Condensing module and rotary dehumidifier

By designing a condenser module with a large air inlet in the rotary dehumidifier, the problems of limited flow rate and easy damage to the heater in traditional condenser components are solved, achieving efficient dehumidification and equipment stability.

CN223564455UActive Publication Date: 2025-11-18佛山市一格科技有限公司
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Patent Information

Application Number
CN202423046963.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-10
Publication Date
2025-11-18
Estimated Expiration
2034-12-10

AI Technical Summary

Technical Problem

Traditional rotary dehumidifiers have a narrow and obstructed air inlet design for the condenser assembly, which limits airflow, reduces heat exchange efficiency, and makes the heater prone to damage due to high temperature buildup, affecting dehumidification performance and equipment stability.

Method used

A condensation module is designed to increase airflow by setting a large-area first air inlet on the support plate, and to improve condensation and dehumidification efficiency and prevent heater overheating by effectively contacting the condenser tube assembly with humid air.

Benefits of technology

It improves the efficiency of condensation dehumidification, avoids heater burnout, and ensures the stable operation and humidity control capability of the rotary dehumidifier.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a condensing module and a rotary dehumidifier, the condensing module comprises a condensing assembly and a condensing seat, the condensing assembly is arranged on the condensing seat and is communicated with an inner cavity in the condensing seat, the condensing module further comprises a support plate, the condensing assembly is arranged on the right side of the support plate and is detachably connected with the support plate, and the condensing assembly is arranged on the right side of the support plate. A first air inlet is formed in the lower portion of the support plate, the support plate comprises a right side face, a condensation seat is arranged on the right side face, an inner cavity of the condensation seat comprises an air inlet cavity, and the first air inlet is communicated with the air inlet cavity of the condensation seat. According to the condensing module provided by the utility model, the condensing and dehumidifying efficiency can be improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of dehumidification device, specifically discloses a condensing module and a rotary dehumidifier. BACKGROUND

[0002] In modern industrial production, warehousing logistics, cultural relic and artwork preservation, and many other fields with strict requirements on environmental humidity, rotary dehumidifiers have become indispensable equipment. They mainly dehumidify air through a moisture-absorbing rotor to maintain the humidity in a specific space within the ideal range, thereby ensuring product quality, the integrity of the preserved articles, and the accuracy of the experimental or production process.

[0003] Traditional rotary dehumidifiers have limitations in the design of the condensing assembly. The air inlet of the condensing assembly is usually designed to be relatively narrow, and the air inlet path is often obstructed by various surrounding structural components. This small air inlet and complex air inlet obstruction condition severely limits the air flow that can enter the condensing assembly per unit time. During the dehumidification process, the heat exchange efficiency between the humid air and the condensing tube group mainly depends on the air flow and the degree of contact. Due to the limited air flow in the traditional design, the humid air cannot fully exchange heat on the surface of the condensing tube group, and a large amount of water vapor cannot be effectively condensed into liquid water and discharged in time, resulting in a significant reduction in the overall condensing and dehumidification effect. In some production environments with extremely strict humidity requirements, such as high-end electronic chip packaging workshops, even slight humidity fluctuations can cause short circuits, unstable performance, and other serious quality problems in the chips, and the traditional condensing assembly cannot meet the requirements of rapid and efficient dehumidification to maintain a stable low-humidity environment.

[0004] In addition, the heater of the traditional rotary dehumidifier faces the risk of damage during operation. In the dehumidification cycle, the heater is used to regenerate the adsorption rotor to restore its water vapor adsorption capacity. However, due to the low dehumidification efficiency of the traditional condensing assembly, during the regeneration process, the heat that is not removed in time will gradually accumulate in the system, causing the overall temperature of the system to rise. The electrical elements and heating bodies inside the heater are extremely prone to overheating, aging, short circuit, and burning out due to the high temperature environment. Once the heater is damaged, not only does it require a lot of manpower, material resources, and time for repair and replacement, but it also disrupts the operation of the entire rotary dehumidifier, causing serious delays and economic losses to production. For example, on a continuous production line in the pharmaceutical industry, the failure of the rotary dehumidifier may result in the entire batch of drugs being unqualified, causing significant waste and increased costs.

