Control method for a humidity control device, control device, and humidity control device

By obtaining the operating environment parameters of the humidity control device and adjusting the working parameters to control the temperature of the humidity control turntable, the problem of high energy consumption of the humidity control device is solved and efficient moisture absorption and dehumidification effects are achieved.

CN115493253BActive Publication Date: 2025-10-24QINGDAO HAIER AIR CONDITIONING ELECTRONICS CO LTD +3
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Patent Information

Application Number
CN202110674893.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-06-17
Publication Date
2025-10-24
Estimated Expiration
2041-06-17

AI Technical Summary

Technical Problem

Existing humidity control devices consume high energy when adjusting humidity, and it is difficult to effectively control working parameters to improve the humidity control effect.

Method used

By obtaining the operating environment parameters of the humidity control device, adjusting the working parameters such as the power of the heating device, the speed of the driving device and the speed of the regeneration fan, the temperature of the humidity control turntable is maintained within the preset temperature range to achieve optimization of the moisture absorption and dehumidification effects.

Benefits of technology

It effectively reduces the energy consumption of the humidity control device, while improving the moisture absorption and dehumidification effect of the humidity control turntable, and maintains the stability and efficiency of the humidity control effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to the air conditioning technical field, and discloses a control method and a control device for a humidifying device and the humidifying device. The control method comprises the following steps: obtaining an operation environment parameter of the humidifying device; adjusting a working parameter of the humidifying device according to the operation environment parameter; and controlling the humidifying device to operate under the adjusted working parameter, so as to adjust the temperature of the humidifying rotating disc to a preset temperature range, so that the humidifying rotating disc has good moisture absorption and dehumidification effects, the moisture absorption and dehumidification effects of the humidifying device are improved, and the energy consumption of the humidifying device is reduced.
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Description

TECHNICAL FIELD

[0001] The present application relates to the air conditioning technical field, for example, relates to a control method for a humidifying device, a control device and the humidifying device. BACKGROUND

[0002] At present, some commercial areas such as shopping malls or warehouses often have different needs for the humidity of the internal air, but the humidity in the indoor air fluctuates greatly with the change of seasons, so it is necessary to adjust the humidity of the internal space, such as using a humidifying device to adjust the humidity.

[0003] However, the humidifying device will increase the energy consumption, therefore, how to reduce the energy consumption of the humidifying device is a problem to be solved. SUMMARY

[0004] To have a basic understanding of some aspects of the disclosed embodiments, a brief summary is given below. The summary is not an overview of the application, nor is it intended to identify key or important elements of the application, or to delineate the scope of the embodiments. Instead, the sole purpose of the summary is to serve as a prelude to the detailed description that follows.

[0005] The embodiments of the present disclosure provide a control method for a humidifying device, a control device and the humidifying device, to solve the technical problem of how to control the working parameters of the humidifying device to improve the humidifying effect of the humidifying device.

[0006] The technical scheme of the first aspect of the present application provides a control method for a humidifying device, obtaining the operating environment parameters of the humidifying device;

[0007] Adjusting the working parameters of the humidifying device according to the operating environment parameters;

[0008] Control the humidifying device to run under the adjusted working parameters, so as to adjust the temperature of the humidifying rotating disc to the preset temperature range.

[0009] In some embodiments, the humidity control device comprises a humidity control turntable and a heating device, the heating device comprises a first heating device and a second heating device corresponding to different regions of the humidity control turntable respectively, the first heating device and the second heating device are opened alternatively; the humidity control device further comprises a driving device, a first fan and a second fan, the driving device is connected with the humidity control turntable and used to drive the humidity control turntable to rotate, the first fan corresponds to the first heating device, the second fan corresponds to the second heating device, when the first heating device is opened, the air inlet and the air outlet corresponding to the first heating device are a regeneration inlet and a regeneration outlet respectively, and the first fan is a regeneration fan; when the second heating device is opened, the air inlet and the air outlet corresponding to the second heating device are a regeneration inlet and a regeneration outlet respectively, and the second fan is a regeneration fan; the operating environment parameters comprise the temperature of the regeneration inlet and / or the temperature of the regeneration outlet; the working parameters comprise one or more of the power of the heating device, the rotating speed of the driving device and the rotating speed of the regeneration fan; the adjusting the working parameters of the humidity control device according to the operating environment parameters comprises: if the temperature of the regeneration inlet is greater than a first preset temperature or less than a second preset temperature, adjusting the power of the heating device until the temperature of the humidity control turntable is within a preset temperature range, wherein the first preset temperature is greater than the second preset temperature, and any temperature value in the preset temperature range satisfies greater than the second preset temperature and less than the first preset temperature; if the temperature of the regeneration inlet is greater than or equal to the second preset temperature and less than or equal to the first preset temperature, adjusting the rotating speed of the regeneration fan and / or the driving device until the temperature of the humidity control turntable is within the preset temperature range; if the temperature of the regeneration outlet is greater than a first preset temperature or less than a second preset temperature, adjusting the power of the heating device until the temperature of the humidity control turntable is within the preset temperature range, wherein the first preset temperature is greater than the second preset temperature, and any temperature value in the preset temperature range satisfies greater than the second preset temperature and less than the first preset temperature; if the temperature of the regeneration outlet is greater than or equal to the second preset temperature and less than or equal to the first preset temperature, adjusting the rotating speed of the regeneration fan and / or the driving device until the temperature of the humidity control turntable is within the preset temperature range.

[0010] In some embodiments, the adjusting the power of the heating device if the temperature of the regeneration inlet is greater than a first preset temperature or less than a second preset temperature comprises:

[0011] if the temperature of the regeneration inlet is greater than the first preset temperature, reducing the power of the heating device;

[0012] if the temperature of the regeneration inlet is less than the second preset temperature, increasing the power of the heating device.

[0013] In some embodiments, the adjusting the rotation speed of the regeneration fan and / or the driving device comprises: if the rotation speed of the regeneration fan and the driving device need to be adjusted simultaneously, increasing or decreasing the rotation speed of the regeneration fan and the driving device proportionally.

[0014] In some embodiments, the adjusting the rotation speed of the regeneration fan and / or the driving device if the temperature of the regeneration inlet is greater than or equal to the second preset temperature and less than or equal to the first preset temperature comprises:

[0015] if the temperature of the regeneration inlet is greater than or equal to the second preset temperature and less than or equal to the third preset temperature, decreasing the rotation speed of the regeneration fan and / or the driving device;

[0016] if the temperature of the regeneration inlet is greater than or equal to the fourth preset temperature and less than or equal to the first preset temperature, increasing the rotation speed of the regeneration fan and / or the driving device, wherein the third preset temperature is less than the fourth preset temperature, and the temperature range greater than the third preset temperature and less than the fourth preset temperature corresponds to the temperature range in which the humidifying turntable is located.

[0017] In some embodiments, the adjusting the power of the heating device if the temperature of the regeneration outlet is greater than the first preset temperature or less than the second preset temperature comprises:

[0018] if the temperature of the regeneration outlet is greater than the first preset temperature, increasing the power of the heating device;

[0019] if the temperature of the regeneration outlet is less than the second preset temperature, decreasing the power of the heating device.

