CN208635378U - The mounting structure and dehumidifying heat pump of compressor for the heat pump that dehumidifies - Google Patents

The mounting structure and dehumidifying heat pump of compressor for the heat pump that dehumidifies Download PDF

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Publication number
CN208635378U
CN208635378U CN201821355477.1U CN201821355477U CN208635378U CN 208635378 U CN208635378 U CN 208635378U CN 201821355477 U CN201821355477 U CN 201821355477U CN 208635378 U CN208635378 U CN 208635378U
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compressor
heat pump
rack
cover
mounting structure
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CN201821355477.1U
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石曾矿
唐树佳
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GUANGZHOU GREEDRIER ENERGY EQUIPMENT CO Ltd
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GUANGZHOU GREEDRIER ENERGY EQUIPMENT CO Ltd
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Abstract

The utility model discloses a kind of mounting structure of compressor for the heat pump that dehumidifies and dehumidifying heat pumps, the mounting structure includes support base and waterproof sealing cover, the support base is mounted on the bottom of the rack of dehumidifying heat pump, the compressor is mounted on the support base, and the waterproof sealing the cover is located at the top of the support base and is close to the outer wall of the compressor.The utility model can prevent liquid from overstocking near compressor and leaking out from compression motor spindle in this way since the periphery in compressor is provided with waterproof sealing cover, thus ensure that dehumidifying heat pump bottom and surrounding enviroment do it is clean.

Description

The mounting structure and dehumidifying heat pump of compressor for the heat pump that dehumidifies
Technical field
The utility model relates to dehumidifying technology fields, and in particular to the mounting structure of the compressor for the heat pump that dehumidifies and remove Damp and hot pump.
Background technique
The working method of dehumidifying heat pump is the moisture formation damp-heat air taken out of in material to be dehumidified by heated dry air, then The cyclic process that dehumidification treatments form heated dry air again is carried out to damp-heat air.Dehumidifying heat pump is formally based on above-mentioned circular treatment It is dehumidified with forming hot air circulating system to material to be dehumidified.
Dehumidifying heat pump will form a large amount of liquid during being dehumidified, these liquid generally pass through setting and dehumidifying The drip tray of heat pump bottom is caught, then is discharged via the condensate pipe connecting with drip tray.And the compressor for the heat pump that dehumidifies is being pacified When dress, need to be mounted on the bottom of dehumidifying heat pump across drip tray, this relationship of compressor and drip tray makes have few portion Liquid separation cognition is overstock near compressor, and is leaked out from the bottom of compressor, is caused the humidity on ground, is overstock near compressor The work such as daily maintenance of the liquid inconvenience staff to dehumidifying heat pump, and the liquid escaped on ground can then cause to remove Not doing for damp and hot pump surrounding enviroment is clean.
Utility model content
In view of the deficiencies of the prior art, the utility model provides a kind of mounting structure of compressor for the heat pump that dehumidifies And dehumidifying heat pump, for solving the problems, such as ponding and leak near compressor in the prior art.
For this purpose, first aspect according to the present utility model is to provide a kind of installation knot of compressor for the heat pump that dehumidifies Structure, the mounting structure enable to compressor to be sealed, and prevent liquid from overstocking near compressor and leaking out from compression motor spindle.
Second aspect according to the present utility model is to provide a kind of dehumidifying heat pump with above-mentioned mounting structure, the dehumidifying The bottom of heat pump and surrounding enviroment are done clean.
Include: according to mounting structure described in the utility model first aspect
Support base, the support base are mounted on the bottom of the rack of dehumidifying heat pump, and the compressor is mounted on the support On seat;And
Waterproof sealing cover, the waterproof sealing the cover are located at the top of the support base and are close to the outer of the compressor Wall.
According to mounting structure described in the utility model first aspect, since compressor is mounted on support base, and support Seat is mounted on the bottom of dehumidifying heat pump, while waterproof sealing the cover is located at the top of support base and is close to the outer wall of compressor, this Sample is by the setting of waterproof sealing cover so that the periphery and bottom of compressor are sealed in waterproof sealing cover, so as to prevent Liquid overstocks near compressor and leaks out from compression motor spindle.
It can also include following additional technical feature according to mounting structure described in the utility model first aspect.
