4 is an installation view of the second exhaust duct in the first embodiment;
FIG. 5 is a schematic view of the structure of an outer casing of a water maker according to a second embodiment of the present utility model;
fig. 6 is a schematic structural view of a second exhaust duct configured in the second embodiment;
FIG. 7 is a schematic structural view of a special air-water filter element in the utility model;
FIG. 8 is a schematic view of the structure of an outer casing of a water generator according to a third embodiment of the present utility model;
FIG. 9 is a schematic diagram of a drying structure formed by the first exhaust duct in the third embodiment;
FIG. 10 is a schematic view showing the internal structure of a fourth embodiment of the present utility model;
fig. 11 is a schematic diagram of a drying structure formed by the first exhaust duct in fig. 9.
Detailed Description
The utility model is further described below with reference to examples and figures.
Referring to fig. 1 and 2, the present utility model provides an air water making system for ensuring water quality based on a drying process, which mainly comprises an outer casing 1 of a water making machine composed of an upper casing 1a and a lower casing 1b, wherein one side of the upper casing 1a is provided with an air inlet window 11, a filter screen (not shown) for filtering air impurities is arranged in the air inlet window 11, an air water making device corresponding to the air inlet window 11 is arranged in the upper casing 1a, and a water storage purifying treatment device is arranged in the lower casing 1 b;
the air water making device mainly comprises a water making sheet 21, a radiating sheet 22, a fan 23 and a compressor 24 which are sequentially arranged corresponding to an air inlet window 11, and the air water making function is completed through the cooperation among all the components; the air water making device mainly realizes that air is condensed into water by contacting air with a water making sheet 21, the working principle is that the air with certain humidity is sucked by a fan 23, the water making sheet 21 in a low temperature state is contacted with the water making sheet, the air cooled by the water making sheet 21 is contacted with a radiating sheet 22, wherein the radiating sheet 22 is in a heat release process in a working state, therefore, the temperature of the radiating sheet 22 is relatively high, the gaseous refrigerant in the radiating sheet 22 and the air cooled by the water making sheet 21 replace the temperature, the constant temperature and dry air is discharged into a first exhaust channel 23a of the fan 23, a first exhaust outlet 23b formed by the first exhaust channel 23a, and the gaseous refrigerant in the radiating sheet 22 is discharged after the temperature is replaced, the gas refrigerant is compressed by the compressor 24 to form a liquid refrigerant, the liquid refrigerant is transmitted to the water making sheet 21 by an output conduit connecting the compressor 24 and the water making sheet 21, the part of the output conduit close to the water making sheet 21 is arranged as a capillary conduit, when the liquid refrigerant compressed by the compressor 24 passes through the capillary conduit, the liquid pressure of the liquid refrigerant can be released, the liquid refrigerant is converted into a gas refrigerant, and the liquid refrigerant is converted into the gas refrigerant, which is an endothermic process, a great amount of heat is required to be absorbed, so that the temperature of the gas refrigerant is rapidly reduced and is transmitted to the water making sheet 21, the gas refrigerant can cool the water making sheet 21, and when air enters the water making sheet 21 when meeting the air inlet window 11, the air with a certain humidity can be condensed into water; wherein the water producing sheet 21 can be provided as an evaporator and the heat radiating sheet 22 can be provided as a condenser, the water producing principle is the same as the dehumidifying function principle in the air conditioner, and an air water producing device for producing water in air with a certain humidity can be obtained.
The water storage purification treatment device mainly comprises an active water tank 31, an air-water special filter element 32 and a clean water tank 33, wherein the active water tank 31 is used for storing water prepared by a water preparation sheet 21, the stored water is discharged into the air-water special filter element 32 by the active water tank 31 for filtering, removing peculiar smell and sterilizing by adsorbing heavy metals of residual chlorine, and then the purified water is discharged into the clean water tank 33 for storage, and when the water in the clean water tank 33 needs to be discharged for drinking, the water is discharged after passing through the sterilization of the air-water special filter element 32 and improving the water quality taste.