[0005] In summary, the deficiencies in the design of the air inlet of the condensing assembly of the conventional rotary dehumidifier seriously restrict the condensing and dehumidifying effect, and indirectly cause the risk of damage to the heater, greatly affecting the efficient and stable operation of the rotary dehumidifier in various industries, and an innovative design scheme is urgently needed to improve this situation to improve the performance and reliability of the rotary dehumidifier and meet the strict requirements of modern industrial production on humidity control. Content of the utility model

[0006] In view of the deficiencies of the prior art, the condensing module can improve the efficiency of condensing and dehumidifying.

[0007] The technical scheme of the utility model is as follows:

[0008] A condensing module, the condensing module comprises a condensing assembly and a condensing seat, the condensing assembly is arranged on the condensing seat and is communicated with the inner cavity in the condensing seat, the condensing module further comprises a support plate, the condensing assembly is arranged on the right side of the support plate and is detachably connected with the support plate, the lower part of the support plate is provided with a first air inlet, the support plate comprises a right side surface, the condensing seat is arranged on the right side surface, the inner cavity of the condensing seat comprises an air inlet cavity, and the first air inlet is communicated with the air inlet cavity of the condensing seat.

[0009] Preferably, the condensing seat comprises a base and a base cover covering the base, the base is arranged on the right side surface, after the base cover is covered with the base, the inner part of the condensing seat forms the inner cavity, a partition plate is arranged in the first inner cavity, and the inner cavity is divided into the air inlet cavity and an air outlet cavity by the partition plate.

[0010] Preferably, the condensing assembly comprises a first mounting part, a second mounting part and a condensing pipe group inserted on the first mounting part and the second mounting part at two ends respectively, the second mounting part is arranged on the condensing seat, and the condensing pipe group is communicated with the inner cavity.

[0011] Preferably, the right side surface is further provided with a first mounting frame, the first mounting frame comprises an upper clamping plate, a lower clamping plate and two enclosing plates vertically arranged on the upper clamping plate and the lower clamping plate and arranged between the upper clamping plate and the lower clamping plate, the shape of the first mounting part is adapted to the shape of the upper clamping plate, the first mounting part is detachably connected with the upper clamping plate, the shape of the second mounting part is adapted to the shape of the lower clamping plate, and the second mounting part is detachably connected with the lower clamping plate.

[0012] The utility model further provides a rotary dehumidifier comprising the condensing module.

[0013] Preferably, the rotary dehumidifier further comprises a shell, a rotary wheel assembly arranged in the inner cavity of the shell, and a heating assembly, the rotary wheel assembly comprises a moisture absorbing rotary wheel, the support plate further comprises a left side surface arranged opposite to the right side surface, the left side surface is provided with a mounting frame, the mounting frame is arc-shaped, the rotary wheel assembly is rotatably arranged in the mounting frame, the left side surface is further provided with a mounting shaft, the mounting shaft is located at the center position of the mounting frame, the moisture absorbing rotary wheel is inserted on the mounting shaft, and the first air inlet is located below the first mounting frame.

[0014] Preferably, the heating assembly is arranged on the left side of the rotary wheel assembly, the heating assembly comprises a heating piece, a second air outlet is formed in the right side of the heating piece, the second air outlet faces a part of the first side surface of the moisture absorbing rotary wheel, the first air inlet faces a part of the second side surface of the moisture absorbing rotary wheel, and the position of the second air outlet corresponds to the position of the first air inlet.

