Clothes processing equipment control method and clothes processing equipment

By setting up a pre-cooling module in the laundry processing equipment and combining temperature and humidity detection to control its opening and closing, the problem of low drying efficiency is solved, and efficient drying effect and energy consumption optimization is achieved.

CN120443452APending Publication Date: 2025-08-08QINGDAO HAIER SMART TECH R & D CO LTD
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Patent Information

Application Number
CN202410138952.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-01-31
Publication Date
2025-08-08

AI Technical Summary

Technical Problem

The problem of low drying efficiency of existing clothing processing equipment during drying.

Method used

By setting up a pre-cooling module in the laundry processing equipment, the temperature and humidity detection device are used to monitor the temperature and humidity values during the drying process in real time, and the opening and closing of the pre-cooling module is controlled to control the start and shutdown of the pre-cooling module in combination with the temperature and humidity values to improve the dehumidification efficiency of the evaporator.

Benefits of technology

It improves the drying efficiency of clothing processing equipment, reduces energy consumption, and avoids increasing energy consumption of heat pump modules.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of clothes treatment equipment, in particular to a control method of clothes treatment equipment and the clothes treatment equipment, and aims to solve the problem of low drying efficiency during drying treatment of the clothes treatment equipment in the prior art. In order to achieve the purpose, the control method of the clothes processing equipment comprises the steps that when a drying program is executed, the temperature value and the humidity value are obtained; and when the temperature value is larger than or equal to a preset standard drying temperature value, on-off of the pre-cooling module is controlled based on the temperature value and the humidity value. According to the control method, after the temperature value reaches the standard drying temperature value at which moisture is evaporated quickly, the temperature value and the humidity value are combined to control starting and stopping of the pre-cooling module, the dehumidification efficiency of the evaporator is efficiently improved, and then the drying efficiency is improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of clothing processing equipment, and in particular provides a control method for clothing processing equipment and the clothing processing equipment. Background Art

[0002] With the development and progress of science and technology, clothing processing equipment can meet people's more and more clothing processing needs, including drying clothes. Drying reduces the time and space required for drying clothes, especially in humid weather, allowing people to wear dry and comfortable clothes, thereby improving people's quality of life.

[0003] When drying clothes, the temperature needs to be raised first. After reaching the optimal drying temperature, the moisture in the clothes evaporates quickly. If the temperature continues to rise at this time, overheating and shutdown will occur, reducing the drying efficiency. If the temperature does not continue to rise, it will affect the drying speed and reduce the drying efficiency.

[0004] Accordingly, the art requires a new control method for a clothes processing device and a clothes processing device to solve the above problems. Summary of the Invention

[0005] The present invention aims to solve the above technical problem, that is, to solve the problem of low drying efficiency of clothes processing equipment in the prior art when performing drying processing.

[0006] The present invention provides a control method for a clothing processing device, wherein the clothing processing device comprises: a processing drum; a heat pump module, the heat pump module comprises a refrigerant circuit, and the refrigerant circuit is sequentially provided with a compressor, a condenser, a throttling device and an evaporator; an air circulation module, the air circulation module comprises an air circuit, and the air circuit is sequentially provided with the processing drum, the evaporator and the condenser; a pre-cooling module, the pre-cooling module is configured to be able to cool the inlet end side of the evaporator; a temperature detection device, the temperature detection device is used to detect the temperature value of the processing drum and / or the inlet end side of the evaporator; a humidity detection device, the humidity detection device is used to detect the humidity value in the air circuit between the processing drum and / or the processing drum and the evaporator; the control method comprises: when executing a drying program, obtaining the temperature value and the humidity value; when the temperature value is greater than or equal to a preset standard drying temperature value, controlling the opening and closing of the pre-cooling module based on the temperature value and the humidity value.