[0020] In some embodiments, the adjusting the rotation speed of the regeneration fan and / or the driving device if the temperature of the regeneration outlet is greater than or equal to the second preset temperature and less than or equal to the first preset temperature comprises:

[0021] if the temperature of the regeneration outlet is greater than or equal to the second preset temperature and less than or equal to the third preset temperature, decreasing the rotation speed of the regeneration fan and / or the driving device;

[0022] If the temperature of the regeneration outlet is greater than or equal to the fourth preset temperature and less than or equal to the first preset temperature, the rotation speed of the regeneration fan and / or the driving device is increased, wherein the third preset temperature is less than the fourth preset temperature, and the temperature range greater than the third preset temperature and less than the fourth preset temperature corresponds to the humidity adjusting turntable being located in the preset temperature range.

[0023] The technical scheme of the second aspect of the present application provides a control device for a humidity adjusting device, comprising: a parameter acquisition module configured to acquire an operating environment parameter of the humidity adjusting device; a parameter adjustment module configured to adjust a working parameter of the humidity adjusting device according to the operating environment parameter; and an operation control module configured to control the humidity adjusting device to operate under the adjusted working parameter to adjust the temperature of the humidity adjusting turntable to a preset temperature range.

[0024] The technical scheme of the third aspect of the present application provides a control device for a humidity adjusting device, comprising a processor and a memory storing program instructions, the processor being configured to execute the program instructions to perform the control method for the humidity adjusting device according to any one of the above technical schemes.

[0025] The technical scheme of the fourth aspect of the present application provides a humidity adjusting device comprising the control device for the humidity adjusting device according to any one of the above technical schemes.

[0026] The control method for the humidity adjusting device, the control device and the humidity adjusting device provided by the embodiments of the present application can achieve the following technical effects:

[0027] The working parameter of the humidity adjusting device is adjusted according to the operating environment parameter of the humidity adjusting device, so that the temperature of the humidity adjusting turntable is maintained in the preset temperature range, the humidity adjusting turntable has good humidity absorbing and dehumidifying effects, the humidity adjusting effect of the humidity adjusting turntable is maintained, and the humidity absorbing and dehumidifying effects of the humidity adjusting device are improved, and the energy consumption of the humidity adjusting device is reduced.

[0028] The general description above and the following description below are exemplary and explanatory only and are not intended to be limiting of the present application. BRIEF DESCRIPTION OF DRAWINGS

[0029] One or more embodiments are illustrated by way of example in the figures that are not intended to be limiting of the present application, in which like numbers refer to like elements, and in which:

[0030] Figure 1 is a flowchart of a control method for a humidity adjusting device provided by the embodiments of the present application;

[0031] Figure 2is another flowchart of a control method for a humidification device provided by an embodiment of the present disclosure;

[0032] Figure 3 is a schematic diagram of a control device for a humidification device provided by an embodiment of the present disclosure;

[0033] Figure 4 is another schematic diagram of a control device for a humidification device provided by an embodiment of the present disclosure;

[0034] Figure 5 is a structural schematic diagram of a humidification device provided by an embodiment of the present disclosure;

[0035] Figure 6 is another structural schematic diagram of a humidification device provided by an embodiment of the present disclosure;

[0036] Figure 7 is still another structural schematic diagram of a humidification device provided by an embodiment of the present disclosure;

[0037] Figure 8 is still another structural schematic diagram of a humidification device provided by an embodiment of the present disclosure;

[0038] Figure 9 is still another structural schematic diagram of a humidification device provided by an embodiment of the present disclosure;

[0039] Figure 10 is still another structural schematic diagram of a humidification device provided by an embodiment of the present disclosure;

[0040] Figure 11 is another flowchart of a control method for a humidification device provided by an embodiment of the present disclosure. DETAILED DESCRIPTION

[0041] In order to enable persons skilled in the art to more fully understand the features and technical contents of the embodiments of the present disclosure, the implementation of the embodiments of the present disclosure is described in detail below with reference to the accompanying drawings, which are used only for reference and do not limit the embodiments of the present disclosure. In the following technical description, in order to facilitate explanation, a plurality of details are provided to provide a full understanding of the disclosed embodiments. However, one or more embodiments can still be implemented without these details. In other cases, well-known structures and devices can be simplified to facilitate the drawings.

[0042] The terms "first", "second", and the like in the specification and claims of the embodiments of the present disclosure and the above drawings are used to distinguish similar objects, and do not necessarily have to describe a specific order or sequence. It should be understood that the data thus used can be interchanged under appropriate circumstances, so that the embodiments of the present disclosure described herein can be implemented. In addition, the terms "include" and "have" and any variations thereof are intended to cover non-exclusive inclusion.

[0043] The term "plurality" means two or more, unless otherwise specified.

[0044] The term "and / or" is a description of association relationship of objects, which means that there can be three relationships. For example, A and / or B means: A or B, or, A and B.

[0045] In combination Figures 5-10 As shown, in some embodiments, a humidification device includes a housing 100, a humidification rotating disc 200 and a first partition plate 300. The housing 100 defines a cavity 110 inside, and one end of the cavity 110 has an opening; the humidification rotating disc 200 is rotatably arranged in the cavity 110, and a flow passage is defined between the upper end surface of the humidification rotating disc 200 and the inner wall of the cavity 110, the airflow can pass through the humidification rotating disc 200 in the vertical direction, and the lower end surface of the humidification rotating disc 200 is located at the opening; the first partition plate 300 is rotatably arranged in the flow passage and divides the flow passage into a first chamber 112 and a second chamber 113.

[0046] With the humidification device provided by the embodiments of the present disclosure, the moisture in the airflow at room temperature will be absorbed when flowing through the humidification rotating disc 200, and the airflow after being heated will release the moisture in the humidification rotating disc 200 into the airflow when flowing through the humidification rotating disc 200 that has absorbed the moisture. By using the characteristics of the humidification rotating disc 200, the humidification rotating disc 200 is continuously driven to rotate below the first chamber 112 and the second chamber 113, and one of the airflow or the heated airflow passes through the humidification rotating disc 200 below the first chamber 112 to enter the first chamber 112, and then flows out again by passing through the humidification rotating disc 200 below the first chamber 112, and the other passes through the humidification rotating disc 200 below the second chamber 113 to enter the second chamber 113, and then flows out again by passing through the humidification rotating disc 200 below the second chamber 113, better absorbing the moisture in the airflow or better releasing the absorbed moisture into the heated airflow, so that the indoor can be better continuously humidified or dehumidified, and the rotation of the first partition plate 300 can be driven to switch the flow channel of the airflow according to the outdoor environment quality, so that the indoor airflow and the outdoor airflow can be exchanged or not exchanged during the humidification or dehumidification process, and then the indoor airflow and the outdoor airflow are exchanged when there is a demand for air exchange in the indoor, and the indoor airflow and the outdoor airflow are not exchanged when there is no demand for air exchange in the outdoor with poor air quality, so that the outdoor dirty air is prevented from entering the indoor, the outdoor airflow is selectively used, the dependence on the outdoor environment is reduced, the stability of the humidity adjustment is improved, and the quality of the indoor air is maintained.