As the further optinal plan of the mounting structure, the support base includes a pair of of bar shaped support disposed in parallel Body, the compressor are fixedly mounted on the bar shaped supporter by fastener.
As the further optinal plan of the mounting structure, the fastener is screw.
As the further optinal plan of the mounting structure, sealing is equipped between the waterproof sealing cover and the rack Glue.
As the further optinal plan of the mounting structure, between the waterproof sealing cover and the outer wall of the compressor Equipped with sealant.
As the further optinal plan of the mounting structure, the waterproof sealing cover includes the first cover and the second cover Body, first cover connect with second cover and enclose the accommodating chamber for accommodating the support base.
Dehumidifying heat pump described in second aspect according to the present utility model includes rack, hothouse, setting in the rack On loop dehumidification and the drip tray of the bottom of the frame is set, the hothouse is described to remove for placing material to be dehumidified Wet circuit forms liquid discharge for dehumidifying to the material to be dehumidified, and the drip tray is used to receive the liquid, The loop dehumidification includes compressor, and the compressor is arranged in the bottom of the rack and passes through the drip tray.
In addition, the periphery of the compressor is provided with waterproof sealing cover, for preventing the liquid from entering the compression The lower section of machine and flow out the rack.
According to mounting structure described in the utility model second aspect, since the periphery in compressor is provided with waterproof sealing Cover can prevent liquid from overstocking near compressor and leaking out from compression motor spindle, to ensure that the bottom of dehumidifying heat pump in this way Doing for portion and surrounding enviroment is clean.
Dehumidifying heat pump can also include following additional technical feature according to the utility model second aspect.
As the further optinal plan of the dehumidifying heat pump, it is equipped between the waterproof sealing cover and the drip tray close Sealing.
As the further optinal plan of the dehumidifying heat pump, the dehumidifying heat pump further includes condensate pipe, the condensation Water pipe is connected to the drip tray, for the liquid in the drip tray to be discharged outside the rack.
As the further optinal plan of the dehumidifying heat pump, the loop dehumidification includes heated dry air circuit and freezes back Road, the heated dry air circuit are used to provide heated dry air to the hothouse, and the refrigerating circuit is used for will be described xeothermic The moisture that air is formed by damp-heat air after dehumidifying to the material to be dehumidified is liquefied discharge.
Detailed description of the invention
It, below will be to use required in embodiment in order to illustrate more clearly of the technical solution of the utility model embodiment Attached drawing be briefly described, it should be understood that the following drawings illustrates only some embodiments of the utility model, therefore should not be by Regard the restriction to range as, for those of ordinary skill in the art, without creative efforts, may be used also To obtain other relevant attached drawings according to these attached drawings.
Fig. 1 is shown according to provided by the utility model embodiment for the mounting structure of the compressor for the heat pump that dehumidifies Scheme of installation;
Fig. 2 shows the mounting structures of the compressor for the heat pump that is used to dehumidify according to provided by the utility model embodiment The structural schematic diagram of support base;
Fig. 3 is shown according to provided by the utility model embodiment for the mounting structure of the compressor for the heat pump that dehumidifies The structural schematic diagram of waterproof sealing cover;
Fig. 4 shows the structural schematic diagram for the heat pump that dehumidifies according to provided by the utility model embodiment two.
Main element symbol description:
100- support base;200- waterproof sealing cover;300- compressor;400- rack;500- drip tray;600- condensed water Pipe;700- regenerator;800- evaporator;900- condenser;1000- filter;1100- is saved can heat exchanger;1200- partition; 110- bar shaped supporter;The first cover of 210-;The second cover of 220-;230- accommodating chamber;410- pedestal;The latticed frame body of 420-; 231- opening;The firstth area 421-;The secondth area 422-;423- third area.
Specific embodiment
The embodiments of the present invention are described below in detail, examples of the embodiments are shown in the accompanying drawings, wherein from beginning Same or similar element or element with the same or similar functions are indicated to same or similar label eventually.Below by ginseng The embodiment for examining attached drawing description is exemplary, and is only used for explaining the utility model, and should not be understood as to the utility model Limitation.
