Wardrobe dehumidification device

By designing an inclined water receiving trough and a diversion trough in the wardrobe dehumidifier, the condensate water is quickly diverted to the water storage box, solving the problem of condensate water overflow in miniaturized designs and achieving rapid drainage and improved dehumidification effects.

CN223505077UActive Publication Date: 2025-11-04SHENZHEN SHENCHUAN INTELLIGENT CO LTD
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Patent Information

Application Number
CN202422693588.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-05
Publication Date
2025-11-04
Estimated Expiration
2034-11-05

AI Technical Summary

Technical Problem

Existing wardrobe dehumidifiers, due to their miniaturized design, are prone to condensation overflow, which can affect electrical components. Furthermore, existing devices are relatively large and cannot effectively control the humidity inside the wardrobe.

Method used

Design a wardrobe dehumidification device, including a condensation component, a shell, and a water storage box. The condensation component is set in the first chamber of the shell. The water receiving tank is connected to the connecting hole. The bottom of the water receiving tank is inclined. The guide channel is connected to the water storage box. The bottom of the guide channel is also inclined. The water receiving tank and the guide channel quickly guide the condensate to the water storage box to avoid overflow.

Benefits of technology

The design of the wardrobe dehumidifier is miniaturized, allowing for rapid drainage of condensate to prevent overflow and improving dehumidification efficiency and the safety of electrical components.

✦ Generated by Eureka AI based on patent content.

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Abstract

The wardrobe dehumidification device comprises a condensation assembly, a shell and a water storage box, the shell is provided with a first cavity, a second cavity and a communicating hole communicating the first cavity with the second cavity, the condensation assembly is arranged in the first cavity, a water receiving groove is formed in the position, corresponding to the condensation assembly, of the bottom of the first cavity, the water receiving groove is communicated with the communicating hole, and the water storage box is arranged in the shell. The water storage box is arranged at the bottom of the shell, a flow guide groove is formed in the bottom of the second cavity, one end of the flow guide groove communicates with the communicating hole, and a flow guide hole communicating with the water storage box is formed in the bottom of the other end of the flow guide groove. And the groove bottom of the flow guide groove is inclined from one end to the other end. The wardrobe dehumidification device provided by the utility model is beneficial to the miniaturization design of the wardrobe dehumidification device, and can avoid condensate water overflow caused by the fact that condensate water of the wardrobe dehumidification device with the miniaturization design cannot be discharged in time.
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Description

Technical Field

[0001] This utility model relates to the field of dehumidification device technology, and in particular to a wardrobe dehumidification device. Background Technology

[0002] Wardrobes are essential furniture in people's homes, used to store clothes, sheets, quilts, and other items. Because wardrobes are often sealed and lack air circulation, clothes stored inside are prone to dampness and mold. Installing a dehumidifier in the wardrobe can control the humidity inside and prevent clothes from getting damp. Existing dehumidifiers are designed for indoor environments and are relatively large. They include a drip tray to collect condensation dripping from the condenser unit. To reduce the space occupied by the dehumidifier in the wardrobe, a miniaturization design is needed. This results in a smaller water-holding capacity in the drip tray, making it prone to overflow and potentially damaging the electrical components of the dehumidifier. Utility Model Content

[0003] The technical problem to be solved by this utility model is to provide a wardrobe dehumidification device to improve the drainage speed of the miniaturized wardrobe dehumidification device and avoid condensate overflow.

[0004] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is as follows: a wardrobe dehumidification device is provided, including a condensation component, a shell, and a water storage box. The shell is provided with a first chamber, a second chamber, and a connecting hole connecting the first chamber and the second chamber. The condensation component is disposed in the first chamber. A water receiving groove is provided at the bottom of the first chamber corresponding to the condensation component. The water receiving groove is connected to the connecting hole, and the bottom of the water receiving groove is inclined from the side away from the connecting hole to the side closer to the connecting hole. The water storage box is disposed at the bottom of the shell. A guide groove is provided at the bottom of the second chamber. One end of the guide groove is connected to the connecting hole, and the bottom of the other end of the guide groove is provided with a guide hole connected to the water storage box. The bottom of the guide groove is inclined from one end to the other end.

[0005] Furthermore, it also includes a water receiving component, which has a baffle around its edge. The baffle and the upper surface of the water receiving component enclose the water receiving groove. The baffle has a notch corresponding to the connecting hole, and the water receiving groove communicates with the connecting hole through the notch.