[0047] Optionally, a heating device 310 is arranged in the first chamber 112 and / or the second chamber 113. In this way, the air flow passing through the first chamber 112 and / or the second chamber 113 can be heated, so that the air flow passing through the first chamber 112 and / or the second chamber 113 can take away the moisture in the humidifying and dehumidifying turntable 200 below the first chamber 112 and / or the second chamber 113, so as to humidify or dehumidify the indoor environment and better continuously humidify or dehumidify the indoor environment.

[0048] The humidifying and dehumidifying turntable is provided with a moisture absorbing material. When the air flow passes through the humidifying and dehumidifying turntable, the moisture in the air flow is absorbed by the moisture absorbing material, or the absorbed moisture in the moisture absorbing material is released into the air flow, so as to better humidify or dehumidify the indoor environment.

[0049] Optionally, heating devices 310 are arranged in the first chamber 112 and the second chamber 113. In this way, the indoor environment can be dehumidified or humidified by controlling the opening or closing of the heating devices 310 in the first chamber 112 and the second chamber 113, regardless of whether the indoor environment is in internal circulation or external circulation. The two heating devices 310 are arranged on the same horizontal line and cross the first partition 300, so that the air flowing in the first chamber 112 or the second chamber 113 can be better heated, thereby better humidifying or dehumidifying the indoor environment. For example, when the indoor environment is in internal circulation, the first chamber 112 is in communication with the indoor environment, and the second chamber 113 is in communication with the outdoor environment. By controlling the heating device 310 in the first chamber 112 to be closed and the heating device 310 in the second chamber 113 to be opened, the moisture in the air flowing through the first chamber 112 is absorbed by the moisture-absorbing material in the humidity control disc 200 below the first chamber 112, the air flowing through the second chamber 113 is heated, and the heated air carries away the moisture in the moisture-absorbing material in the humidity control disc 200 below the second chamber 113, thereby dehumidifying the indoor environment. Alternatively, the heating device 310 in the first chamber 112 can be opened, and the heating device 310 in the second chamber 113 can be closed. The moisture in the air flowing through the second chamber 113 is absorbed by the humidity control disc 200 below the second chamber 113, the air flowing through the first chamber 112 is heated, and the heated air carries away the moisture in the humidity control disc 200 below the first chamber 112, thereby humidifying the indoor environment. When the indoor environment is in external circulation, the first chamber 112 is in communication with the outdoor environment, and the second chamber 113 is also in communication with the outdoor environment. By controlling the heating device 310 in the first chamber 112 to be closed and the heating device 310 in the second chamber 113 to be opened, the moisture in the air flowing from the indoor environment to the outdoor environment is absorbed by the humidity control disc 200, and the air flowing from the outdoor environment to the indoor environment is heated in the second chamber 113. The heated air carries away the moisture in the humidity control disc 200 and is discharged to the indoor environment, thereby humidifying the indoor environment. Alternatively, the heating device 310 in the first chamber 112 can be opened, and the heating device 310 in the second chamber 113 can be closed. The moisture in the air flowing from the outdoor environment to the indoor environment is absorbed by the humidity control disc 200 in the second chamber 113, and the air flowing from the indoor environment to the outdoor environment is heated in the first chamber 112. The heated air carries away the moisture in the humidity control disc 200 and is discharged to the outdoor environment, thereby dehumidifying the indoor environment.

[0050] For the convenience of description, the heating device located in the first chamber is named as the first heating device, the heating device located in the second chamber is named as the second heating device, the first heating device and the second heating device are opened alternatively, the humidifying device further comprises a fan, the fan comprises a first fan and a second fan, the first fan corresponds to the first heating device, the air driven by the first fan can flow through the first heating device, the second fan corresponds to the second heating device, the air driven by the second fan can flow through the second heating device, wherein, when the first heating device is opened and the second heating device is closed, the first fan is a regenerative fan and the second fan is a dehumidifying fan, at this time, the air passing through the first heating device flows through the desiccant material to absorb the moisture in the desiccant material, thereby realizing the regeneration of the desiccant material, and the air passing through the second heating device flows through the desiccant material to absorb the moisture in the desiccant material, thereby realizing the humidification of the air; when the first heating device is closed and the second heating device is opened, the first fan is a dehumidifying fan and the second fan is a regenerative fan, at this time, the air passing through the second heating device flows through the desiccant material to absorb the moisture in the desiccant material, thereby realizing the regeneration of the desiccant material, and the air passing through the first heating device flows through the desiccant material to absorb the moisture in the desiccant material, thereby realizing the humidification of the air.

[0051] When the first heating device is opened and the second heating device is closed, the air inlet and the air outlet corresponding to the first heating device are a regeneration inlet and a regeneration outlet respectively, the air enters the first chamber in sequence through the air inlet corresponding to the first chamber and the humidifying disc corresponding to the first chamber, and flows out in sequence through the humidifying disc corresponding to the first chamber and the air outlet corresponding to the first chamber, so that the humidifying disc corresponding to the first chamber absorbs the moisture in the air, and releases the moisture to the air entering the second chamber through the humidifying disc corresponding to the second chamber and flowing out through the humidifying disc corresponding to the second chamber; when the second heating device is opened and the first heating device is closed, the air inlet and the air outlet corresponding to the second heating device are a regeneration inlet and a regeneration outlet respectively, the air enters the second chamber in sequence through the air inlet corresponding to the second chamber and the humidifying disc corresponding to the second chamber, and flows out in sequence through the humidifying disc corresponding to the second chamber and the air outlet corresponding to the second chamber, so that the humidifying disc corresponding to the second chamber absorbs the moisture in the air, and releases the moisture to the air entering the first chamber through the humidifying disc corresponding to the first chamber and flowing out through the humidifying disc corresponding to the first chamber.

[0052] The regeneration inlet or the regeneration outlet can be any one of the first air inlet 701, the first air outlet 702, the second air inlet 703 and the second air outlet 704, or any position of the air on the flow path from any one of the first air inlet 701, the first air outlet 702, the second air inlet 703 and the second air outlet 704 to the humidifying disc.

[0053] Optionally, the humidity adjusting device comprises a driving device connected with the humidity adjusting disc, for driving the humidity adjusting disc to rotate, so that the humidity adjusting disc 200 rotates continuously under the first chamber 112 and the second chamber 113, and continuously absorbs and releases humidity in the process of rotation, thereby better humidifying or dehumidifying the indoor environment.