In the description of the present invention, it should be understood that term " center ", " longitudinal direction ", " transverse direction ", " length ", " width Degree ", " thickness ", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outside", The orientation or positional relationship of the instructions such as " clockwise ", " counterclockwise ", " axial direction ", " radial direction ", " circumferential direction " is based on the figure Orientation or positional relationship is merely for convenience of describing the present invention and simplifying the description, rather than the dress of indication or suggestion meaning It sets or element must have a particular orientation, be constructed and operated in a specific orientation, therefore should not be understood as to the utility model Limitation.
In addition, term " first ", " second " are used for descriptive purposes only and cannot be understood as indicating or suggesting relative importance Or implicitly indicate the quantity of indicated technical characteristic.Define " first " as a result, the feature of " second " can be expressed or Implicitly include one or more of the features.The meaning of " plurality " is two or two in the description of the present invention, More than, unless otherwise specifically defined.
In the present invention unless specifically defined or limited otherwise, term " installation ", " connected ", " connection ", " Gu It is fixed " etc. terms shall be understood in a broad sense, for example, it may be being fixedly connected, may be a detachable connection, or integral;It can be Mechanical connection, is also possible to be electrically connected;It can be directly connected, two can also be can be indirectly connected through an intermediary The interaction relationship of connection or two elements inside element.It for the ordinary skill in the art, can basis Concrete condition understands the concrete meaning of above-mentioned term in the present invention.
In the present invention unless specifically defined or limited otherwise, fisrt feature is in the second feature " on " or " down " It can be that the first and second features directly contact or the first and second features are by intermediary mediate contact.Moreover, first is special Sign can be fisrt feature above the second feature " above ", " above " and " above " and be directly above or diagonally above the second feature, or only Indicate that first feature horizontal height is higher than second feature.Fisrt feature under the second feature " below ", " below " and " below " can be with It is that fisrt feature is directly under or diagonally below the second feature, or is merely representative of first feature horizontal height less than second feature.
Embodiment one
The present embodiment one provides a kind of mounting structure of compressor 300 for the heat pump that dehumidifies.
Fig. 1-3 is please referred to, which includes support base 100 and waterproof sealing cover 200.
Wherein, support base 100 is mounted on the bottom of the rack of dehumidifying heat pump, and compressor 300 is mounted on support base 100. Waterproof sealing cover 200 covers the top for being located at support base 100 and is close to the outer wall of compressor 300.
In this way, since compressor 300 is mounted on support base 100, and support base 100 is mounted on the bottom of dehumidifying heat pump, Waterproof sealing cover 200 covers the top for being located at support base 100 and is close to the outer wall of compressor 300 simultaneously, passes through waterproof sealing in this way The setting of cover 200 is so that the periphery and bottom of compressor 300 are sealed in waterproof sealing cover 200, so as to prevent liquid It overstocks near compressor 300 and is leaked out from 300 bottom of compressor.
Referring to FIG. 2, in the present embodiment, support base 100 includes a pair of of bar shaped supporter 110 disposed in parallel, compression Machine 300 is fixedly mounted on bar shaped supporter 110 by fastener.
The setting of a pair of bar shaped supporter 110 is mainly that the installation of compressor 300 provides basis.When the bottom of rack When the size of corresponding position is not suitable for installing compressor 300, transition is used as by bar shaped supporter 110, and plan bar shaped branch The installation of compressor 300 can be realized in the distance between support body 110.
On the other hand, the setting of bar shaped supporter 110 can directly contact to avoid compressor 300 with rack, can be one Determining prevents compressor 300 from being formed to rack in degree squeezes.
Certainly, in some occasions, compressor 300 can also be directly installed on the bottom of rack.
Specifically, threaded hole can be arranged on bar shaped supporter 110, then compressor is installed to by bar shaped by fastener etc. On supporter 110.
In some specific embodiments, the function of above-mentioned fastener can add the mode of nut real for screw or bolt It is existing.
After compressor 300 is installed on bar shaped supporter 110, so that it may which waterproof sealing cover 200 is then installed.
Referring to FIG. 3, the installation in order to realize waterproof sealing cover 200, in the present embodiment, waterproof sealing cover 200 includes First cover 210 and the second cover 220, the first cover 210 connect with the second cover 220 and enclose for accommodating support base 100 accommodating chamber 230.