[0006] Furthermore, the first chamber is provided with a surrounding edge near the connecting hole, and the surrounding edge, the bottom of the first chamber and the wall of the connecting hole form a connecting groove, the connecting groove is connected to the guide groove, and the water receiving component is provided on the surrounding edge.

[0007] Furthermore, the bottom of the water receiving component is provided with a groove, and the surrounding edge is provided in the groove.

[0008] Furthermore, the housing includes a top cover, a bottom shell, and a partition. The partition is provided with a first receiving groove and a second receiving groove. The top cover, the first receiving groove, and the second receiving groove respectively enclose the first chamber and the second chamber. The partition is disposed in the first chamber to divide the first chamber into an air inlet channel and an air outlet channel. The partition is provided with a first through hole. The bottom shell is provided with an air inlet hole and an air outlet hole. The air inlet hole communicates with the air inlet channel, and the air outlet hole communicates with the air outlet channel.

[0009] Furthermore, the water receiving trough is located at the bottom of the air intake channel.

[0010] Furthermore, the condensation assembly includes a cooling plate and a blower. The blower is disposed on the partition plate corresponding to the first through hole. The partition plate is provided with a second through hole connecting the air inlet channel and the air outlet channel. The cooling plate is disposed in the second through hole, with the heating end of the cooling plate disposed on the side closer to the air outlet channel and the cooling end of the cooling plate disposed on the side closer to the air inlet channel. The water receiving tank is disposed corresponding to the position of the cooling plate.

[0011] Furthermore, the condensation assembly also includes a cold end substrate and a hot end substrate. The cold end substrate is attached to the cooling end of the cooling chip, and the hot end substrate is attached to the heating end of the cooling chip. The water receiving tank is provided corresponding to the cold end substrate.

[0012] Furthermore, the top of the water storage box is provided with a water inlet groove corresponding to the guide hole, the bottom of the water inlet groove is provided with a water inlet hole communicating with the inner cavity of the water storage box, and the groove wall of the water inlet groove is inclined relative to the horizontal direction.

[0013] Furthermore, the water storage box includes a cover and a box body. The cover is placed on the box body and the cover and the box body are fixed together by bolts. The cover is provided with the water inlet groove.

[0014] The beneficial effects of this utility model are as follows: The wardrobe dehumidification device provided by this utility model can collect the condensate dripping from the condensation component through the water receiving tank. The bottom of the water receiving tank and the guide tank are both designed with an incline so that the water receiving tank and the guide tank can quickly guide the condensate to the water storage box. This is beneficial to the miniaturization design of the wardrobe dehumidification device and can avoid the overflow of condensate due to the inability to drain the condensate in a miniaturized wardrobe dehumidification device in time. Attached Figure Description

[0015] Figure 1This is a schematic diagram of the wardrobe dehumidification device according to one embodiment of the present invention;

[0016] Figure 2 for Figure 1 A cross-sectional view of the wardrobe dehumidification device shown in the width direction;

[0017] Figure 3 for Figure 1 An exploded view of the wardrobe dehumidification device shown in the image;

[0018] Figure 4 for Figure 3 Schematic diagram of the intermediate water connection component;

[0019] Figure 5 for Figure 1 A cross-sectional view of the wardrobe dehumidification device shown in the diagram along its length;

[0020] Figure 6 for Figure 3 The diagram shows the structure of the bottom shell.

[0021] Label Explanation:

[0022] 1. Condensation assembly; 11. Cooling element; 12. Blower; 13. Cold end substrate; 14. Hot end substrate;

[0023] 2. Shell; 21. First chamber; 211. Surrounding edge; 212. Connecting groove; 213. Air inlet channel; 214. Air outlet channel; 22. Second chamber; 221. Guide groove; 222. Guide hole; 23. Connecting hole; 24. Top cover; 25. Bottom shell; 251. First receiving groove; 252. Second receiving groove; 253. Air inlet; 254. Air outlet; 26. Partition; 261. First through hole; 262. Second through hole;

[0024] 3. Water storage box; 31. Water inlet trough; 32. Water inlet hole; 33. Cover; 34. Box body;

[0025] 4. Water receiving fitting; 41. Water receiving trough; 42. Edge retainer; 43. Notch; 44. Groove. Detailed Implementation

[0026] To explain in detail the technical content, objectives, and effects of this utility model, the following description is provided in conjunction with the embodiments and accompanying drawings.