[0054] In some optional embodiments, the humidity adjusting device further comprises a housing 700. The housing 700 defines an installation cavity inside, and the cover 100 is installed in the installation cavity, so as to divide the installation cavity into a first airflow cavity 710, a second airflow cavity 720, a third airflow cavity 730, and a fourth airflow cavity 740. In this way, in the process of humidifying or dehumidifying the indoor environment, the rotation of the first partition plate 300 can be driven to switch the flow path of the airflow, and the communication relationship between the first airflow cavity 710, the second airflow cavity 720, the third airflow cavity 730, and the fourth airflow cavity 740 can be switched, so that the indoor airflow and the outdoor airflow can be exchanged or not exchanged in the process of humidifying or dehumidifying, thereby exchanging the indoor airflow and the outdoor airflow when there is a need for air exchange in the indoor environment, and not exchanging the indoor airflow and the outdoor airflow when there is no need for air exchange in the outdoor environment, so as to selectively use the outdoor airflow, reduce the dependence on the outdoor environment, improve the stability of humidity adjustment, and maintain the quality of indoor air.

[0055] Optionally, the cover 100 is arranged at the middle position of the installation cavity. In this way, the first airflow cavity 710, the second airflow cavity 720, the third airflow cavity 730, and the fourth airflow cavity 740 divided by the cover 100 are uniform in size and relatively uniform in flow area, so that the airflow flows more smoothly.

[0056] Optionally, when the first partition plate 300 is located at the first position, the first airflow cavity 710 and the second airflow cavity 720 are communicated, and the third airflow cavity 730 and the fourth airflow cavity 740 are communicated; when the first partition plate 300 is located at the second position, the first airflow cavity 710 and the third airflow cavity 730 are communicated, and the second airflow cavity 720 and the fourth airflow cavity 740 are communicated. In this way, by switching the position of the first partition plate 300, the communication relationship of the flow path in the housing 700 can be switched, so that the outdoor and the outdoor are communicated, the indoor and the indoor are communicated, or the indoor and the outdoor are communicated, and the environmental adaptability is improved while continuously humidifying or dehumidifying the indoor environment according to the quality of the outdoor environment and the switching of the airflow path.

[0057] Optionally, the shell 700 comprises a first air inlet 701 and a first air outlet 702 communicating with the outside, a second air inlet 703 and a second air outlet 704 communicating with the inside, the first air inlet 701 communicates with the first airflow cavity 710, the first air outlet 702 communicates with the second airflow cavity 720, the second air outlet 704 communicates with the third airflow cavity 730, and the second air inlet 703 communicates with the fourth airflow cavity 740. In this way, by switching the position of the first partition plate 300, the communication relationship of the flow channel in the shell 700 can be switched, and the communication relationship between the indoor and outdoor environments can be switched, while continuously humidifying or dehumidifying the indoor environment, the quality of the outdoor environment can be switched according to the inlet airflow channel, and the environmental adaptability is improved. For example, when the first partition plate 300 is located at the first position, the outdoor airflow enters the first airflow cavity 710 through the first air inlet 701, then passes through the first air inlet end 230 on the lower end surface of the humidifying disc 200 to enter the first chamber 112, and then flows into the second airflow cavity 720 through the first air outlet end 240, and finally is blown out to the outside through the first air outlet 702, completing a cycle of outdoor airflow. The indoor airflow enters the fourth airflow cavity 740 through the second air inlet 703, then enters the second chamber 113 through the second air inlet end 250 on the lower end surface of the humidifying disc 200, then flows into the third airflow cavity 730 through the second air outlet end 260, and finally is blown out to the indoor through the second air outlet 704, completing a cycle of indoor airflow. At this time, the outdoor is in communication with the outdoor, and the indoor is in communication with the indoor; when the first partition plate 300 is located at the second position, the outdoor airflow enters the first airflow cavity 710 through the first air inlet 701, then passes through the first air inlet end 230 on the lower end surface of the humidifying disc 200 to enter the first chamber 112, and then flows into the third airflow cavity 730 through the second air outlet end 260, and finally is blown out to the indoor through the second air outlet 704, completing a cycle of outdoor to indoor. The indoor airflow enters the fourth airflow cavity 740 through the second air inlet 703, then enters the second chamber 113 through the second air inlet end 250 on the lower end surface of the humidifying disc 200, then flows out to the second airflow cavity 720 through the first air outlet end 240, and finally is blown out to the outdoor through the first air outlet 702, completing a cycle of indoor to outdoor. At this time, the indoor is in communication with the outdoor.

[0058] A fan 800 is arranged at each of the first air inlet 701 and the second air outlet 704. The fan arranged at the first air inlet is used to drive air to flow between the first air inlet 701 and the part of the humidifying disc corresponding to the first air inlet. The fan arranged at the second air outlet 704 is used to drive air to flow between the second air outlet 704 and the part of the humidifying disc corresponding to the second air outlet 704.

[0059] In some examples, a condenser 760 is arranged in the first airflow cavity 710 and / or the fourth airflow cavity 740. An evaporator 770 is arranged in the second airflow cavity 720 and / or the third airflow cavity 730.

[0060] In the case of internal circulation dehumidification, the first airflow cavity 710 and the second airflow cavity 720 are connected to the outdoor environment, the third airflow cavity 730 and the fourth airflow cavity 740 are connected to the indoor environment, the condenser 760 in the first airflow cavity 710 can heat the outdoor airflow flowing in, so that the airflow can more efficiently remove the water absorbed in the interior when passing through the humidifying and dehumidifying disc 200, and the evaporator 770 in the third airflow cavity 730 can perform secondary dehumidification on the dehumidified airflow flowing out of the humidifying and dehumidifying disc 200, further reducing the water content of the airflow flowing into the indoor environment; in the case of internal circulation humidification, the first airflow cavity 710 and the second airflow cavity 720 are connected to the outdoor environment, the third airflow cavity 730 and the fourth airflow cavity 740 are connected to the indoor environment, the condenser 760 in the fourth airflow cavity 740 can heat the indoor airflow flowing in, so that the airflow can more efficiently remove the water absorbed in the interior when passing through the humidifying and dehumidifying disc 200, further improving the humidification effect; in the case of external circulation dehumidification, the first airflow cavity 710 and the third airflow cavity 730 are connected to the outdoor environment, the second airflow cavity 720 and the fourth airflow cavity 740 are connected to the outdoor environment, the evaporator 770 in the third airflow cavity 730 can perform secondary dehumidification on the dehumidified outdoor airflow flowing out of the humidifying and dehumidifying disc 200, further reducing the water content of the airflow flowing into the indoor environment, and the condenser 760 in the fourth airflow cavity 740 can heat the indoor airflow flowing out, so that the airflow can more efficiently remove the water absorbed in the interior when passing through the humidifying and dehumidifying disc 200, further improving the dehumidification effect; in the case of external circulation humidification, the first airflow cavity 710 and the third airflow cavity 730 are connected to the outdoor environment, the second airflow cavity 720 and the fourth airflow cavity 740 are connected to the outdoor environment, the condenser 760 in the first airflow cavity 710 can heat the outdoor airflow flowing in, so that the airflow can more efficiently remove the water absorbed in the interior when passing through the humidifying and dehumidifying disc 200, further improving the humidification effect.