Referring specifically to fig. 7, the source water tank 31 discharges the stored water into the air-water dedicated filter element 32 for purification by a water suction pump, the air-water dedicated filter element 32 is a four-stage air-water dedicated filter element 32, and includes a front filter element assembly 321 and a rear activated carbon filter element 322, and the front filter element assembly 321 specifically includes a PP cotton filter element 321a for filtering large-particle impurities such as silt rust; an activated carbon filter element 321b for absorbing heavy metal odor and removing; the reverse osmosis RO membrane filter core 321c is used for filtering bacteria, heavy metals, viruses or antibiotics, etc. to improve the taste of water quality, and then is discharged into the clean water tank 33 for storage, when water is needed, the purified water in the clean water tank 33 is discharged into the post-positioned active carbon filter core 322 for treatment again and then is discharged; in this scheme, when the purified water of the special filter core 32 for air and water is discharged into the clean water tank 33, the taste of the water quality is improved immediately before the post-positioned active carbon filter core 322 is used for drinking, but when the water in the clean water tank 33 needs to be drunk, the water is discharged into the post-positioned active carbon filter core 322 to improve the taste of the water quality immediately, and the following advantages are that: considering that bacteria are also generated during the storage of the clean water tank 33 and the taste of the water quality of the water during the storage is gradually reduced, the water is purified by the activated carbon again before drinking; the source tank 31, the air-water dedicated filter element 32 and the clean water tank 33 are all connected through water pipes.
The PP cotton filter element 321a, the activated carbon filter element 321b, the reverse osmosis RO membrane filter element 321c and the post-activated carbon filter element 322 in the four-stage air-water special filter element 32 are all commonly used filter element pieces in the water purifier, and the inside of the filter element pieces is not further improved, so that the internal structure of each filter element is not shown in the figure, and the filter element is better and better understood.
It should be noted that, when the reverse osmosis RO membrane filter element 321c is installed in the prior art, a concentrated water port or a water outlet is needed to discharge the wastewater, and the discharged wastewater needs to flow into a sewer, so that the setting condition of the device is inadvertently added.
It should be further noted that the source tank 31 and the fresh water tank 33 each have a water storage function, and the water supply is stopped when the water storage is used up and the supply is not needed, and only the water production system is started to produce water. And the device is only suitable for being set up in the areas of the south where the climate is humid, and cannot be used in areas (such as deserts or other dry areas) where water resources are lacking.
Preferentially, the source water tank 31 is arranged right below the water making sheet 21, and a water collecting disc 4 is arranged between the water making sheet 21 and the source water tank 31, the bottom of the water collecting disc 4 is communicated with the source water tank 31 through the condensed water conveying pipe 5, and a drying structure is further arranged at the bottom of the water collecting disc 4, so that condensed water accumulated on the bottom of the water collecting disc 4 and the condensed water conveying pipe 5 can be air-dried by the drying structure, faults caused by component damage or circuit short circuit due to accumulated water in the air water making device can be effectively prevented, and normal operation of equipment is avoided.
First embodiment:
referring to fig. 1 to 4, the drying structure mainly includes a second air exhaust channel 7 disposed at the bottom of the water collecting tray 4, an opening is disposed on one side of the second air exhaust channel 7 near the water collecting tray 4, two ends of the opening of the second air exhaust channel 7 are sealed and fixed at the bottom of the water collecting tray 4 to form a U-shaped channel section, a condensate water conveying pipe 5 connected to the bottom of the water collecting tray 4 is communicated with a source water tank 31 through the U-shaped channel section, a dehumidifying fan 6 for drying the condensate water conveying pipe 5 and the bottom of the water collecting tray 4 is mounted at one end of the second air exhaust channel 7, and a second air outlet 8 is provided on one side of the upper box 1a corresponding to one end of the second air exhaust channel 7 far from the dehumidifying fan 6, the second air outlet 8 is used for discharging air blown by the dehumidifying fan 6 out of the outer box 1 of the water making machine.
Second embodiment:
referring to fig. 5 and 6, the drying structure mainly includes a second air exhaust channel 7 disposed at the bottom of the water collecting tray 4, the second air exhaust channel 7 has an opening near one side of the water collecting tray 4, and two ends of the opening of the second air exhaust channel 7 are sealed and fixed at the bottom of the water collecting tray 4 to form a U-shaped channel section, and a condensate water conveying pipe 5 connected to the bottom of the water collecting tray 4 is communicated with a source water tank 31 through the U-shaped channel section, one end of the second air exhaust channel 7 is provided with a dehumidifying fan 6 for drying the condensate water conveying pipe 5 and the bottom of the water collecting tray 4, and the other end of the second air exhaust channel 7 corresponding to the dehumidifying fan 6 is communicated with a first air exhaust channel 23a, the first air exhaust channel 23a extends vertically at the bottom of the lower box 1b to form a first air exhaust opening 23b, the dehumidifying fan 6 is used for airing the bottom of the condensate water conveying pipe 5 and the water collecting tray 4, and the air blown by the dehumidifying fan 6 is discharged into the first air exhaust channel 23a by the second air exhaust channel 7 and is discharged by the first air exhaust opening 23b; compared with the first embodiment, the opening of the second air outlet 8 is simplified, the overall appearance of the air water production system is effectively improved, and the air blown by the dehumidifying fan 6 is discharged into the first air outlet channel 23a for treatment.