[0027] Please refer to Figures 1 to 6This utility model provides a wardrobe dehumidification device, including a condensation component 1, a housing 2, and a water storage box 3. The housing 2 has a first chamber 21, a second chamber 22, and a connecting hole 23 connecting the first chamber 21 and the second chamber 22. The condensation component 1 is disposed in the first chamber 21. The bottom of the first chamber 21 is provided with a water receiving groove 41 corresponding to the condensation component 1. The water receiving groove 41 is connected to the connecting hole 23, and the bottom of the water receiving groove 41 is inclined from the side away from the connecting hole 23 to the side closer to the connecting hole 23. The water storage box 3 is disposed at the bottom of the housing 2. The bottom of the second chamber 22 is provided with a guide groove 221. One end of the guide groove 221 is connected to the connecting hole 23, and the bottom of the other end of the guide groove 221 is provided with a guide hole 222 that is connected to the water storage box 3. The bottom of the guide groove 221 is inclined from one end to the other end.

[0028] As can be seen from the above description, the beneficial effects of this utility model are as follows: The wardrobe dehumidification device provided by this utility model can collect the condensate dripping from the condensation component 1 through the water receiving tank 41. The bottom of the water receiving tank 41 and the guide channel 221 are both designed with an incline so that the water receiving tank 41 and the guide channel 221 can quickly guide the condensate to the water storage box 3. This is beneficial to the miniaturization design of the wardrobe dehumidification device and can avoid the overflow of condensate due to the inability of the miniaturized wardrobe dehumidification device to drain the condensate in time.

[0029] Furthermore, it also includes a water receiving component 4, which has a baffle 42 around its edge. The baffle 42 and the upper surface of the water receiving component 4 enclose the water receiving groove 41. The baffle 42 has a notch 43 corresponding to the connecting hole 23. The water receiving groove 41 is connected to the connecting hole 23 through the notch 43.

[0030] As can be seen from the above description, the baffle 42 can prevent condensate from overflowing into the water receiving tank 41 and ensure the water receiving part 4 guides the condensate.

[0031] Furthermore, a perimeter 211 is provided near the connecting hole 23 in the first chamber 21. The perimeter 211, the bottom of the first chamber 21, and the wall of the connecting hole 23 form a connecting groove 212. The connecting groove 212 communicates with the guide groove 221. The water receiving component 4 is provided on the perimeter 211.

[0032] As can be seen from the above description, such as Figure 2 As shown, the water receiving component 4 is mounted on the perimeter 211, which ensures that condensate flows into the connecting groove 212 and that the condensate does not overflow from the gap between the water receiving component 4 and the perimeter 211.

[0033] Furthermore, the bottom of the water receiving component 4 is provided with a groove 44, and the surrounding edge 211 is provided in the groove 44.

[0034] As can be seen from the above description, the groove 44 can be used to position the notch 43 and the connecting hole 23 of the water component 4, and the groove 44 can be used to fix the water component 4 and the surrounding edge 211.

[0035] Furthermore, the housing 2 includes a top cover 24, a bottom shell 25, and a partition 26. The partition 26 is provided with a first receiving groove 251 and a second receiving groove 252. The top cover 24, the first receiving groove 251, and the second receiving groove 252 respectively enclose the first chamber 21 and the second chamber 22. The partition 26 is disposed in the first chamber 21 to divide the first chamber 21 into an air inlet channel 213 and an air outlet channel 214. The partition 26 is provided with a first through hole 261. The bottom shell 25 is provided with an air inlet hole 253 and an air outlet hole 254. The air inlet hole 253 communicates with the air inlet channel 213, and the air outlet hole 254 communicates with the air outlet channel 214.

[0036] As can be seen from the above description, the wardrobe dehumidification device provided by this utility model can draw air into the air intake channel 213 through the air intake hole 253, and condense the water vapor in the air into water in the air intake channel 213. The condensed and dried air will be discharged from the first chamber 21 through the first through hole 261, the air outlet channel 214 and the air outlet 254 in sequence.

[0037] Furthermore, the water receiving trough 41 is located at the bottom of the air intake channel 213.

[0038] Furthermore, the condensing assembly 1 includes a cooling element 11 and a blower 12. The blower 12 is disposed on the partition 26 corresponding to the first through hole 261. The partition 26 is provided with a second through hole 262 connecting the air inlet channel 213 and the air outlet channel 214. The cooling element 11 is disposed in the second through hole 262, and the heating end of the cooling element 11 is disposed on the side closer to the air outlet channel 214, and the cooling end of the cooling element 11 is disposed on the side closer to the air inlet channel 213. The water receiving tank 41 is disposed corresponding to the position of the cooling element 11.