[0015] Compared with the prior art, the rotary dehumidifier has the following advantages:

[0016] (1) The condensation module provided by the utility model is characterized in that the first air inlet is arranged on the support plate, the first air inlet is communicated with the air inlet cavity of the condensation seat, the opening area of the air inlet is increased, according to the fluid mechanics principle, under the same internal and external pressure difference, the greater the opening area, the greater the air volume entering in unit time. More humid hot air will fully contact the condenser tube group after entering the condensation assembly. The condenser tube group is usually internally provided with low-temperature refrigerant flow, so that the outer surface temperature of the condenser tube group is low. According to the heat exchange principle, when the hot humid air contacts the low-temperature condenser tube group surface, the water vapor in the air will change phase from gas to liquid due to the cold. As the air entering amount is increased, the opportunity of the water vapor contacting the condenser tube group is also greatly increased, thereby improving the condensation dehumidification efficiency.

[0017] (2) The rotary dehumidifier provided by the utility model is characterized in that the condensation module is arranged, the first air inlet is increased, the condensation dehumidification efficiency of the rotary dehumidifier is improved, the humid hot air of the first air inlet can directly enter the condensation assembly, thereby the air flow is smooth, when the air inlet of the condensation assembly is increased and the air flow is smooth, in the dehumidification process, a large amount of heat is taken away by the air. Thus the temperature of the whole system is reduced, including the temperature around the heater. In addition, the good air flow can also help to maintain the temperature balance of the whole system. Due to the design of the air inlet, the air can uniformly flow in the system, and the local overheating condition does not occur. In the rotary dehumidifier, the heater and the condensation assembly are usually arranged in a relatively closed space, and the temperature of them influences each other. Through the high-efficiency heat dissipation of the condensation assembly, the problem that the temperature of the heater is too high due to local heat accumulation is avoided, thereby the burning of the heater in the rotary dehumidifier is prevented. BRIEF DESCRIPTION OF DRAWINGS

[0018] In order to more clearly illustrate the technical solutions of the embodiments of the present application or the prior art, the drawings needed to be used in the embodiments or prior art description will be briefly introduced as follows. Obviously, the drawings in the following description only constitute some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor on the basis of these drawings.

[0019] Figure 1 It is an exploded view of the condensing module;

[0020] Figure 2 It is a structural schematic view of the support plate;

[0021] Figure 3 It is another angle structural schematic view of the support plate;

[0022] Figure 4 It is a perspective view of the shell of the rotary dehumidifier;

[0023] Figure 5 It is a schematic view of the internal structure of the rotary dehumidifier without the shell;

[0024] Figure 6 It is an exploded view of the internal structure of the rotary dehumidifier without the shell from a first angle;

[0025] Figure 7 It is an exploded view of the internal structure of the rotary dehumidifier without the shell from a second angle;

[0026] Figure 8 It is an exploded view of the internal structure of the rotary dehumidifier without the shell from a third angle;

[0027] Figure 9 It is a combined view of the air guide member and the control assembly;

[0028] Figure 10 It is an exploded structural schematic view of the air guide member and the control assembly.

[0029] The drawings are identified as follows:

[0030] 11, first mounting portion; 12, second mounting portion; 13, support plate; 131, right side surface; 132, left side surface; 133, mounting shaft; 134, second mounting frame; 14, first air inlet; 15, first mounting frame; 151, upper clamping plate; 152, lower clamping plate; 153, coaming; 154, first cavity; 16, condensing seat; 161, base; 162, base cover; 163, partition plate; 164, water guide channel; 17, groove; 171, bottom plate; 1711, opening; 172, side wall; 173, outlet; 18, clamping groove;

[0031] 2, shell;

[0032] 3. A rotating wheel assembly; 31. An outer edge; 32. A gear outer frame;

[0033] 4. A heating assembly; 41. A heating element; 411. A second air outlet; 42. A second air guide element; 421. A second air inlet;

[0034] 61. A control knob; 62. A gear;

[0035] 7. A circulating fan assembly; 71. A circulating fan housing; 711. A fourth air outlet;