[0007] When adopting the above technical solution, since the pre-cooling module can cool the inlet side of the evaporator, the temperature of the hot and humid air at the inlet of the evaporator can be reduced, thereby increasing the relative humidity of the hot and humid air and improving the dehumidification efficiency of the evaporator. Under different temperature and humidity values, the pre-cooling module has different effects on the dehumidification efficiency. Therefore, after the temperature value reaches the standard drying temperature value where water evaporates faster, the start and stop of the pre-cooling module can be controlled in combination with the temperature and humidity values, which can effectively improve the dehumidification efficiency of the evaporator and thus improve the drying efficiency.

[0008] In a specific implementation of the control method of the above-mentioned clothing processing equipment, the step of "controlling the opening and closing of the pre-cooling module based on the temperature value and the humidity value" further includes: if the temperature value is less than or equal to the first set temperature value, and the humidity value is greater than or equal to the first set humidity value, then controlling the pre-cooling module to start and operate at a first power value; wherein, the first set temperature value is greater than the standard drying temperature value.

[0009] When adopting the above technical solution, the power value of the pre-cooling module is determined according to the temperature and humidity values, and the pre-cooling module is controlled to start at this power value, which can achieve a better pre-cooling effect, effectively improve the dehumidification efficiency of the evaporator, and thus improve the drying efficiency.

[0010] In a specific implementation of the control method for the above-mentioned clothing processing equipment, after the step of "obtaining the temperature value and the humidity value", the control method further includes: obtaining a dew point temperature value according to the temperature value and the humidity value; after the step of "controlling the pre-cooling module to start and run at a first power value", the control method further includes: when the temperature value is less than or equal to the dew point temperature value, controlling the pre-cooling module to turn off; wherein, the first set temperature value is greater than the dew point temperature value.

[0011] When the above technical solution is adopted, under the refrigeration action of the pre-cooling module, the temperature value drops to the dew point temperature value or below the dew point temperature value, so that the water vapor in the air reaches saturation or supersaturation, so as to improve the condensation effect and enhance the drying efficiency. At this time, the pre-cooling module is controlled to be closed, which reduces energy consumption and also avoids the temperature being too low, which causes the energy consumption of the heat pump module to increase.

[0012] In a specific embodiment of the control method of the above-mentioned clothing processing equipment, the step of "controlling the opening and closing of the pre-cooling module based on the temperature value and the humidity value" further includes: if the temperature value is greater than the n-1th set temperature value and less than or equal to the nth set temperature value, and the humidity value is greater than or equal to the nth set humidity value and less than the n-1th set humidity value, then controlling the pre-cooling module to start and operate at the nth power value; wherein the n value is two, three..., the nth set temperature value increases as the n value increases, the nth set humidity value decreases as the n value increases, the nth power value increases as the n value increases, the second set temperature value is greater than the first set temperature value, the second set humidity value is less than the first set humidity value, and the second power value is greater than the first power value.

[0013] When adopting the above technical solution, the pre-cooling module is controlled to start at different power values according to the temperature and humidity values. As the drying work proceeds, the humidity value becomes lower and lower, and the difference between the temperature value and the dew point temperature value becomes larger and larger. The power of the refrigeration module is required to be larger and larger to ensure the pre-cooling effect and improve the drying efficiency.

[0014] In a specific implementation of the control method for the above-mentioned clothing processing equipment, after the step of "controlling the pre-cooling module to start and run at the nth power value", the control method further includes: when the temperature value is less than or equal to the dew point temperature value, controlling the pre-cooling module to turn off.

[0015] When the above technical solution is adopted, each time the temperature value drops to the dew point temperature value or below the dew point temperature value under the refrigeration effect of the pre-cooling module, the pre-cooling module is controlled to be closed, which effectively reduces energy consumption.

[0016] In a specific implementation of the control method of the above-mentioned clothing processing equipment, the step of "controlling the opening and closing of the pre-cooling module based on the temperature value and the humidity value" further includes: when the humidity value is less than or equal to a preset standard humidity value, controlling the pre-cooling module to close.

[0017] When the above technical solution is adopted, when the humidity value is less than or equal to the standard humidity value, the clothes are in a state of being dried, and pre-cooling is stopped at this time.