[0039] As described above, the condensing component 1 condenses water vapor in the air into water through the cooling end of the cooling plate 11. The condensate drips into the water collection tank under the action of gravity, and the wardrobe dehumidifier has a good ability to collect condensate. In addition, the heating end of the cooling plate 11 can heat the air after condensation and drying, so that the air outlet 254 of the wardrobe dehumidifier can blow out warm air, thereby regulating the temperature of the wardrobe and making the clothes in the wardrobe warm and dry, and more comfortable to wear.

[0040] Furthermore, the condensation assembly 1 also includes a cold end substrate 13 and a hot end substrate 14. The cold end substrate 13 is attached to the cooling end of the cooling chip 11, and the hot end substrate 14 is attached to the heating end of the cooling chip 11. The water receiving tank 41 is provided corresponding to the cold end substrate 13.

[0041] As can be seen from the above description, the cold end substrate 13 and the hot end substrate 14 can improve the cooling and heating performance of the cooling chip 11, thereby improving the dehumidification efficiency of the wardrobe dehumidifier.

[0042] Furthermore, the top of the water storage box 3 is provided with a water inlet groove 31 corresponding to the guide hole 222, and the bottom of the water inlet groove 31 is provided with a water inlet hole 32 communicating with the inner cavity of the water storage box 3. The groove wall of the water inlet groove 31 is inclined relative to the horizontal direction.

[0043] As can be seen from the above description, the structure of the water inlet 31 of the water storage box 3 can ensure that condensate flows into the inner cavity of the water storage box 3 and prevent water from overflowing from the water inlet 32 ​​when the water storage box 3 is disassembled and emptied.

[0044] Furthermore, the water storage box 3 includes a cover 33 and a box body 34. The cover 33 is placed on the box body 34 and the cover 33 and the box body 34 are fixed together by bolts. The cover 33 is provided with the water inlet groove 31.

[0045] As described above, the water storage box 3 is enclosed by the cover 33 and the box body 34 to form a relatively sealed inner cavity, which can prevent water from overflowing from the water storage box 3 and wetting clothes when the water storage box 3 is disassembled and emptied.

[0046] Example 1

[0047] Please refer to Figures 1 to 6The first embodiment of this utility model is as follows: A wardrobe dehumidification device is provided, including a condensation component 1, a shell 2, and a water storage box 3. The shell 2 is provided with a first chamber 21, a second chamber 22, and a connecting hole 23 connecting the first chamber 21 and the second chamber 22. The condensation component 1 is disposed in the first chamber 21. The bottom of the first chamber 21 is provided with a water receiving trough 41 corresponding to the condensation component 1. The water receiving trough 41 is connected to the connecting hole 23, and the bottom of the water receiving trough 41 is inclined from the side away from the connecting hole 23 to the side closer to the connecting hole 23. The water storage box 3 is disposed at the bottom of the shell 2. The bottom of the second chamber 22 is provided with a guide channel 221. One end of the guide channel 221 is connected to the connecting hole 23, and the bottom of the other end of the guide channel 221 is provided with a guide hole 222 that is connected to the water storage box 3. The bottom of the guide channel 221 is inclined from one end to the other end.

[0048] In this embodiment, the housing 2 is provided with a first chamber 21 and a second chamber 22, and the condensing component 1 is provided in the first chamber 21 to avoid improving the condensing effect of the condensing component 1 in the first chamber 21 and to avoid mixing of hot and cold air. This is beneficial to improving the dehumidification effect of the wardrobe dehumidifier. The condensing component 1 can condense water vapor in the air into water. The condensed water on the condensing component 1 can drip into the water receiving tank 41 and flow into the guide channel 221 along the inclined water receiving tank 41. Then, it flows into the water storage box 3 through the guide hole 222 along the inclined guide channel 221. The wardrobe dehumidifier can quickly discharge the condensed water in the cavity to the water storage box 3 through the water receiving tank 41 and the guide channel 221, avoiding the overflow of condensed water due to the reduced volume of the water receiving tank 41 in the miniaturized wardrobe dehumidifier design.