In examples as shown in figure 3, the first cover 210 and the second cover 220 respectively limit one and bar shaped supporter The cavity that 110 shape matches then has a semicircular opening at the top of the cavity, so that when the first cover After 210 connect with the second cover 220, accommodating chamber 230 that they are surrounded be it is rectangular, to adapt to the shape of bar shaped supporter 110, And the opening 231 of accommodating chamber 230 is then circle, to adapt to the shape of compressor 300.
At this point, the first cover 210 or the second cover 220 first can be installed to bar shaped when installing waterproof sealing cover 200 The periphery of supporter 110, the first cover 210 or the second cover 220 are mounted directly in rack at this time, then sequence is installed separately One cover.
In certain embodiments, it in order to further increase sealing effect, can be set in waterproof sealing cover 200 with rack close Sealing.
In addition, sealant also can be set between waterproof sealing cover 200 and the outer wall of compressor 300.
In addition to this, the above-mentioned opening 231 of waterproof sealing cover 200 can also extend upward to cylindrical bound edge, so that After waterproof sealing cover 200 is installed in place, the bound edge can Bao Rao compressor 300 outer wall, further improve sealing effect Fruit.
Embodiment two
The present embodiment two provides a kind of dehumidifying heat pump.
Referring to FIG. 4, the dehumidifying heat pump includes rack 400, hothouse, the loop dehumidification being arranged in rack 400 and sets The drip tray 500 in 400 bottom of rack is set, hothouse is used for for placing material to be dehumidified, loop dehumidification to material to be dehumidified It dehumidifies to form liquid discharge, for drip tray 500 for receiving liquid, loop dehumidification includes compressor 300, compressor 300 The bottom of rack 400 is set and passes through drip tray 500, the periphery of compressor 300 is provided with waterproof sealing cover 200, for preventing Only liquid enters the lower section of compressor 300 and flows out rack 400.
In this way, can prevent liquid from overstocking in this way due to being provided with waterproof sealing cover 200 in the periphery of compressor 300 Compressor 300 nearby and from 300 bottom of compressor leak out, thus ensure that dehumidifying heat pump bottom and surrounding enviroment do it is clean.
Further, it in order to further increase sealing effect, can be set between waterproof sealing cover 200 and drip tray 500 Set sealant.
At this time, it is ensured that liquid is formed by after dehumidifying can entirely fall in drip tray 500.
Further, in order to which aforesaid liquid is discharged, dehumidifying heat pump further includes condensate pipe 600, and condensate pipe 600 is connected to Drip tray 500, for the liquid in drip tray 500 to be discharged outside rack 400.
For above-mentioned loop dehumidification comprising heated dry air circuit and refrigerating circuit, heated dry air circuit be used for Hothouse provides heated dry air, and refrigerating circuit is damp and hot for that will be formed by after heated dry air dehumidifies to material to be dehumidified Moisture in air is liquefied discharge.
Specifically, on the heated dry air circuit include regenerator 700, main air blower, evaporator 800 and condenser 900, The damp-heat air come out from hothouse pass sequentially through the cooling side of regenerator 700, the heating side of regenerator 700, condenser 900 and Main air blower.And refrigerating circuit includes compressor 300, condenser 900 and evaporator 800, evaporator 800 is arranged in regenerator 700 Cooling side and heating side between so that moisture is liquefied discharge when damp-heat air passes through evaporator 800.Condenser 900 Setting enables hot-air by being rapidly heated when condenser 900 between heating side and main air blower 800.
Furthermore, compressor 300 exports high temperature and pressure overheated gas, which passes through condenser 900 are condensed into saturation or subcooled liquid, and the saturation or subcooled liquid enter in evaporator 800 and be evaporated into low-temp low-pressure mistake Hot gas, in the process, evaporator 800 absorb a large amount of heat, are cooled down with this to damp-heat air, to be liquefied as Liquid.At the same time, low-temp low-pressure overheated gas is re-introduced into 300 inside of compressor and becomes high temperature and pressure overheated gas, The work steady in a long-term to guarantee refrigerating circuit is recycled with this
It is appreciated that being introduced into the cooling of regenerator 700 for from the damp-heat air that hothouse comes out Side carries out one and cools down again, double cooling is carried out using evaporator 800, so that the moisture in damp-heat air becomes liquid and arranges Out, the air after being then dehumidified passes through the heating side of regenerator 700 again and condenser 900 heat up, then via main wind Machine and go out, at this time come out air become heated dry air again and enter in hothouse.