[0018] In a specific implementation of the control method for the above-mentioned clothing processing equipment, at the same time as or after the step of "when the humidity value is less than or equal to the preset standard humidity value, controlling the pre-cooling module to turn off", the control method also includes: controlling the drying program to end.

[0019] When the above technical solution is adopted, when the humidity value is less than or equal to the standard humidity value, the clothes are in a state of being dried, and the drying program is controlled to end at this time.

[0020] In a specific embodiment of the control method of the above-mentioned clothing processing equipment, the clothing processing equipment also includes an auxiliary heating module, which is arranged on the air circuit between the condenser and the processing cylinder, and the auxiliary heating module is used for heating; the control method also includes: when executing the drying program, controlling the auxiliary heating module to start; when the temperature value is greater than or equal to the standard drying temperature value, controlling the auxiliary heating module to turn off.

[0021] When adopting the above technical solution, the auxiliary heating module assists the condenser to heat the air in the heating stage with lower temperature values, so as to quickly reach the standard drying temperature value where water evaporates faster, and then controls the auxiliary heating module to shut down to avoid air overheating and causing the compressor to shut down.

[0022] In a specific embodiment of the control method of the above-mentioned clothes processing device, the pre-cooling module can also generate heat between the evaporator and the condenser.

[0023] When the above technical solution is adopted, the pre-cooling module not only cools the air but also generates heat between the evaporator and the condenser to increase the air temperature between the evaporator and the condenser, thereby improving the heat exchange efficiency of the condenser and ultimately improving the drying efficiency. In addition, it can also reduce the operating power of the compressor and effectively reduce energy consumption.

[0024] In a second aspect, the present invention further provides a clothing processing device, comprising: a processor; a memory, wherein the memory is suitable for storing a plurality of program codes, wherein the program codes are suitable for being loaded and run by the processor to execute the control method of the clothing processing device.

[0025] Compared to the prior art, the control method for a clothing processing device provided by the present invention has the following beneficial effects: because the pre-cooling module can cool the inlet side of the evaporator, it can reduce the temperature of the hot and humid air at the evaporator inlet, thereby increasing the relative humidity of the hot and humid air and improving the dehumidification efficiency of the evaporator. The pre-cooling module has different effects on the dehumidification efficiency under different temperature and humidity conditions. Therefore, after the temperature reaches the standard drying temperature value at which water evaporates faster, the pre-cooling module is controlled to start and stop in combination with the temperature and humidity values, which can effectively improve the dehumidification efficiency of the evaporator and thus improve the drying efficiency. The clothing processing device provided by the present invention is used to implement this control method. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] The preferred embodiments of the present invention are described below with reference to the accompanying drawings, in which:

[0027] Figure 1 is a schematic diagram of the overall structure of the clothes processing device of the present invention;

[0028] Figure 2A flow chart showing the main steps of the control method for the clothes processing device of the present invention;

[0029] Figure 3 The present invention is a flowchart of the detailed steps of an embodiment of a method for controlling a clothes processing device.

[0030] List of reference numerals:

[0031] 1-treatment cylinder, 2-heat pump module, 3-auxiliary heating module, 4-air circulation module, 5-precooling module, 21-refrigerant circuit, 22-compressor, 23-condenser, 24-throttling device, 25-evaporator. DETAILED DESCRIPTION

[0032] Some embodiments of the present invention are described below with reference to the accompanying drawings. Those skilled in the art should understand that these embodiments are merely intended to illustrate the technical principles of the present invention and are not intended to limit the scope of protection of the present invention. Those skilled in the art may adjust these embodiments as needed to suit specific applications.

[0033] It should be noted that in the description of the present invention, "module" and "processor" may include hardware, software or a combination of the two. A module may include hardware circuits, various suitable sensors, communication ports, memories, and may also include software parts, such as program codes, or a combination of software and hardware. The processor may be a central processing unit, a microprocessor, a digital signal processor or any other suitable processor. The processor has data and / or signal processing functions. The processor may be implemented in software, hardware or a combination of the two. The term "A and / or B" represents all possible combinations of A and B, such as only A, only B or A and B. Ordinal numbers such as "first" and "second" are used for descriptive purposes only and are not to be understood as indicating or implying relative importance.