Third embodiment:
referring to fig. 7 and 8, the drying structure is formed by bending a first air exhaust channel 23a twice through the bottom of the water collecting disc 4, an opening is formed on one side of the first air exhaust channel 23a close to the water collecting disc 4, two ends of the opening of the first air exhaust channel 23a are fixed on the bottom of the water collecting disc 4 in a sealing way to form a U-shaped channel section, the first air exhaust channel 23a extends to one side of the outer box body 1 of the water making machine to form a first air exhaust outlet 23b, and a condensed water conveying pipe 5 connected with the bottom of the water collecting disc 4 penetrates through the U-shaped channel section to be communicated with a source water tank 31; the air discharged from the air outlet of the fan 23 is used for airing the bottom of the condensate water conveying pipe 5 and the water collecting disc 4 through the first air exhaust channel 23a, and then is discharged through the first air exhaust outlet 23b; the arrangement of the dehumidifying fan 6 is simplified compared to the first and second embodiments, the first exhaust duct 23a is deformed as a drying structure, and a side-measured dehumidifying duct is formed in the water maker outer case 1.
Fourth embodiment:
referring to fig. 9 and 10, the first exhaust passage 23a is bent several times and passes through the bottom of the water collecting tray 4 to form an air inlet section 23a1, a dehumidifying section 23a2 and an air outlet section 23a3, wherein the air inlet section 23a1, the dehumidifying section 23a2 and the air outlet section 23a3 form a drying structure; the air inlet section 23a1 has an upper opening that interfaces with the air outlet of the blower 23; the dehumidifying section 23a2 is arranged at the bottom of the water collecting tray 4, one side of the dehumidifying section 23a2 close to the water collecting tray 4 is provided with an opening, two ends of the opening of the dehumidifying section 23a2 are sealed and wrapped at the bottom of the water collecting tray 4 to form a U-shaped channel section, and the condensed water conveying pipe 5 penetrates through the bottom wall of the U-shaped channel section and then is communicated with the source water tank 31; the air outlet section 23a3 vertically extends to the bottom of the lower box body 1b towards the direction away from the air outlet of the fan 23 to form a first air outlet 23b; the air discharged from the air outlet of the fan 23 is discharged into the dehumidifying section 23a2 through the air inlet section 23a1 to air-dry the bottom of the condensed water conveying pipe 5 and the water collecting tray 4, and then is discharged through the air outlet section 23a 3; compared with the third embodiment, the drying structure formed by bending the first exhaust passage 23a for many times still retains the exhaust circulation loop of the side-in and side-out of the air-water making system; when in use, the discomfort caused to the user is effectively reduced, the placement position of the air outlet is hidden, and the overall beauty is improved.
Preferentially, the fan 23 and the dehumidifying fan 6 are both wind source mechanisms with adjustable rotating speeds, turbulence can be formed in each induced air channel by adjusting the wind speed, so that the dehumidifying effect of the drying structure is obviously improved, and the local dehumidifying effect of unidirectional wind can be air-dried is optimized.
Referring to fig. 4 and 10, in the first, second, third and fourth embodiments, turbulence plates 9 (not shown in the drawings of the turbulence plates 9 in the second and third embodiments) are further included, the turbulence plates 9 are installed in the first exhaust channel 23a or the second exhaust channel, the turbulence plates 9 are made of elastic materials, and can shake in the pipeline through wind blowing, so as to form gas turbulence in the pipeline, and the device can be dried better under the action of the gas turbulence; preferably, the turbulence sheets 9 are arranged in the U-shaped channel section formed by the bottom of the water collecting disc 4, so that the drying structure can air-dry the bottom of the water collecting disc 4 and the condensed water conveying pipe 5, and the dehumidification effect of the drying structure is effectively optimized.
Preferably, the filter screen is fixed at the inner side of the air inlet window 11 and is located between the air inlet window 11 and the water producing sheet 21, and UV sterilizing lamps (not shown) are respectively arranged at the filter screen and the inner top of the clean water tank 33, wherein the UV sterilizing lamps are used for cleaning bacteria growing on the filter screen so as to ensure the purity of the discharged air, and the UV sterilizing lamps in the clean water tank 33 are used for cleaning bacteria on the water surface stored in the clean water tank 33, and the microorganisms are lighter and do not accompany larger particles and cannot sink into the water, so that the light of the UV sterilizing lamps irradiates the water surface, the quality of the clean water tank 33 is ensured in the storage process, and the drinking water can be produced and stored more safely.