In the present embodiment, damp-heat air passes through the double cooling of regenerator 700 and evaporator 800, ensure that dehumidifying effect Fruit.
In certain applications, such as when the application dehumidifying heat pump carries out dehumidification treatments to sludge etc., out of hothouse The damp-heat air that portion comes out can be with some dust, if leaving, it circulates in air-cooled dehumidifying heat pump and will cause pollution, Increase so as to cause maintenance cost of the later period to heat pump.
In this regard, above-mentioned heated dry air circuit further includes filter 1000, for filtering the damp-heat air come out from hothouse In dust.Dust enters back into the cooling side in regenerator 700 after being filtered.
In some specific embodiments, filter 1000 includes primary filter and medium effeciency filter, with guarantee pair The abundant filtering of dust.
In some specific embodiments, regenerator 700 is plate-fin recuperator, i.e. fin type heat exchanger.Plate-fin Regenerator is made of partition, fin, strip of paper used for sealing, flow deflector, and fin is placed between adjacent separator and flow deflector forms interlayer, will be pressed from both sides Layer is stacked, is brazed into a single piece composition plate beam, is equipped with necessary end socket support.Fin can be plain fin, sawtooth wing Piece, perforated fin, corrugated fin.
In some specific embodiments, evaporator 800 is finned tube evaporator.Finned tube evaporator is by base tube It is formed with fin, fin is mounted on base tube, and base tube uses bronzing pipe or inner screw thread copper pipe, and fin is the wave of aluminium or copper product Line piece, sun-roof or ripple are sun-roof.
In some specific embodiments, condenser 900 is fin-tube heat exchanger, and fin-tube heat exchanger is by base tube It is formed with fin, fin is mounted on base tube, and base tube uses bronzing pipe or inner screw thread copper pipe, and fin is the wave of aluminium or copper product Line piece, sun-roof or ripple are sun-roof.Bracket in shell heat preservation should be using structural section, sheet metal processing or aluminium alloy extrusions.
In some embodiments, refrigerating circuit further includes being connected in turn between condenser 900 and evaporator 800 to save energy Heat exchanger 1100, the second filter and expansion valve, in this way by saving energy heat exchanger 1100, the second filter and expansion valve Processing so that saturation or subcooled liquid be processed into low pressure gas, liquid mixture, then enter back into evaporator 800 Reason, on the one hand can reduce energy consumption, on the other hand can also improve the refrigeration effect of evaporator 800.
With continued reference to FIG. 4, rack 400 includes pedestal 410 and the latticed frame body 420 being arranged on pedestal 410, pedestal Bottom installing zone is surrounded between 410 and latticed frame body 420, is equipped with aforementioned condensate pipe 600 in the installing zone of bottom.
Further, latticed frame body 420 surrounds the first area 421, the second area 422 and third area 423 from top to bottom, and first Area 421 is integral grid, and filter 1000 hereinbefore is arranged in integral grid, and the second area 422 is equipped at least two nets Lattice, for installing condenser 900 and regenerator 700;Third area 423 be equipped at least two grids, for install compressor 300, Evaporator 800 and province's energy heat exchanger 1100 etc..
Further, interference is formed between the first area 421 and the second area 422 in order to prevent, in the first area 421 and second Partition 1200 is additionally provided between area 422.
As a result, due to the setting in rack 400 first area 421, the second area 422 and third area 423, have in this way in installation each When the heated dry air circuit of a module, refrigerating circuit, modules are installed in corresponding section, it is difficult to reduce installation Degree, improves installation effectiveness, simultaneously because the setting in each section, enables modules reasonably to occupy in rack 400 The space in portion, so that the interior layout of entire air-cooled dehumidifying heat pump is more reasonable, the advantageous body for reducing entire air-cooled dehumidifying heat pump Type, to reduce the occupied area of air-cooled dehumidifying heat pump.