[0034] In addition, it should be noted that in the description of the present invention, although the various steps of the control method of the present invention are described in this application in a specific order, these orders are not restrictive. Without deviating from the basic principles of the present invention, those skilled in the art can perform the steps in a different order.

[0035] Furthermore, it should be noted that, in the description of the present invention, unless otherwise expressly specified or limited, the terms "installed," "connected," and "connected" should be understood in a broad sense. For example, they may refer to fixed connections, detachable connections, or integral connections; mechanical connections, electrical connections; direct connections, indirect connections through an intermediate medium, or internal communication between two components. Those skilled in the art will understand the specific meanings of the above terms in the present invention based on specific circumstances.

[0036] Based on the problem of low drying efficiency of clothing processing equipment in the prior art when performing drying processing pointed out in the background technology, the present invention provides a control method for clothing processing equipment and clothing processing equipment, which aims to effectively improve the dehumidification efficiency of the evaporator by combining the temperature value and the humidity value to control the start and shut down of the pre-cooling module after the temperature value reaches the standard drying temperature value where water evaporates faster, thereby improving the drying efficiency.

[0037] See first Figure 1 , which shows the overall structure of the clothes processing device of the present invention. Figure 1 As shown, the clothing processing device of the present invention includes a processing drum 1, a heat pump module 2, an auxiliary heating module 3, an air circulation module 4 and a pre-cooling module 5. The heat pump module 2 includes a refrigerant circuit 21, and the refrigerant circuit 21 refers to a pipe structure with a entity; the refrigerant circuit 21 is provided with a compressor 22, a condenser 23, a throttling device 24 and an evaporator 25 in sequence. The throttling device 24 can be a throttle valve, or an expansion valve, a float valve or a capillary tube, etc. After the refrigerant is compressed into a high-temperature and high-pressure refrigerant by the compressor 22, it passes through the condenser 23, the throttling device 24 and the evaporator 25 in sequence along the refrigerant circuit 21 to become a low-temperature and low-pressure refrigerant, and then returns to the compressor 22 for repeated circulation; the auxiliary heating module 3 can be an electric heater or an infrared heater for assisting the condenser 23 in heating; the air circulation module 4 includes an air circuit, and the air circuit refers to a duct structure with a entity; the air circuit is provided with a processing drum 1, an evaporator 25, condenser 23, auxiliary heating module 3, the air in the air circuit is heated by the condenser 23 to obtain dry hot air, and then enters the treatment drum 1, evaporates the moisture on the clothes into water vapor, and the humid hot air reaches the evaporator 25 through the air circuit to cool down, condenses the water vapor, reduces the water content of the air, and then passes through the condenser 23 to heat up to form dry hot air, and circulates repeatedly; the pre-cooling module 5 is arranged at the evaporator 25 or on both sides of the evaporator 25. The pre-cooling module 5 can be a semiconductor refrigeration module or a vortex tube refrigeration module, whose cooling end is arranged on the side of the inlet end of the evaporator 25, and the heating end is arranged between the evaporator 25 and the condenser 23. It can cool the inlet end side of the evaporator 25, reduce the temperature of the humid hot air at the inlet end of the evaporator 25, thereby improving the dehumidification efficiency of the evaporator 25, and can also heat between the evaporator 25 and the condenser 23, increase the air temperature between the evaporator 25 and the condenser 23, thereby improving the heat exchange efficiency of the condenser 23.

