The disclosure relates to an air conditioning apparatus, and more particularly relates to a condensate evaporation device for an air conditioning apparatus.
An air conditioning apparatus is used to adjust the temperature, humidity, and air cleanliness in an area to change the ambient temperature or humidity. When using the air conditioning apparatus, the evaporator produces condensate due to the heat exchange. Moreover, a related art of air conditioning apparatus discharges the condensate to pipelines or outside through a conduit, or the condensate is collected in the water tray and heated by electric heating elements to be vaporized. Additionally, the condensate may be absorbed in sponges and evaporated through the air flow from the fan.
However, in the above methods of treating the condensate, heating circuit is required when the condensate is heated and vaporized by electric heating elements. That may increase power consumption and have a risk of overheating, so that the protection circuit is needed additionally. Furthermore, when more condensate is generated, the condensate absorbed in the sponges may not be evaporated in time, and that may result in the overflow of condensate.
In view of the above drawbacks, the inventor proposes this disclosure based on his expert knowledge and elaborate researches in order to solve the problems of related art.
One object of this disclosure is to provide a condensate evaporation device for the air conditioning apparatus, which the condensate is evaporated by the arrangement of the water distribution module and the multi-folded water absorbing body.
Another object of this disclosure is to provide a condensate evaporation device for the air conditioning apparatus to improve evaporation efficiency and achieve the effects of simplify structure and reduce energy consumption.
This disclosure is a condensate evaporation device. An air conditioning apparatus includes a compressor, an evaporator and a condenser connected to one another. A water tray is arranged on one side of the evaporator to receive a condensate condensed from the evaporator. A water distribution module includes a water separator base and a water separator piece. The water separator piece is combined in the water separator base and has a water channel. The condensate enters the water separator piece and flows through the water channel to evenly flow out the water separator base. The multi-folded water absorbing body is arranged on one side of the water separator base to absorb the condensate flowed out from the water separator base. The water tank is arranged on a bottom side of the multi-folded water absorbing body to receive the condensate flowed out from the multi-folded water absorbing body. At least one fan is arranged on one side of the multi-folded water absorbing body. The condenser is located between the at least one fan and the multi-folded water absorbing body.
In comparison with the related art, the condensate evaporation device for the air conditioning apparatus in this disclosure includes the water distribution module and the multi-folded water absorbing body. The condensate evenly flows into the multi-folded water absorbing body through the water distribution module. Additionally, the multi-folded absorbing body is folded repeatedly with the same area to form multi layers of connected water absorbing sheets that are stacked on one side of the water distribution module. Therefore, the condensate enters the water distribution module from the condensate pipe and evenly flows into the multi-folded water absorbing body through the water distribution module. The condensate absorbed in the multi-folded water absorbing body may be evaporated rapidly under the blowing of the airflow from the fan. Additionally, the condensate, that is not evaporated in time, may flow out from the multi-folded water absorbing body and be collected, and then be vaporized by the heating of the heat pipe. Therefore, the evaporation efficiency is improved, and the effects of simplifying the structure and reducing energy consumption are achieved to increase the practicability of this disclosure.
The features of the disclosure believed to be novel are set forth with particularity in the appended claims. The disclosure itself, however, may be best understood by reference to the following detailed description of the disclosure, which describes a number of exemplary embodiments of the disclosure, taken in conjunction with the accompanying drawings, in which:
The technical contents of this disclosure will become apparent with the detailed description of embodiments accompanied with the illustration of related drawings as follows. It is intended that the embodiments and drawings disclosed herein are to be considered illustrative rather than restrictive.
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It should be noted that the multi-folded absorbing body 40 includes multiple layers of water absorbing sheets 41. The multi-folded absorbing body 40 is folded repeatedly with the same area by the water absorbing sheets 41 and stacked on one side of the water distribution module 30. In this embodiment, a pitch S is kept between adjacent water absorbing sheets 41. In some embodiments, the arrangement of the pitch S may be adjusted according to the actual condition to keep the water absorption and evaporation of the multi-folded water absorbing body 40.
In this embodiment, a base 80 is disposed on the bottom side of the multi-folded absorbing body 40. The base 80 receives and supports the multi-folded absorbing body 40.
Accordingly, the condensate enters the water distribution module 30 from the condensate pipe and evenly flows into the multi-folded water absorbing body 40 through the water separation module 30. Additionally, the condensate absorbed in the multi-folded water absorbing body 40 may be evaporated by the airflow of the fans 60.
It is worth of noticing that when more condensate flows into the multi-folded water absorbing body 40, the condensate, that is not evaporated in time, may flow out from the multi-folded water absorbing body 40 to be collected in the water tank 50. Then, the condensate may be heated and vaporized by the heat pipe 70.
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It should be noted that the number of the first water diversion holes 320 and the number of the second water diversion holes 310, as well as the space W1 of the first water diversion holes 320 and the space W2 of the second water diversion holes 310, may be adjusted according to the actual conditions.
Specifically, a plurality of snapping holes 311 are disposed on the water separator base 31, and a plurality of hooks 321 are disposed on the water separator piece 32. The water separator piece 32 is combined in the water separator base 31 through the hooks 321 being engaged with the snapping holes 311.
In this embodiment, the water separator base 31 includes a plurality of lock posts 312, and the water separator piece 32 includes a plurality of slots 322 correspondingly. Thus, the water separator base 31 and the water separator piece 32 are combined through the lock posts 312 being inserted to the slots 322 and are locked by multiple nuts 323.
As shown in
In this embodiment, the rear baffle 33 is in an L shape and encloses two sides of the water separator base 31 to be firmly combined with the water separator base 31 for providing a desirable effect of water blocking. It is worth of noticing that the rear baffle 33 is disposed to prevent the condensate from spilling out of the water tank 50 under the airflow of the fans 60 and accumulating at the bottom of the device to cause corrosion of parts. Additionally, the arrangement of the rear baffle 33 may position the multi-folded water absorbing body 40, so that the multi-folded water absorbing body 40 is supported and fixed without inclining or falling sideway in the airflow of the fan 60.
Moreover, the water distribution module 30 further includes a separator lid 34. The water separator base 31 is combined with the separator lid 34 in a detachable manner.
Specifically, as shown in
On the other hand, when the multi-folded water absorbing body 40 needs to be cleaned, the water separator base 31 is disassembled from the bottom of the separator lid 34 firstly. After removing the locking of the stud 314, the latch 313 is then pulled away from the side plate 343. Accordingly, the water separator base 31 is combined with the separator lid 34 in a detachable manner.
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Accordingly, the condensate evenly flows out the water separator base 31 by two-stage water separation through the water distribution module 30. Furthermore, the multi-folded water absorbing body 40 is disposed under the water separator base 31 and evenly absorbs the condensate fell into the multi-folding water-absorbing body 40 from the water separator base 31 to improve the water absorption of the multi-folded water absorbing body 40.
It should be noted that the water channel 300 has a maximum distance T between the water separator piece 32 and the water separator base 31. The maximum distance T may be adjusted according to the actual conditions through the position of the water separator 32 and the water separator base 31 (the distance of the water separator 32 relative to the water separator base 31).
While this disclosure has been described by means of specific embodiments, numerous modifications and variations could be made thereto by those skilled in the art without departing from the scope and spirit of this disclosure set forth in the claims.
Number | Date | Country | Kind |
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202222237093.2 | Aug 2022 | CN | national |