In addition, being also provided with instrument board (not shown) etc. in rack 400 for the ease of observing or adjusting Component, with the operating status of equipment each during monitoring work.Can be set on instrument board dry room temperature, humidity, It exports wind-warm syndrome (temperature of damp-heat air), power supply instruction, the operation of compressor 300, main air blower operation, instruction setting operation, stop Button, blower is manually, the parameters such as automatic button indicating fault and reset show.Control cabinet is provided with outside rack 400, in control cabinet It can be set including the control functions module such as compressor 300, blower heavy-current control device and dehumidifying, refrigeration, heating, ventilation.
By the description above to each embodiment of the utility model it is found that the utility model at least has following technology Effect:
1, it can prevent liquid from overstocking near compressor and leaking out from compression motor spindle;
2, dehumidify the compact-sized of heat pump, small in size.
In the description of this specification, reference term " one embodiment ", " some embodiments ", " example ", " specifically show The description of example " or " some examples " etc. means specific features, structure, material or spy described in conjunction with this embodiment or example Point is contained at least one embodiment or example of the utility model.In the present specification, to the schematic table of above-mentioned term It states and is necessarily directed to identical embodiment or example.Moreover, particular features, structures, materials, or characteristics described can be with It can be combined in any suitable manner in any one or more of the embodiments or examples.In addition, without conflicting with each other, this field Technical staff can by the feature of different embodiments or examples described in this specification and different embodiments or examples into Row combination and combination.
Although the embodiments of the present invention have been shown and described above, it is to be understood that above-described embodiment is Illustratively, it should not be understood as limiting the present invention, those skilled in the art are in the scope of the utility model Inside it can make changes, modifications, alterations, and variations to the above described embodiments.

Claims (10)

1. the mounting structure of the compressor for the heat pump that dehumidifies characterized by comprising
Support base, the support base are mounted on the bottom of the rack of dehumidifying heat pump, and the compressor is mounted on the support base; And
Waterproof sealing cover, the waterproof sealing the cover are located at the top of the support base and are close to the outer wall of the compressor.
2. mounting structure as described in claim 1, which is characterized in that the support base includes a pair of of bar shaped branch disposed in parallel Support body, the compressor are fixedly mounted on the bar shaped supporter by fastener.
3. mounting structure as claimed in claim 2, which is characterized in that the fastener is screw.
4. mounting structure as described in claim 1, which is characterized in that be equipped between the waterproof sealing cover and the rack close Sealing.
5. mounting structure as described in claim 1, which is characterized in that the outer wall of the waterproof sealing cover and the compressor it Between be equipped with sealant.
6. mounting structure as described in claim 1, which is characterized in that the waterproof sealing cover includes the first cover and the second cover Body, first cover connect with second cover and enclose the accommodating chamber for accommodating the support base.
7. a kind of dehumidifying heat pump including rack, hothouse, the loop dehumidification being arranged in the rack and is arranged in the rack The drip tray of bottom, the hothouse for placing material to be dehumidified, the loop dehumidification be used for the material to be dehumidified into Row dehumidifying is to form liquid discharge, and the drip tray is for receiving the liquid, and the loop dehumidification includes compressor, the pressure Contracting machine is arranged in the bottom of the rack and passes through the drip tray, which is characterized in that the periphery of the compressor is provided with anti- Watertight sealing cover flows out the rack for preventing the liquid from entering the lower section of the compressor.
8. dehumidifying heat pump as claimed in claim 7, which is characterized in that be equipped between the waterproof sealing cover and the drip tray Sealant.
9. dehumidifying heat pump as claimed in claim 7, which is characterized in that the dehumidifying heat pump further includes condensate pipe, described cold Condensate pipe is connected to the drip tray, for the liquid in the drip tray to be discharged outside the rack.
10. dehumidifying heat pump as claimed in claim 7, which is characterized in that the loop dehumidification includes heated dry air circuit and system Cold loop, the heated dry air circuit are used to provide heated dry air to the hothouse, and the refrigerating circuit is used for will be described The moisture that heated dry air is formed by damp-heat air after dehumidifying to the material to be dehumidified is liquefied discharge.
CN201821355477.1U 2018-08-21 2018-08-21 The mounting structure and dehumidifying heat pump of compressor for the heat pump that dehumidifies Active CN208635378U (en)

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CN201821355477.1U CN208635378U (en) 2018-08-21 2018-08-21 The mounting structure and dehumidifying heat pump of compressor for the heat pump that dehumidifies

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