[0049] For details, please refer to Figure 5 In this embodiment, the wardrobe dehumidification device also includes a water receiving component 4. The water receiving component 4 has a baffle 42 around its edge. The baffle 42 and the upper surface of the water receiving component 4 form a water receiving groove 41. The baffle 42 has a notch 43 corresponding to the connecting hole 23. The water receiving groove 41 is connected to the connecting hole 23 through the notch 43.

[0050] In practical applications, the wardrobe dehumidification device can use a variety of condenser components 1 of different sizes and specifications. The water receiving part 4 is set in the shell 2, and the size of the water receiving trough 41 can be flexibly designed to correspond to the size of the condenser component 1, so as to improve the flexibility of the wardrobe dehumidification device and ensure that the water receiving trough 41 can be designed to correspond to the condenser component 1, thereby ensuring the reliability of the water receiving trough 41 in receiving condensate.

[0051] Please refer to further details. Figure 2 and Figure 6In this embodiment, a perimeter 211 is provided near the connecting hole 23 in the first chamber 21. The perimeter 211, the bottom of the first chamber 21, and the wall of the connecting hole 23 form a connecting groove 212, which communicates with the guide groove 221. A water receiving component 4 is disposed on the perimeter 211. A groove 44 is provided at the bottom of the water receiving component 4, and the perimeter 211 is disposed within the groove 44. Figure 2 It is easy to see that in this embodiment, the water receiving component 4 is mounted on the perimeter 211, which can prevent condensate from overflowing into the gap between the water receiving component 4 and the perimeter 211.

[0052] Please combine Figure 3 and Figure 5 For reference, in this embodiment, the housing 2 includes a top cover 24, a bottom shell 25, and a partition 26. The partition 26 is provided with a first receiving groove 251 and a second receiving groove 252. The top cover 24 and the first receiving groove 251 and the second receiving groove 252 respectively enclose a first chamber 21 and a second chamber 22. The partition 26 is disposed in the first chamber 21 to divide the first chamber 21 into an air inlet channel 213 and an air outlet channel 214, so as to avoid the mixing of hot and cold air and improve the dehumidification effect of the wardrobe dehumidification device. The partition 26 is provided with a first through hole 261. The bottom shell 25 is provided with an air inlet hole 253 and an air outlet hole 254. The air inlet hole 253 is connected to the air inlet channel 213, and the air outlet hole 254 is connected to the air outlet channel 214.

[0053] In detail, the water collection tank 41 is located at the bottom of the air intake channel 213. The condensing assembly 1 includes a cooling plate 11 and a blower 12. The blower 12 is located on the partition plate 26 corresponding to the first through hole 261. The partition plate 26 has a second through hole 262 connecting the air intake channel 213 and the air outlet channel 214. The cooling plate 11 is located in the second through hole 262, with the heating end of the cooling plate 11 located on the side closer to the air outlet channel 214 and the cooling end of the cooling plate 11 located on the side closer to the air intake channel 213. The water collection tank 41 is positioned corresponding to the position of the cooling plate 11. The condensing assembly 1 also includes a cold end substrate 13 and a hot end substrate 14. The cold end substrate 13 is attached to the cooling end of the cooling plate 11, and the hot end substrate 14 is attached to the heating end of the cooling plate 11. The water collection tank 41 is positioned corresponding to the cold end substrate 13.

[0054] The wardrobe dehumidifier provided in this embodiment draws air into the air intake channel 213 through the air inlet 253, and condenses the water vapor in the air into water in the air intake channel 213. The condensed and dried air is then discharged from the first chamber 21 through the first through hole 261, the air outlet channel 214, and the air outlet 254. The condensation component 1 condenses the water vapor in the air into water through the cooling end of the cooling plate 11. The condensate drips into the water collection tank under the action of gravity, and the wardrobe dehumidifier has a good ability to collect condensate. In addition, the heating end of the cooling plate 11 can heat the condensed and dried air to a certain extent, so that the air outlet 254 of the wardrobe dehumidifier can blow out warm air, thereby regulating the temperature of the wardrobe and making the clothes in the wardrobe warm and dry, and more comfortable to wear.

[0055] Please refer to Figure 3 The top of the water storage box 3 is provided with a water inlet groove 31 corresponding to the guide hole 222. The bottom of the water inlet groove 31 is provided with a water inlet hole 32 communicating with the inner cavity of the water storage box 3. The groove wall of the water inlet groove 31 is inclined relative to the horizontal direction. The water storage box 3 includes a cover 33 and a box body 34. The cover 33 is placed on the box body 34 and the cover 33 and the box body 34 are fixed by bolts. The cover 33 is provided with a water inlet groove 31.