[0038] The clothing processing apparatus of the present invention further includes a temperature detection device and a humidity detection device. The temperature detection device may be an optical thermometer, a gas thermometer, a resistance thermometer, or the like, and is located at one or more locations within the processing drum 1, at the inlet of the evaporator 25, or within the air circuit at the inlet of the evaporator 25, for detecting the temperature of the processing drum 1 and / or the inlet of the evaporator 25. The humidity detection device may be a resistance hygrometer, a capacitance hygrometer, an optical hygrometer, or the like, and is located within the processing drum 1 and / or within the air circuit between the processing drum 1 and the evaporator 25, for detecting the humidity in the processing drum 1 and / or the air circuit between the processing drum 1 and the evaporator 25. It should be noted that the humidity value may be a relative humidity value or an absolute humidity value.

[0039] The clothing processing device of the present invention also includes a processor and a memory. The memory is suitable for storing multiple program codes, and the program codes are suitable for being loaded and executed by the processor to execute the control method of the clothing processing device. The processor can be a central processing unit, or other general-purpose processor, digital signal processor, application-specific integrated circuit, field programmable gate array or other programmable logic device, discrete gate or transistor logic device, discrete hardware component, etc. The general-purpose processor can be a microprocessor or any conventional processor, etc. The memory can be an internal storage unit of the clothing processing device, such as a hard disk or memory, etc. The memory can also be an external storage device of the clothing processing device, such as a plug-in hard disk, smart memory card, secure digital card, flash memory card, etc. equipped on the clothing processing device. The memory can also include both the internal storage unit and the external storage unit of the clothing processing device. In addition, the clothing processing device can include multiple memories and multiple processors, each processor performing different steps. The multiple processors can be deployed on the same device or on different devices. For example, the multiple processors can be a processor on the clothing processing device and a processor on a cloud server.

[0040] Those skilled in the art will understand that, although the above description states that the pre-cooling module 5 can cool and heat at the same time, this is not restrictive. The pre-cooling module 5 may also have only a cooling function, as long as it can cool the inlet side of the evaporator 25. Those skilled in the art may make adjustments as needed.

[0041] Then see Figure 2 , which shows the main steps of the control method of the clothes processing device of the present invention, specifically including the following steps:

[0042] S100: When executing the drying process, obtaining temperature and humidity values.

[0043] S101: When the temperature value is greater than or equal to a preset standard drying temperature value, the pre-cooling module is controlled to be turned on and off based on the temperature value and the humidity value.

[0044] Since the pre-cooling module can cool the inlet side of the evaporator, it can reduce the temperature of the hot and humid air at the inlet of the evaporator, thereby increasing the relative humidity of the hot and humid air and improving the dehumidification efficiency of the evaporator. Under different temperature and humidity values, the pre-cooling module has different effects on the dehumidification efficiency. Therefore, after the temperature reaches the standard drying temperature value where water evaporates faster, the start and stop of the pre-cooling module can be controlled in combination with the temperature and humidity values, which can effectively improve the dehumidification efficiency of the evaporator and thus improve the drying efficiency.

[0045] Last read Figure 3 , which shows a detailed step flow of an embodiment of a control method for a clothes processing device of the present invention, specifically comprising the following steps:

[0046] S200: When executing the drying process, obtaining temperature and humidity values.

[0047] S201: Obtain a dew point temperature value according to the temperature value and the humidity value.

[0048] S202: When the temperature value is greater than or equal to the preset standard drying temperature value, determine whether the temperature value is less than or equal to the first set temperature value, and the humidity value is greater than or equal to the first set humidity value. If the judgment result is yes, execute step S203; if the judgment result is no, execute step S204.

[0049] S203: Control the pre-cooling module to start and operate at the first power value. After step 203, step S205 is executed.

[0050] S204: Determine whether the temperature value is greater than the n-1th set temperature value and less than or equal to the nth set temperature value, and the humidity value is greater than or equal to the nth set humidity value and less than the n-1th set humidity value. If the judgment result is yes, execute step S207; if the judgment result is no, execute step S209.

[0051] S205: Determine whether the temperature value is less than or equal to the dew point temperature value. If the determination result is yes, execute step S206; if the determination result is no, execute step S203.

[0052] S206: Control the pre-cooling module to turn off. After step S206, execute step S201.

[0053] S207: Control the pre-cooling module to start and operate at the nth power value. After step S207, step 208 is executed.