[0061] In combination with Figure 11 As shown in the drawings, the embodiments of the present disclosure provide a control method for a humidifying and dehumidifying device, comprising:

[0062] In step S1101, the humidifying and dehumidifying device obtains an operating environment parameter thereof.

[0063] In step S1102, the humidifying and dehumidifying device adjusts a working parameter of the humidifying and dehumidifying device according to the operating environment parameter, so that the working parameter of the humidifying and dehumidifying device corresponds to the operating environment parameter.

[0064] Step S1103, the humidifying device is controlled to run at the adjusted working parameter, so as to adjust the temperature of the humidifying disc to the preset temperature range, so that the temperature of the humidifying disc is maintained in the preset temperature range, and the humidifying effect of the humidifying disc is ensured.

[0065] In some embodiments, the operating environment parameter includes the temperature of the regeneration inlet and / or the temperature of the regeneration outlet. As shown in Figure 1 The control method includes:

[0066] Step S101, the humidifying device obtains the temperature of the regeneration inlet and / or the temperature of the regeneration outlet.

[0067] A temperature sensor can be arranged at the regeneration inlet and / or the regeneration outlet, and the temperature of the regeneration inlet and / or the regeneration outlet is obtained by the temperature sensor. A humidity sensor can also be arranged at the regeneration inlet and / or the regeneration outlet, and the humidity of the regeneration inlet and / or the regeneration outlet is obtained by the humidity sensor. According to the corresponding relationship between the temperature and the humidity of the regeneration inlet and / or the regeneration outlet, the temperature of the regeneration inlet and / or the regeneration outlet is obtained.

[0068] In a specific embodiment, the temperature of the regeneration inlet refers to the temperature of the air at the regeneration inlet, and the temperature of the regeneration outlet refers to the temperature of the air at the regeneration outlet.

[0069] Step S102, the humidifying device adjusts its working parameter according to the temperature of the regeneration inlet and / or the temperature of the regeneration outlet, so that the working parameter of the humidifying device corresponds to the temperature of the regeneration inlet and / or the working parameter of the humidifying device corresponds to the temperature of the regeneration outlet.

[0070] Step S103, the humidifying device is controlled to run at the adjusted working parameter, so as to adjust the temperature of the humidifying disc to the preset temperature range.

[0071] The temperature of the regeneration inlet reflects the temperature of the air entering the humidifying disc through the regeneration inlet, so the temperature of the regeneration inlet affects the temperature of the humidifying disc. According to the temperature of the regeneration inlet, the working parameter of the humidifying device is adjusted, and the humidifying disc is controlled to run at the adjusted working parameter, so that the temperature of the humidifying disc is maintained in the preset temperature range, and the humidifying effect of the humidifying disc is ensured. In addition, the air flows out of the regeneration outlet after passing through the humidifying disc, and the temperature of the regeneration outlet reflects the temperature of the humidifying disc. Therefore, according to the temperature of the regeneration outlet, the working parameter of the humidifying device is adjusted, and the humidifying disc is controlled to run at the adjusted working parameter, so that the temperature of the humidifying disc is maintained in the preset temperature range, so that the temperature of the humidifying material in the humidifying disc is maintained in the specified temperature range, and the humidifying effect of the humidifying disc is ensured, and the energy consumption of the humidifying device is reduced.

[0072] In a specific embodiment, the control method includes:

[0073] obtaining the temperature of the regeneration inlet;

[0074] adjusting the working parameters of the humidifying device according to the temperature of the regeneration inlet, so that the working parameters of the humidifying device correspond to the temperature of the regeneration inlet;

[0075] controlling the humidifying device to operate at the adjusted working parameters to adjust the temperature of the humidifying disc to the preset temperature range.

[0076] In another specific embodiment, the control method comprises:

[0077] obtaining the temperature of the regeneration outlet;

[0078] adjusting the working parameters of the humidifying device according to the temperature of the regeneration outlet, so that the working parameters of the humidifying device correspond to the temperature of the regeneration outlet;

[0079] controlling the humidifying device to operate at the adjusted working parameters to adjust the temperature of the humidifying disc to the preset temperature range.

[0080] It can be understood that the operating environment parameter can also be other parameters besides the temperature of the regeneration inlet and the temperature of the regeneration outlet, such as the temperature of the moisture-absorbing material.

[0081] Optionally, the working parameters include one or more of the power of the heating device, the rotation speed of the driving device, and the rotation speed of the regeneration fan; and the step S102 of adjusting the working parameters of the humidifying device according to the temperature of the regeneration inlet and / or the temperature of the regeneration outlet comprises:

[0082] if the temperature of the regeneration inlet is greater than a first preset temperature or less than a second preset temperature, adjusting the power of the heating device until the temperature of the humidifying disc is within the preset temperature range, wherein the first preset temperature is greater than the second preset temperature, and any temperature value in the preset temperature range satisfies greater than the second preset temperature and less than the first preset temperature;

[0083] if the temperature of the regeneration inlet is greater than or equal to the second preset temperature and less than or equal to the first preset temperature, adjusting the rotation speed of the regeneration fan and / or the driving device until the temperature of the humidifying disc is within the preset temperature range.

[0084] The air is heated by the heating device after passing through the regeneration inlet. The air temperature can be changed by heating, so as to adjust the temperature of the humidifying disc. Compared with changing the rotation speed of the regeneration fan and / or the driving device, the power of the heating device has a greater impact on the temperature of the humidifying disc. Therefore, when the temperature of the regeneration inlet deviates from the preset temperature range by a large margin, i.e., when the temperature of the regeneration inlet is greater than the first preset temperature or less than the second preset temperature, adjusting the power of the heating device can more quickly adjust the temperature of the humidifying disc to be within the preset temperature range.

[0085] When the temperature of the regeneration inlet is greater than or equal to the second preset temperature and less than or equal to the first preset temperature, the speed of the regeneration fan and / or the speed of the driving device are adjusted, and since the adjustment of the speed of the regeneration fan and / or the speed of the driving device has a smaller change on the temperature of the humidifying turntable, the temperature of the humidifying turntable can be more accurately brought to the preset temperature range.

[0086] In step S102, the working parameters of the humidifying device are adjusted according to the temperature of the regeneration inlet and / or the temperature of the regeneration outlet, including:

[0087] If the temperature of the regeneration outlet is greater than the first preset temperature or less than the second preset temperature, the power of the heating device is adjusted until the temperature of the regeneration outlet is within the preset temperature range, wherein the first preset temperature is greater than the second preset temperature, and any temperature value in the preset temperature range satisfies greater than the second preset temperature and less than the first preset temperature.

[0088] If the temperature of the regeneration outlet is greater than or equal to the second preset temperature and less than or equal to the first preset temperature, the speed of the regeneration fan and / or the speed of the driving device are adjusted until the temperature of the regeneration outlet is within the preset temperature range.