Preferably, floating balls (not shown) for measuring the height of the water level are installed in both the source tank 31 and the clean water tank 33, and the water level is detected by the buoyancy of the water so as not to overflow due to excessive water and water storage; and each water pipe and each water drain pipe are provided with a water pump to provide a power source, so that the functions of water pumping and water draining are realized; the condensed water feed pipe 5 is selected as a bellows.
The embodiments of the present utility model are described in detail above, examples of which are illustrated in the accompanying drawings, wherein the same or similar reference numerals refer to the same or similar elements or elements having the same or similar functions throughout. The embodiments described above by referring to the drawings are exemplary and intended to be used for explaining the present utility model and are not to be construed as limiting the utility model.
In the description of the present utility model, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "clockwise", "counterclockwise", etc. indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings are merely for convenience in describing the present utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be configured and operated in a specific orientation, and thus should not be construed as limiting the present utility model.
In the present utility model, unless explicitly specified and limited otherwise, the terms "mounted," "connected," "secured," and the like are to be construed broadly and may be, for example, fixedly connected, detachably connected, or integrally connected; can be mechanically or electrically connected; can be directly connected or indirectly connected through an intermediate medium, and can be communication between two elements. The specific meaning of the above terms in the present utility model can be understood by those of ordinary skill in the art according to the specific circumstances.
In the present utility model, unless expressly stated or limited otherwise, a first feature "above" or "below" a second feature may include both the first and second features being in direct contact, as well as the first and second features not being in direct contact but being in contact with each other through additional features therebetween. Moreover, a first feature being "above," "over" and "on" a second feature includes the first feature being directly above and obliquely above the second feature, or simply indicating that the first feature is higher in level than the second feature. The first feature being "under", "below" and "beneath" the second feature includes the first feature being directly under and obliquely below the second feature, or simply means that the first feature is less level than the second feature.
Finally, it should be noted that the above description is only a preferred embodiment of the present utility model, and that many similar changes can be made by those skilled in the art without departing from the spirit and scope of the utility model as defined in the appended claims.

Claims (10)

1. An air to water system based on drying process ensures quality of water, its characterized in that: the water storage device comprises a water making machine outer box body (1), wherein an air water making device is arranged at the upper part of the water making machine outer box body (1), and a water storage purification treatment device is arranged at the lower part of the water making machine outer box body (1);
the air water making device comprises a water making sheet (21) for converting moisture in the air into condensed water; the water storage purification treatment device comprises a source water tank (31) for storing condensed water produced by the air water production device, the source water tank (31) is arranged below a water production sheet (21), a water collecting disc (4) is arranged below the water production sheet (21), an isolation gap is reserved between the water collecting disc (4) and the source water tank (31), and the water collecting disc (4) is communicated with the source water tank (31) through a condensed water conveying pipe (5);
the device also comprises a drying structure for drying the inner wall of the isolation gap and the outer wall of the condensed water conveying pipe (5) in the isolation gap.
2. The air-to-water system for ensuring water quality based on a drying process according to claim 1, wherein: an air inlet window (11) is formed in one side of the outer box body (1) of the water making machine, the air water making device further comprises a radiating fin (22) for exchanging heat, a fan (23) for sucking air and a compressor (24) for compressing gaseous refrigerants into liquid refrigerants, and the water making fin (21), the radiating fin (22) and the fan (23) are sequentially arranged corresponding to the air inlet window (11);
the water making sheet (21) is positioned at the inner side of the air inlet window (11), the radiating fin (22) is arranged between the water making sheet (21) and the fan (23), the air inlet of the fan (23) faces the radiating fin (22), and the air outlet of the fan (23) is communicated with the first air exhaust channel (23 a);
the water making sheet (21), the radiating fin (22) and the compressor (24) form a refrigerant circulation loop through the air inlet window (11) and each pipeline.
3. The air-to-water system for ensuring water quality based on a drying process according to claim 2, wherein: the drying structure comprises a second exhaust channel (7) arranged below the water collecting disc (4), a dehumidifying fan (6) is arranged at one end of the second exhaust channel (7), which is far away from the dehumidifying fan (6), extends to one side of the outer box body (1) of the water making machine to form a second exhaust outlet (8), one side, which is close to the water collecting disc (4), of the second exhaust channel (7) is provided with an opening and is sealed and wrapped at the bottom of the water collecting disc (4) to form a U-shaped channel section, and the lower end of the condensed water conveying pipe (5) penetrates through the bottom wall of the U-shaped channel section and then is communicated with a source water tank (31); the first exhaust channel (23 a) vertically extends downwards to the bottom of the lower box body (1 b) to form a first exhaust outlet (23 b).