[0054] S208: Determine whether the temperature value is less than or equal to the dew point temperature value. If the determination result is yes, execute step S206; if the determination result is no, execute step S207.

[0055] S209: Determine whether the humidity value is less than or equal to the preset standard humidity value. If the determination result is yes, execute step S210; if the determination result is no, execute step S201.

[0056] S210: Control the pre-cooling module to be turned off. After step S210, step S211 is executed.

[0057] S211: Control the drying process to end.

[0058] Through the above control method, the pre-cooling module is controlled to start at different power values based on the temperature and humidity values. Since the heat pump module is in the activated state during the drying process, the humidity value tends to decrease as the drying process progresses, while the temperature value tends to increase as the drying process progresses. Therefore, the difference between the temperature value and the dew point temperature value increases, and the power required by the cooling module also increases to ensure the cooling effect and improve the drying efficiency. Under the cooling effect of the pre-cooling module, the temperature value drops to or below the dew point temperature value, causing the water vapor in the air to reach saturation or supersaturation, thereby improving the condensation effect and improving the drying efficiency. At this time, the pre-cooling module is controlled to shut down, reducing energy consumption and also preventing the temperature from being too low, which would increase the energy consumption of the heat pump module.

[0059] The first set temperature value is greater than the standard drying temperature value, and the first set temperature value is greater than the dew point temperature value. The value of n is two, three, etc., and the nth set temperature value increases as the value of n increases, the nth set humidity value decreases as the value of n increases, and the nth power value increases as the value of n increases. The second set temperature value is greater than the first set temperature value, the second set humidity value is less than the first set humidity value, the second power value is greater than the first power value, and the standard humidity value is less than the nth set humidity value.

[0060] Furthermore, the dew point temperature refers to the temperature at which air is cooled to saturation, while maintaining a constant water vapor content and a constant air pressure. The dew point temperature can be calculated using the temperature and humidity values. Since the temperature and humidity values change in real time, the dew point temperature also changes in real time. The dew point temperature can be calculated using the following formula: Dew point temperature = temperature - (100 - humidity) / 5, where the temperature is in degrees Celsius and the humidity is in relative humidity.

[0061] Exemplarily, the first set temperature value is 25℃~30℃, the second set temperature value is 30℃~35℃, the third set temperature value is 35℃~40℃, the fourth set temperature value is 40℃~45℃...; the first set humidity value is 90%~100%, the second set humidity value is 80%~90%, the third set humidity value is 70%~80%, the fourth set humidity value is 60%~70%, and the standard humidity value is 40%...; specifically, when the detected humidity value is 29℃ and the humidity value is 90%, the dew point temperature value is 27.2℃, and the pre-cooling module operates at the first power value; when the detected temperature value is 34℃ and the humidity value is 80%, the dew point temperature value is 30.1℃, and the pre-cooling module operates at the second power value.

[0062] In addition, when the drying program is executed, the auxiliary heating module is controlled to start. The auxiliary heating module assists the condenser in heating up during the temperature rise stage with lower temperature values to quickly reach the standard drying temperature value where water evaporates faster. Then the auxiliary heating module is controlled to shut down to avoid air overheating and causing the compressor to shut down.

[0063] It should be noted that the above-mentioned embodiments are only used to illustrate the principles of the present invention and are not intended to limit the scope of protection of the present invention. Without departing from the principles of the present invention, those skilled in the art can adjust the above-mentioned embodiments so that the present invention can be applied to more specific application scenarios.

[0064] Thus far, the technical solutions of the present invention have been described in conjunction with the preferred embodiments shown in the accompanying drawings. However, it will be readily understood by those skilled in the art that the scope of protection of the present invention is obviously not limited to these specific embodiments. Without departing from the principles of the present invention, those skilled in the art may make equivalent changes or substitutions to the relevant technical features, and the technical solutions after such changes or substitutions will fall within the scope of protection of the present invention.