[0089] The heating device heats the air to change the temperature of the air, and compared with the speed of the regeneration fan and / or the speed of the driving device, the power of the heating device has a greater and more direct influence on the temperature of the humidifying turntable, so when the temperature of the regeneration outlet deviates from the preset temperature range greatly, i.e., when the temperature of the regeneration outlet is greater than the first preset temperature or less than the second preset temperature, adjusting the power of the heating device can more quickly adjust the temperature of the humidifying turntable to be within the preset temperature range.

[0090] When the temperature of the regeneration outlet is greater than or equal to the second preset temperature and less than or equal to the first preset temperature, the speed of the regeneration fan and / or the speed of the driving device are adjusted, and since the adjustment of the speed of the regeneration fan and / or the speed of the driving device has a smaller change on the temperature of the humidifying turntable, the temperature of the humidifying turntable can be more accurately brought to the preset temperature range.

[0091] In one specific embodiment, as shown in FIG. 1, the control method comprises: Figure 2 As shown in FIG. 1, the control method comprises:

[0092] In step S201, the humidifying device obtains the temperature of the regeneration inlet and / or the temperature of the regeneration outlet.

[0093] In step S202, if the temperature of the regeneration outlet is greater than the first preset temperature or less than the second preset temperature, the humidifying device adjusts the power of the heating device until the temperature of the regeneration outlet is within the preset temperature range, wherein the first preset temperature is greater than the second preset temperature, and any temperature value in the preset temperature range satisfies greater than the second preset temperature and less than the first preset temperature.

[0094] Step S203, if the temperature of the regeneration outlet is greater than or equal to the second preset temperature and less than or equal to the first preset temperature, the humidifying device adjusts the rotation speed of the regeneration fan and / or the driving device until the temperature of the regeneration outlet is within the preset temperature range;

[0095] Step S204, the humidifying device controls its operation under the adjusted working parameters to adjust the temperature of the humidifying rotor to the preset temperature range.

[0096] Optionally, if the temperature of the regeneration inlet is greater than the first preset temperature or less than the second preset temperature, the power of the heating device is adjusted, including:

[0097] If the temperature of the regeneration inlet is greater than the first preset temperature, the power of the heating device is reduced;

[0098] If the temperature of the regeneration inlet is less than the second preset temperature, the power of the heating device is increased.

[0099] If the temperature of the regeneration inlet is greater than the first preset temperature, it means that the temperature of the regeneration inlet is too high, and the temperature of the air flowing from the regeneration inlet to the humidifying device is too high. Therefore, the power of the heating device is reduced to reduce the heat exchange between the air and the humidifying rotor, thereby reducing the temperature of the humidifying rotor and maintaining the temperature of the humidifying rotor within the preset temperature range.

[0100] If the temperature of the regeneration inlet is less than the second preset temperature, it means that the temperature of the regeneration inlet is too low, and the temperature of the air flowing from the regeneration inlet to the humidifying device is too low. Therefore, the power of the heating device is increased to increase the heat exchange between the air and the humidifying rotor, thereby increasing the temperature of the humidifying rotor and maintaining the temperature of the humidifying rotor within the preset temperature range.

[0101] Optionally, the rotation speed of the regeneration fan and / or the driving device is adjusted, including:

[0102] If it is necessary to adjust the rotation speed of the regeneration fan and the driving device at the same time, the rotation speed of the regeneration fan and the driving device is increased or decreased at the same proportion, i.e. the rotation speed of the regeneration fan and the rotation speed of the driving device are increased or decreased at the same proportion, for example, the rotation speed of the regeneration fan is increased by 10%, and the rotation speed of the driving device is also increased by 10%; or, the rotation speed of the regeneration fan is decreased by 10%, and the rotation speed of the driving device is also decreased by 10%.

[0103] The rotation speed of the regenerative fan affects the air volume passing through the humidifying rotating disc. The driving device is used to drive the humidifying rotating disc to rotate. Therefore, the rotation speed of the regenerative fan and the rotation speed of the driving device are increased or decreased in the same proportion, so that the rotation speed of the regenerative fan corresponds to the rotation speed of the driving device, that is, the air volume passing through the humidifying rotating disc corresponds to the rotation speed of the humidifying rotating disc, thereby avoiding the increase of energy consumption of the humidifying device and poor humidifying effect caused by the fact that the rotation speed of the regenerative fan does not correspond to the rotation speed of the driving device. Therefore, the rotation speed of the regenerative fan and the rotation speed of the driving device are increased or decreased in the same proportion in the application, so that the humidifying rotating disc can fully absorb moisture from the air or fully release moisture into the air under the premise of reducing the energy consumption of the humidifying device, thereby ensuring the humidifying effect.

[0104] Optionally, if the temperature of the regeneration inlet is greater than or equal to the second preset temperature and less than or equal to the first preset temperature, the rotation speed of the regenerative fan and / or the driving device is adjusted, comprising:

[0105] If the temperature of the regeneration inlet is greater than or equal to the second preset temperature and less than or equal to the third preset temperature, the rotation speed of the regenerative fan and / or the driving device is decreased until the temperature of the humidifying rotating disc is within the preset temperature range.

[0106] If the temperature of the regeneration inlet is greater than or equal to the fourth preset temperature and less than or equal to the first preset temperature, the rotation speed of the regenerative fan and / or the driving device is increased until the temperature of the humidifying rotating disc is within the preset temperature range, wherein the third preset temperature is less than the fourth preset temperature, and the temperature range greater than the third preset temperature and less than the fourth preset temperature corresponds to the humidifying rotating disc being within the preset temperature range.

[0107] If the temperature of the regeneration inlet is greater than or equal to the second preset temperature and less than or equal to the third preset temperature, it indicates that the temperature of the regeneration inlet is relatively low, and the temperature of the air flowing from the regeneration inlet to the humidifying rotating disc is relatively low. Therefore, the rotation speed of the regenerative fan can be reduced to reduce the air volume passing through the humidifying rotating disc, and / or the rotation speed of the driving device can be reduced to reduce the rotation speed of the humidifying rotating disc and reduce the heat exchange between the humidifying rotating disc and the air, thereby increasing the temperature of the humidifying rotating disc to the preset temperature range.

[0108] If the temperature of the regeneration inlet is greater than or equal to the fourth preset temperature and less than or equal to the first preset temperature, it indicates that the temperature of the regeneration inlet is relatively high, and the temperature of the air flowing from the regeneration inlet to the humidifying rotating disc is relatively high. Therefore, the rotation speed of the regenerative fan can be increased to increase the air volume passing through the humidifying device, and / or the rotation speed of the driving device can be increased to increase the rotation speed of the humidifying rotating disc and increase the heat exchange between the humidifying rotating disc and the air, thereby reducing the temperature of the humidifying rotating disc to the preset temperature range.

[0109] When the temperature of the regeneration outlet is greater than the first preset temperature or less than the second preset temperature, the power of the heating device is adjusted, including:

[0110] When the temperature of the regeneration outlet is greater than the first preset temperature or less than the second preset temperature, the power of the heating device is adjusted, including:

[0111] When the temperature of the regeneration outlet is greater than the first preset temperature, the power of the heating device is reduced.