[0056] In summary, the wardrobe dehumidifier provided by this utility model can collect condensate dripping from the condenser component 1 through the water receiving tank 41. Both the bottom of the water receiving tank 41 and the guide channel 221 are designed with an inclined shape to quickly guide the condensate into the water storage box 3. The design of the water receiving tank 41 and the guide channel 221 in this wardrobe dehumidifier to quickly guide the condensate into the water storage box 3 is beneficial for the miniaturization of the wardrobe dehumidifier and can prevent condensate overflow caused by the inability to drain condensate in a timely manner in a miniaturized wardrobe dehumidifier.

[0057] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent modifications made based on the content of this utility model specification and drawings, or direct or indirect applications in related technical fields, are similarly included within the patent protection scope of this utility model.

Claims

1. A wardrobe dehumidification device, characterized in that, The device includes a condenser assembly, a housing, and a water storage box. The housing has a first chamber, a second chamber, and a connecting hole connecting the first chamber and the second chamber. The condenser assembly is disposed in the first chamber. A water receiving groove is provided at the bottom of the first chamber corresponding to the condenser assembly. The water receiving groove is connected to the connecting hole, and the bottom of the water receiving groove is inclined from the side away from the connecting hole to the side closer to the connecting hole. The water storage box is disposed at the bottom of the housing. A flow guide groove is provided at the bottom of the second chamber. One end of the flow guide groove is connected to the connecting hole, and the bottom of the other end of the flow guide groove has a flow guide hole connected to the water storage box. The bottom of the flow guide groove is inclined from one end to the other end.

2. The wardrobe dehumidification device according to claim 1, characterized in that, It also includes a water receiving component, which has a baffle around its edge. The baffle and the upper surface of the water receiving component form the water receiving groove. The baffle has a notch corresponding to the connecting hole. The water receiving groove communicates with the connecting hole through the notch.

3. The wardrobe dehumidification device according to claim 2, characterized in that, The first chamber has a surrounding edge near the connecting hole, and the surrounding edge, the bottom of the first chamber and the wall of the connecting hole form a connecting groove, which is connected to the flow guide groove. The water receiving component is provided on the surrounding edge.

4. The wardrobe dehumidification device according to claim 3, characterized in that, The bottom of the water receiving component is provided with a groove, and the surrounding edge is provided in the groove.

5. The wardrobe dehumidification device according to claim 1, characterized in that, The housing includes a top cover, a bottom shell, and a partition. The partition has a first receiving groove and a second receiving groove. The top cover, the first receiving groove, and the second receiving groove respectively enclose the first chamber and the second chamber. The partition is disposed in the first chamber to divide the first chamber into an air inlet channel and an air outlet channel. The partition has a first through hole. The bottom shell has an air inlet hole and an air outlet hole. The air inlet hole communicates with the air inlet channel, and the air outlet hole communicates with the air outlet channel.

6. The wardrobe dehumidification device according to claim 5, characterized in that, The water receiving trough is located at the bottom of the air intake channel.

7. The wardrobe dehumidification device according to claim 5, characterized in that, The condensation assembly includes a cooling plate and a blower. The blower is disposed on the partition plate corresponding to the first through hole. The partition plate is provided with a second through hole connecting the air inlet channel and the air outlet channel. The cooling plate is disposed in the second through hole, with the heating end of the cooling plate disposed on the side closer to the air outlet channel and the cooling end of the cooling plate disposed on the side closer to the air inlet channel. The water receiving tank is disposed corresponding to the position of the cooling plate.

8. The wardrobe dehumidification device according to claim 7, characterized in that, The condensation assembly further includes a cold end substrate and a hot end substrate. The cold end substrate is attached to the cooling end of the cooling chip, and the hot end substrate is attached to the heating end of the cooling chip. The water receiving tank is provided corresponding to the cold end substrate.

9. The wardrobe dehumidification device according to claim 1, characterized in that, The top of the water storage box is provided with a water inlet groove corresponding to the flow guide hole, and the bottom of the water inlet groove is provided with a water inlet hole communicating with the inner cavity of the water storage box. The groove wall of the water inlet groove is inclined relative to the horizontal direction.

10. The wardrobe dehumidification device according to claim 9, characterized in that, The water storage box includes a cover and a box body. The cover is placed on the box body and the cover and the box body are fixed together by bolts. The cover is provided with the water inlet groove.