[0036] 8. A first air guide element; 81. An air duct; 811. A third air inlet; 812. A third air outlet; 82. A bottom plate; 821. A clamping plate; 83. A side wall plate; 831. A third edge; 832. A baffle plate; 833. A containing cavity; 84. A connecting rod; 841. A connecting element;

[0037] 9. A fan assembly; 91. A third mounting frame. DETAILED DESCRIPTION

[0038] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0039] In the description of the present application, it should be noted that the orientations or positional relationships indicated by the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. are based on the orientations or positional relationships shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application. In addition, the terms "first", "second", "third", "fourth", etc. are only for the purpose of description, and cannot be understood as indicating or implying relative importance.

[0040] In the description of the present application, it should be noted that unless otherwise explicitly specified and limited, the terms "mounting", "connecting", "connection" should be understood broadly, for example, it can be fixed connection, or detachable connection, or integrally connected; it can be mechanical connection, or electrical connection; it can be directly connected, or indirectly connected through an intermediate medium, or the communication between two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0041] See Figures 1 to 10 This embodiment provides a condensing module for a rotary dehumidifier. The condensing module includes a condensing component and a condensing base 16. The condensing component is disposed on the condensing base 16 and communicates with the inner cavity of the condensing base 16. The condensing module also includes a support plate 13, and the condensing component is disposed on the right side of the support plate 13 (based on the attached...). Figure 1 (From the perspective of the bracket plate 13, the same below), and is detachably connected to the bracket plate 13. The lower part of the bracket plate 13 is provided with a first air inlet 14. The bracket plate 13 includes a right side surface 131. A condenser seat 16 is provided on the right side surface 131. The inner cavity of the condenser seat 16 includes an air inlet cavity. The first air inlet 14 is connected to the air inlet cavity of the condenser seat 16.

[0042] In this embodiment, by directly mounting the first air inlet 14 on the support plate 13, the opening area of ​​the first air inlet 14 can be increased. According to the principles of fluid mechanics, under the same internal and external pressure difference, the larger the opening area, the larger the volume of air entering per unit time. More humid and hot air will come into full contact with the condenser tube assembly after entering the condenser assembly. The condenser tube assembly typically has a low-temperature refrigerant flowing inside, resulting in a low outer surface temperature. According to the principle of heat exchange, when hot, humid air comes into contact with the low-temperature surface of the condenser tube assembly, the water vapor in the air will undergo a phase change due to the cooling, changing from a gaseous state to a liquid state. Because the amount of air entering increases, the opportunity for water vapor to come into contact with the condenser tube assembly also increases significantly, thereby improving the efficiency of condensation and dehumidification.

[0043] Specifically, the condenser seat 16 includes a base 161 and a base cover 162 covering the base 161. The base 161 is disposed on the right side 131. After the base cover 162 is closed with the base 161, an inner cavity is formed inside the condenser seat 16. A partition plate 163 is provided in the inner cavity, which divides the inner cavity into an air inlet cavity and an air outlet cavity. A water guide channel 164 is also provided below the condenser seat 16. The water guide channel 164 is connected to the air outlet cavity and is used to drain the condensed water.

[0044] Specifically, the condenser assembly includes a first mounting part 11, a second mounting part 12, and a condenser tube assembly with both ends inserted into the first mounting part 11 and the second mounting part 12 respectively. The second mounting part 12 is disposed on the condenser seat 16, and the condenser tube assembly is connected to the inner cavity.

[0045] Specifically, the right side surface 131 is further provided with a first mounting frame 15, which comprises an upper clamping plate 151, a lower clamping plate 152, and two enclosing plates 153 vertically arranged on and between the upper clamping plate 151 and the lower clamping plate 152. The first mounting part 11 is shaped to be adapted to the upper clamping plate 151, so that the first mounting part 11 and the upper clamping plate 151 can be connected by clamping with a fixing member. The second mounting part 12 is shaped to be adapted to the lower clamping plate 152, so that the second mounting part 12 and the lower clamping plate 152 can be connected by clamping with a fixing member. Thus, the first mounting part 11, the second mounting part 12, and the two enclosing plates 153 form a first cavity 154, in which the condensing pipe group is arranged.