[0112] When the temperature of the regeneration outlet is less than the second preset temperature, the power of the heating device is increased.

[0113] When the temperature of the regeneration outlet is greater than the first preset temperature, it indicates that the temperature of the humidifying disc is too high, and thus the power of the heating device is reduced to reduce the heat exchange between the air and the humidifying disc, to reduce the temperature of the humidifying disc, and to maintain the temperature of the humidifying disc within the preset temperature range.

[0114] When the temperature of the regeneration outlet is less than the second preset temperature, it indicates that the temperature of the humidifying disc is too low, and thus the power of the heating device is increased to increase the heat exchange between the air and the humidifying disc, to increase the temperature of the humidifying disc, and to maintain the temperature of the humidifying disc within the preset temperature range.

[0115] Optionally, when the temperature of the regeneration outlet is greater than or equal to the second preset temperature and less than or equal to the first preset temperature, the rotation speed of the regeneration fan and / or the driving device is adjusted, including:

[0116] When the temperature of the regeneration outlet is greater than or equal to the second preset temperature and less than or equal to the third preset temperature, the rotation speed of the regeneration fan and / or the driving device is reduced until the temperature of the humidifying disc is within the preset temperature range;

[0117] When the temperature of the regeneration outlet is greater than or equal to the fourth preset temperature and less than or equal to the first preset temperature, the rotation speed of the regeneration fan and / or the driving device is increased until the temperature of the humidifying disc is within the preset temperature range, wherein the third preset temperature is less than the fourth preset temperature, and the temperature of the humidifying disc is within the preset temperature range when the temperature of the regeneration outlet is within a temperature range greater than the third preset temperature and less than the fourth preset temperature.

[0118] If the temperature of the regeneration outlet is greater than or equal to the second preset temperature and less than or equal to the third preset temperature, it indicates that the temperature of the regeneration outlet is relatively low, the temperature of the air flowing into the regeneration outlet from the humidifying disc is relatively low, and thus the rotation speed of the regeneration fan can be reduced, the air volume flowing through the humidifying disc can be reduced, and / or the rotation speed of the driving device can be reduced, the rotation speed of the humidifying disc can be reduced, the heat exchange between the humidifying disc and the air can be reduced, and the temperature of the humidifying disc can be increased to the preset temperature range.

[0119] If the temperature of the regeneration outlet is greater than or equal to the fourth preset temperature and less than or equal to the first preset temperature, it indicates that the temperature of the regeneration outlet is relatively high, the temperature of the air flowing into the regeneration outlet from the humidifying disc is relatively high, and thus the rotation speed of the regeneration fan can be increased, the air volume flowing through the humidifying device can be increased, and / or the rotation speed of the driving device can be increased, the rotation speed of the humidifying disc can be increased, the heat exchange between the humidifying disc and the air can be increased, and the temperature of the humidifying disc can be reduced to the preset temperature range.

[0120] When the temperature of the regeneration outlet is in the temperature range greater than the third preset temperature and less than the fourth preset temperature, the current working parameters of the humidifying device, including the power of the heating device, the rotation speed of the regeneration fan and the rotation speed of the driving device, can be maintained unchanged to enable the humidifying disc to be in the preset temperature range.

[0121] In one specific embodiment, the control method comprises:

[0122] The temperature T1 of the regeneration outlet is obtained and compared with a preset value T;

[0123] If T1 > 1.2T, the power of the heating device is reduced by 10%;

[0124] If T1 < 0.8T, the power of the heating device is increased by 10%;

[0125] If 0.8T ≤ T ≤ 1.2T, the power of the heating device is maintained unchanged;

[0126] If 1.1T < T1 < 1.2T, the rotation speed of the driving device is increased by 10% and the rotation speed of the regeneration fan is increased by 10%;

[0127] If 0.8T < T < 0.9T, the rotation speed of the driving device is reduced by 10% and the rotation speed of the regeneration fan is reduced by 10%;

[0128] If 0.9T ≤ T ≤ 1.1T, the rotation speed of the driving device, the rotation speed of the regeneration fan and the power of the heating device are maintained unchanged, and the humidifying disc is in the preset temperature range at this time.

[0129] In another specific embodiment, the control method comprises:

[0130] The temperature T1 of the regeneration inlet is obtained and compared with a preset value T;

[0131] If T1> 1.2T, the power of the heating device is reduced by 10%;

[0132] If T1< 0.8T, the power of the heating device is increased by 10%;

[0133] If 0.8T≤T≤1.2T, the power of the heating device remains unchanged;

[0134] If 1.1T<T1<1.2T, the rotation speed of the driving device is increased by 10%, and the rotation speed of the regenerative fan is increased by 10%;

[0135] If 0.8T<T<0.9T, the rotation speed of the driving device is reduced by 10%, and the rotation speed of the regenerative fan is reduced by 10%;

[0136] If 0.9T≤T≤1.1T, the rotation speed of the driving device, the rotation speed of the regenerative fan and the power of the heating device remain unchanged, and at this time the humidifying turntable is located in the preset temperature range.

[0137] In combination Figure 3 As shown in the accompanying drawings, the embodiments of the present disclosure provide a control device for a humidifying device, the humidifying device comprising a humidifying turntable and a heating device, the heating device comprising first and second heating devices corresponding to different regions of the humidifying turntable respectively, the first and second heating devices being opened alternatively, wherein the air inlet and air outlet corresponding to the first heating device are the regeneration inlet and regeneration outlet respectively when the first heating device is opened, and the air inlet and air outlet corresponding to the second heating device are the regeneration inlet and regeneration outlet respectively when the second heating device is opened, the control device comprising a temperature acquisition module 801, a parameter adjustment module 802 and a running control module 803.

[0138] The temperature acquisition module is configured to acquire the temperature of the regeneration inlet and / or the temperature of the regeneration outlet;

[0139] The parameter adjustment module is configured to adjust the working parameters of the humidifying device according to the temperature of the regeneration inlet and / or the temperature of the regeneration outlet;

[0140] The running control module is configured to control the humidifying device to run under the adjusted working parameters to adjust the temperature of the humidifying turntable to the preset temperature range.

[0141] In combination Figure 5As shown, the embodiment of the present disclosure provides a control device for a humidifying device, which comprises a processor 1000 and a memory 1010. Optionally, the device can further comprise a communication interface 1020 and a bus 1030. The processor 1000, the communication interface 1020 and the memory 1010 can communicate with each other through the bus 1030. The communication interface 1020 can be used for information transmission. The processor 1000 can call the logical instructions in the memory 1010 to execute the control method for the humidifying device in the above-mentioned embodiment.

[0142] In addition, the logical instructions in the memory 1010 described above can be realized in the form of a software functional unit and sold or used as an independent product, which can be stored in a computer readable storage medium.

[0143] The memory 1010 as a computer readable storage medium can be used to store software programs, computer executable programs, such as program instructions / modules corresponding to the method in the embodiment of the present disclosure. The processor 1000 executes the program instructions / modules stored in the memory 1010, thereby performing functional applications and data processing, i.e. realizing the control method for the humidifying device in the above-mentioned embodiment.