Claims

1. A method for controlling a clothes processing device, characterized in that: The laundry processing device comprises: treatment barrel; A heat pump module, the heat pump module comprising a refrigerant circuit, the refrigerant circuit being provided with a compressor, a condenser, a throttling device and an evaporator in sequence; An air circulation module, the air circulation module comprising an air circuit, the air circuit being provided with the treatment cylinder, the evaporator and the condenser in sequence; a pre-cooling module, the pre-cooling module being configured to provide cooling to an inlet end side of the evaporator; a temperature detection device, the temperature detection device being used to detect the temperature value of the treatment cylinder and / or the evaporator inlet end; a humidity detection device for detecting a humidity value in the treatment cylinder and / or in an air circuit between the treatment cylinder and the evaporator; The control method includes: When executing the drying program, obtaining the temperature value and the humidity value; When the temperature value is greater than or equal to a preset standard drying temperature value, the pre-cooling module is controlled to be turned on and off based on the temperature value and the humidity value.

2. The control method of the clothes processing device according to claim 1, characterized in that: The step of “controlling the opening and closing of the pre-cooling module based on the temperature value and the humidity value” further includes: If the temperature value is less than or equal to the first set temperature value, and the humidity value is greater than or equal to the first set humidity value, controlling the pre-cooling module to start and operate at a first power value; Wherein, the first set temperature value is greater than the standard drying temperature value.

3. The control method of the clothes processing device according to claim 2, characterized in that: After the step of “obtaining the temperature value and the humidity value”, the control method further includes: Obtaining a dew point temperature value according to the temperature value and the humidity value; After the step of “controlling the pre-cooling module to start and operate at the first power value”, the control method further includes: When the temperature value is less than or equal to the dew point temperature value, controlling the pre-cooling module to be closed; Wherein, the first set temperature value is greater than the dew point temperature value.

4. The control method of the clothes processing device according to claim 3, characterized in that: The step of “controlling the opening and closing of the pre-cooling module based on the temperature value and the humidity value” further includes: If the temperature value is greater than the n-1th set temperature value and less than or equal to the nth set temperature value, and the humidity value is greater than or equal to the nth set humidity value and less than the n-1th set humidity value, then control the pre-cooling module to start and operate at the nth power value; Among them, the value of n is two, three..., the nth set temperature value increases as the value of n increases, the nth set humidity value decreases as the value of n increases, the nth power value increases as the value of n increases, the second set temperature value is greater than the first set temperature value, the second set humidity value is less than the first set humidity value, and the second power value is greater than the first power value.

5. The control method of the clothes processing device according to claim 4, characterized in that: After the step of “controlling the pre-cooling module to start and operate at the nth power value”, the control method further includes: When the temperature value is less than or equal to the dew point temperature value, the pre-cooling module is controlled to be closed.

6. The control method of the clothes processing device according to claim 3 or 5, characterized in that: The step of “controlling the opening and closing of the pre-cooling module based on the temperature value and the humidity value” further includes: When the humidity value is less than or equal to a preset standard humidity value, the pre-cooling module is controlled to be closed.

7. The control method of the clothes processing device according to claim 6, characterized in that: At the same time as or after the step of “controlling the pre-cooling module to turn off when the humidity value is less than or equal to a preset standard humidity value”, the control method further includes: Control the drying process to end.

8. The control method of the clothes processing device according to claim 1, characterized in that: The laundry processing device further includes an auxiliary heating module, which is provided on the air circuit between the condenser and the processing cylinder, and is used for heating; The control method further includes: When executing the drying program, controlling the auxiliary heating module to start; When the temperature value is greater than or equal to the standard drying temperature value, the auxiliary heating module is controlled to be turned off.

9. The control method of the clothes processing device according to claim 1, characterized in that: The pre-cooling module can also generate heat between the evaporator and the condenser.

10. A clothes processing device, characterized in that: The laundry processing device comprises: processor; A memory, wherein the memory is adapted to store a plurality of program codes, wherein the program codes are adapted to be loaded and run by the processor to execute the control method of the laundry processing apparatus according to any one of claims 1 to 9.