[0046] In the embodiment, the first mounting frame 15 and the condensing seat 16 are ingeniously arranged on the right side surface 131, so that the condensing module is compactly mounted and effectively operated. The integrated design closely combines the condensing and dehumidifying function with the overall structure of the rotary dehumidifier, reduces the additional structure, and reduces the space occupation, thereby improving the overall space utilization of the equipment. Meanwhile, the cooperative work of the condensing assembly, the air inlet cavity, and the air outlet cavity enables the air to be further dehumidified before entering the circulating fan assembly 7, thereby enhancing the dehumidifying effect of the entire equipment and meeting the environmental requirements with more stringent humidity control requirements.

[0047] The embodiment further provides a rotary dehumidifier comprising the condensing module.

[0048] Specifically, the rotary dehumidifier further comprises a housing 2, a rotary assembly 3 arranged in the inner cavity of the housing 2, and a heating assembly 4. The rotary assembly 3 comprises a dehumidifying rotor. The support plate 13 further comprises a left side surface 132 arranged opposite to the right side surface 131. The left side surface 132 is provided with a second mounting frame 134. The second mounting frame 134 is arc-shaped. The rotary assembly 3 is rotatably arranged in the second mounting frame 134. The left side surface 132 is further provided with a mounting shaft 133 located at the center of the second mounting frame 134. The dehumidifying rotor is inserted on the mounting shaft 133. The first air inlet 14 is located below the inside of the second mounting frame 134.

[0049] In the embodiment, the arc-shaped second mounting frame 134 cooperates with the mounting shaft 133 located at the center to enable the dehumidifying rotor to stably and uniformly rotate. The structural design ensures that the contact time and contact area of each part of the air with the dehumidifying rotor are relatively consistent when the air flows through the dehumidifying rotor, thereby achieving uniform and efficient dehumidifying effect. In the regeneration stage, the uniform rotation also ensures that each region of the dehumidifying rotor can be fully treated by the regeneration air, so that the regeneration process of the dehumidifying material is more thorough and efficient, which helps to maintain the long-term stable dehumidifying performance of the dehumidifying rotor.

[0050] And by ingeniously installing the moisture absorption runner inside the second mounting frame 134, the compact layout of the runner assembly 3 on the support plate 13 is achieved. This layout reduces the space occupation of the runner dehumidifier in the horizontal direction, helping to design the entire device small in size. Compared with some traditional installation methods, this structure can more reasonably plan the internal space of the device, so that other components (heating assembly, condensing module, etc.) can be more closely arranged around the moisture absorption runner, improving the utilization rate of the internal space of the device, and providing strong support for the miniaturization and light weight of the device.

[0051] Specifically, the heating assembly 4 is arranged on the left side of the runner assembly 3, and the heating assembly 4 comprises a heating element 41 and a second air guide element 42 in communication with the inside of the heating element 41. The second air outlet 411 of the heating element 41 faces a part of the first side surface of the moisture absorption runner, and the first air inlet 14 faces a part of the second side surface of the moisture absorption runner. The position of the second air outlet 411 corresponds to that of the first air inlet 14, so that the air flow can be output from the second air outlet 411, enter the air inlet cavity from the first air inlet 14 after passing through the moisture absorption runner. The heated air flow can restore the position of the first air inlet 14 and the second air outlet 411 opposite the moisture absorption runner, and the part of the moisture absorption runner away from the position can absorb moisture in the external environment after being cooled.