4. The air-to-water system for ensuring water quality based on a drying process according to claim 2, wherein: the drying structure including setting up the second passageway (7) of airing exhaust in water collecting tray (4) below, dehumidification fan (6) are installed to second passageway (7) one end of airing exhaust, one side that second passageway (7) of airing exhaust is close to water collecting tray (4) has the opening and sealed parcel forms U-shaped passageway section at water collecting tray (4) bottom of the dish, communicate source water tank (31) behind the diapire of this U-shaped passageway section is passed to the lower extreme of comdenstion water conveyer pipe (5), then the one end intercommunication first passageway (23 a) of airing exhaust of dehumidification fan (6) are kept away from to second passageway (7), first passageway (23 a) of airing exhaust vertical downwardly extending forms first air outlet (23 b) to lower box (1 b) bottom.
5. The air-to-water system for ensuring water quality based on a drying process according to claim 2, wherein: the first exhaust channel (23 a) is bent to form the drying structure through the tray bottom of the water collecting tray (4), one end of the first exhaust channel (23 a), which is far away from the air outlet of the fan (23), transversely extends to one side of the outer box body (1) of the water making machine to form a first exhaust outlet (23 b), one side, which is close to the water collecting tray (4), of the first exhaust channel (23 a) is provided with an opening and is sealed and wrapped on the tray bottom of the water collecting tray (4) to form a U-shaped channel section, and the lower end of the condensate water conveying pipe (5) penetrates through the bottom wall of the U-shaped channel section and then is communicated with the source water tank (31).
6. The air-to-water system for ensuring water quality based on a drying process according to claim 2, wherein: the first exhaust channel (23 a) is bent to form an air inlet section (23 a 1), a dehumidifying section (23 a 2) and an air outlet section (23 a 3), so that the drying structure is formed; the air inlet section (23 a 1) is abutted against an air outlet of the fan (23); the dehumidifying section (23 a 2) is arranged at the bottom of the water collecting disc (4), one side of the dehumidifying section (23 a 2) close to the water collecting disc (4) is provided with an opening and is sealed and wrapped at the bottom of the water collecting disc (4) to form a U-shaped channel section, and the lower end of the condensed water conveying pipe (5) penetrates through the bottom wall of the U-shaped channel section and then is communicated with the source water tank (31); the air outlet section (23 a 3) vertically extends to the bottom of the lower box body (1 b) towards the direction away from the air outlet of the fan (23) to form a first air outlet (23 b).
7. An air water making system for ensuring water quality based on a drying process according to claim 3 or 4 or 5 or 6, characterized in that: the drying structure also comprises a plurality of elastic turbulence sheets (9), wherein the turbulence sheets (9) are arranged in the first air exhaust channels (23 a) or the second air exhaust channels (7) corresponding to the drying equipment, and the turbulence sheets (9) can shake along with wind so as to form turbulence in the corresponding first air exhaust channels (23 a) or the corresponding second air exhaust channels (7).
8. The air-to-water system for ensuring water quality based on a drying process according to claim 1, wherein: the water storage purification treatment device also comprises an air water special filter element (32) and a purified water tank (33) for storing purified water, wherein the purified water tank (33) is arranged between the source water tank (31) and the air water special filter element (32); the source water tank (31) purifies water through an air water special filter element (32) and then discharges the purified water tank (33) for storage.
9. The air-to-water system for ensuring water quality based on a drying process according to claim 8, wherein: the special filter element (32) for air and water comprises a front filter element assembly (321) and a rear active carbon filter element (322), wherein water in the source water tank (31) is purified by the front filter element assembly (321) and then is discharged into the water purifying tank (33) for storage, and purified water in the water purifying tank (33) is purified by the rear active carbon filter element (322) and then is provided with drinking water.
10. The air-to-water system for ensuring water quality based on a drying process according to claim 9, wherein: the preposed filter element assembly (321) comprises a PP cotton filter element (321 a), an active carbon filter element (321 b) and a reverse osmosis RO membrane filter element (321 c); the source water tank (31) is communicated with the water purifying tank (33) through the PP cotton filter element (321 a), the activated carbon filter element (321 b) and the reverse osmosis RO membrane filter element (321 c) in sequence.
CN202222708106.XU 2021-11-26 2022-10-14 Air water preparation system for guaranteeing water quality based on drying treatment Active CN220247076U (en)

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CN202122929409 2021-11-26
CN202122929409X 2021-11-26

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