[0052] In this embodiment, the first air inlet 14 is arranged on the support plate 13, and the first air inlet 14 is in communication with the air inlet cavity of the condensing seat 16. The humid hot air of the first air inlet 14 can directly enter the air inlet cavity of the condensing seat 16, so as to ensure smooth air flow. When the air inlet of the condensing assembly is increased and the air flows smoothly, a large amount of heat is taken away by the air during the dehumidification process. Thus, the temperature of the entire system, including the temperature around the heater, is reduced. In addition, good air flow also helps to maintain the temperature balance of the entire system. Due to the design of the air inlet, the air can flow uniformly in the system and there is no local overheating. In the runner dehumidifier, the heating element and the condensing module are usually in a relatively closed space, and their temperatures affect each other. Through the efficient heat dissipation of the condensing assembly, the problem of overheating of the heater caused by local heat accumulation is avoided, thereby preventing the heater from burning out.

[0053] Specifically, the lower part of the left side surface 132 of the support plate 13 is recessed to form a recess 17, and the circulating fan assembly 7 comprises a circulating fan housing 71 and a circulating fan (not shown in the figure) sleeved in the circulating fan housing 71. The shape of the recess 17 is adapted to the shape of the circulating fan housing, and the circulating fan assembly 7 is arranged in the recess 17, so as to realize the organic combination of the circulating fan assembly and the support structure. The circulating fan assembly no longer needs a large independent installation space, and the volume of the housing can be reduced.

[0054] Specifically, the groove 17 comprises a bottom panel 171 and a sidewall 172, the bottom panel 171 and the sidewall 172 enclosing a second cavity, the circulating fan assembly 7 being arranged in the second cavity, a lower end of the second cavity forming an outlet 173, the bottom panel 171 being provided with an opening 1711, the circulating fan housing 71 being provided with a fourth air inlet (not shown in the figure) on a left side thereof, the circulating fan housing 71 being provided with a fourth air outlet 711 at a lower end thereof, the fourth air outlet 711 being adjacent to the outlet 173, so that circulating air of the circulating fan can go out from the outlet 173, the fourth air outlet 711 and the outlet 173 both being directed downward of the support plate 13, the fourth air inlet corresponding to the opening 1711 in position, so that external circulating air can enter the circulating fan from the opening 1711.

[0055] In addition, the support plate 13 is connected with a first air guide 8, the first air guide 8 comprising an air duct 81 and a bottom plate 82, the bottom plate 82 comprising a clamping plate 821, the air duct 81 comprising a third air inlet 811 and a third air outlet 812 in communication, the third air inlet 811 being arranged on the clamping plate 821, the left side 132 being provided with a clamping groove 18, the clamping groove 18 being arranged adjacent to the outlet 173 of the groove 17, the clamping plate 821 being clamped in the clamping groove 18, so that the fourth air outlet 711 and the third air inlet 811 are in communication, and then the circulating air of the circulating fan can go out from the fourth air outlet 711, enter the air duct 81, and then go out from the third air outlet 812.

[0056] Specifically, a lower end of the second air guide 42 is provided with a second air inlet 421, the second air inlet 421 abutting against the third air outlet 812, the second air inlet 421 being in communication with the third air outlet 812, so that air of the circulating fan can enter the heating assembly 4.

[0057] Specifically, the first air guide 8 further comprises a sidewall plate 83 connected with a first edge of the bottom plate 82, a connecting rod 84 connected with a second edge of the bottom plate 82, a notch 1721 being arranged on the sidewall 172 close to the first air inlet 14, an end portion 841 of the connecting rod 84 being fixed in the notch 1721, a baffle 832 being arranged on a third edge 831 of the sidewall plate 83, the bottom plate 82, the sidewall plate 83 and the baffle 832 forming a channel, so that the outer edge 31 of the rotating wheel assembly 3 can rotate in the channel.

[0058] Specifically, the third edge 831 is further provided with a receiving cavity 833, and the rotating wheel dehumidifier further comprises a control assembly, the control assembly comprising a control knob 61 and a gear 62 connected with the control knob 61, the gear 62 being arranged in the receiving cavity 833, the gear 62 being engaged with the gear outer frame 32 of the rotating wheel assembly 3, so that the rotating speed of the rotating wheel assembly 3 can be controlled by operating the control knob 61.

[0059] Specifically, the rotary dehumidifier further comprises a fan assembly 9, the fan assembly 9 comprising a fan (not shown in the figure), and the fan assembly 9 further comprising a third mounting frame 91, the third mounting frame 91 being fixedly connected with the second mounting frame 134 through a fixing member (not shown in the figure).

[0060] The above merely describes preferred embodiments of the present application and is not intended to limit the present application, and any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A condensing module comprising a condensing assembly and a condensing seat (16), the condensing assembly being arranged on the condensing seat (16) and communicating with an internal cavity in the condensing seat (16), characterized in that, The condensing module further comprises a support plate (13), the condensing assembly is arranged on the right side of the support plate (13) and detachably connected with the support plate (13), the lower part of the support plate (13) is provided with a first air inlet (14), the support plate (13) comprises a right side surface (131), a condensing seat (16) is arranged on the right side surface (131), the inner cavity of the condensing seat (16) comprises an air inlet cavity, and the first air inlet (14) is in communication with the air inlet cavity of the condensing seat (16).

2. The condensation mold set according to claim 1, wherein The condensing seat (16) comprises a base (161) and a base cover (162) covering the base (161), the base (161) is arranged on the right side surface (131), after the base cover (162) covers the base (161), the inner part of the condensing seat (16) forms an inner cavity, and a partition plate (163) is arranged in the inner cavity, the partition plate (163) divides the inner cavity into an air inlet cavity and an air outlet cavity.

3. The condensation mold set according to claim 1, wherein The condensing assembly comprises a first mounting part (11), a second mounting part (12) and a condensing pipe group which is respectively inserted into the first mounting part (11) and the second mounting part (12), the second mounting part (12) is arranged on the condensing seat (16), and the condensing pipe group is in communication with the inner cavity.

4. The condensation mold set according to claim 3, wherein The right side surface (131) is further provided with a first mounting frame (15), the first mounting frame (15) comprises an upper clamping plate (151), a lower clamping plate (152) and two surrounding plates (153) which are vertically arranged on the upper clamping plate (151) and the lower clamping plate (152) and are arranged between the upper clamping plate (151) and the lower clamping plate (152), the shape of the first mounting part (11) is adapted to the shape of the upper clamping plate (151), the first mounting part (11) is detachably connected with the upper clamping plate (151), the shape of the second mounting part (12) is adapted to the shape of the lower clamping plate (152), and the second mounting part (12) is detachably connected with the lower clamping plate (152).

5. A rotary dehumidifier characterized by The condensing module comprises the condensing assembly of any one of claims 1-4.

6. The rotary dehumidifier according to claim 5, wherein Further comprising a shell (2), a rotating wheel assembly (3) arranged in the inner cavity of the shell (2) and a heating assembly (4), the rotating wheel assembly (3) comprises a moisture absorbing rotating wheel, the support plate (13) further comprises a left side surface (132) which is arranged opposite to the right side surface (131), a second mounting frame (134) is arranged on the upper surface of the left side surface (132), the second mounting frame (134) is arc-shaped, the rotating wheel assembly (3) is rotatably arranged in the second mounting frame (134), a mounting shaft (133) is further arranged on the left side surface (132), the mounting shaft (133) is located at the center position of the second mounting frame (134), the moisture absorbing rotating wheel is inserted into the mounting shaft (133), and the first air inlet (14) is located below the inside of the first mounting frame (15).

7. The rotary dehumidifier according to claim 6, wherein The heating assembly (4) is arranged on the left side of the support plate (13), the heating assembly (4) comprises a heating piece (41), the right side of the heating piece (41) is provided with a second air outlet (411), the first air inlet (14) faces a part of the second side surface of the moisture absorption runner, the second air outlet (411) faces a part of the first side surface of the moisture absorption runner, and the position of the second air outlet (411) corresponds to that of the first air inlet (14).