[0144] The memory 1010 can include a program storage area and a data storage area, wherein the program storage area can store an operating system and application programs required by at least one function; the data storage area can store data created according to the use of the terminal device, etc. In addition, the memory 1010 can include a high-speed random access memory, and can also include a non-volatile memory.

[0145] The embodiment of the present disclosure provides a humidifying device comprising the control device for the humidifying device described above.

[0146] The embodiment of the present disclosure provides a computer readable storage medium, which stores computer executable instructions, and the computer executable instructions are configured to execute the control method for the humidifying device described above.

[0147] The embodiment of the present disclosure provides a computer program product, which comprises a computer program stored on a computer readable storage medium, and the computer program comprises program instructions, when the program instructions are executed by a computer, the computer executes the control method for the humidifying device described above.

[0148] The computer readable storage medium described above can be a transitory computer readable storage medium or a non-transitory computer readable storage medium.

[0149] The technical solutions of the embodiments of the present disclosure can be embodied in the form of a software product. The computer software product is stored in a storage medium and includes one or more instructions for causing a computer device (which can be a personal computer, a server, or a network device, etc.) to execute all or part of the steps of the method disclosed in the embodiments of the present disclosure. The aforementioned storage medium can be a non-transitory storage medium, including: a U disk, a mobile hard disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk or an optical disk, and various media that can store program codes, and can also be a transitory storage medium.

[0150] The above description and drawings sufficiently illustrate the embodiments of the present disclosure to enable one skilled in the art to practice them. Other embodiments can include structural, logical, electrical, process, and other changes. The embodiments represent only a few of the possible variations. Individual components and functions are optional unless explicitly required, and the order of operations can be changed. Parts and features of some embodiments can be included in or replace parts and features of other embodiments. Also, the words used in this application are used only to describe the embodiments and not to limit the claims. As used in the description of the embodiments and the claims, unless the context clearly requires otherwise, the singular forms "a," "an," and "the" are intended to include the plural forms as well. Similarly, the term "and / or" as used in this application refers to any and all possible combinations of one or more associated listed items. In addition, when used in this application, the term "comprise" and its variations "comprises" and / or comprises" and the like mean the presence of the stated features, integers, steps, operations, elements, and / or components, but do not exclude the presence or addition of one or more other features, integers, steps, operations, elements, components, and / or groups thereof. Without more limitations, the element defined by the phrase "comprising a" does not exclude the presence of additional identical elements in the process, method, or device including the stated element. In this document, each embodiment focuses on the differences from other embodiments, and the same or similar parts between embodiments can be referred to each other. For the method, product, etc. disclosed in the embodiments, if it corresponds to the method part disclosed in the embodiments, the relevant part can be referred to the description of the method part.

[0151] Those skilled in the art can understand that the units and algorithm steps of each example described in combination with the embodiments disclosed herein can be realized by electronic hardware or a combination of computer software and electronic hardware. Whether the functions are realized in hardware or software depends on the specific application and design constraints of the technical solution. The skilled person can use different methods for each specific application to realize the described functions, but such implementation should not be considered beyond the scope of the embodiments of the present disclosure. The skilled person can clearly understand that, for the convenience and brevity of description, the specific working processes of the above-described system, device and unit can refer to the corresponding processes in the foregoing method embodiments, which will not be repeated here.

[0152] In the embodiments disclosed herein, the disclosed methods, products (including but not limited to devices, equipment, etc.) can be implemented in other ways. For example, the above-described device embodiments are only schematic, for example, the division of the units can only be a logical function division, and actual implementation can have another division manner, for example, a plurality of units or components can be combined or integrated into another system, or some features can be ignored or not executed. In addition, the coupling or direct coupling or communication connection between the units shown or discussed can be indirect coupling or communication connection through some interface, device or unit, and can be electrical, mechanical or other forms. The units described as separate components can or can not be physically separate, and the components shown as units can or can not be physical units, that is, they can be located in one place, or can be distributed on a plurality of network units. Part or all of the units can be selected according to actual needs to implement the embodiments. In addition, each functional unit in the embodiments of the present disclosure can be integrated in one processing unit, or each unit can be a physically independent unit, or two or more units can be integrated in one unit.

[0153] The computer program instructions can also be loaded onto a computer, other programmable data processing apparatus, or other processing device to cause a series of operational steps to be performed on the computer, other programmable apparatus or other processing device to produce a computer implemented process such that the instructions which execute on the computer or other programmable apparatus provide processes for implementing the functions / acts specified in the flowchart and / or block diagram block or blocks.

Claims

1. A control method for a humidity control device, characterized by, The method comprises: acquiring an operating environment parameter of the humidifying device; adjusting a working parameter of the humidifying device according to the operating environment parameter; controlling the humidifying device to operate under the adjusted working parameter to adjust the temperature of the humidifying rotating disc to a preset temperature range; the humidifying device comprises a humidifying rotating disc and a heating device, the heating device comprises a first heating device and a second heating device corresponding to different regions of the humidifying rotating disc, and the first heating device and the second heating device are opened alternatively; the humidifying device further comprises a driving device, a first fan and a second fan, the driving device is connected with the humidifying rotating disc and is used to drive the rotation of the humidifying rotating disc, the first fan corresponds to the first heating device, the second fan corresponds to the second heating device, the air inlet and the air outlet corresponding to the first heating device are a regeneration inlet and a regeneration outlet respectively when the first heating device is opened, and the first fan is a regeneration fan; the air inlet and the air outlet corresponding to the second heating device are a regeneration inlet and a regeneration outlet respectively when the second heating device is opened, and the second fan is a regeneration fan; the operating environment parameter comprises the temperature of the regeneration inlet and / or the temperature of the regeneration outlet; the working parameter comprises one or more of the power of the heating device, the rotating speed of the driving device and the rotating speed of the regeneration fan; the adjustment of the working parameter of the humidifying device according to the operating environment parameter comprises: if the temperature of the regeneration inlet is greater than a first preset temperature or less than a second preset temperature, the power of the heating device is adjusted until the temperature of the humidifying rotating disc is within the preset temperature range, wherein the first preset temperature is greater than the second preset temperature, and any temperature value in the preset temperature range satisfies the condition of being greater than the second preset temperature and less than the first preset temperature; if the temperature of the regeneration inlet is greater than or equal to the second preset temperature and less than or equal to the first preset temperature, the rotating speed of the regeneration fan and / or the driving device is adjusted until the temperature of the humidifying rotating disc is within the preset temperature range; if the temperature of the regeneration outlet is greater than a first preset temperature or less than a second preset temperature, the power of the heating device is adjusted until the temperature of the humidifying rotating disc is within the preset temperature range, wherein the first preset temperature is greater than the second preset temperature, and any temperature value in the preset temperature range satisfies the condition of being greater than the second preset temperature and less than the first preset temperature; if the temperature of the regeneration outlet is greater than or equal to the second preset temperature and less than or equal to the first preset temperature, the rotating speed of the regeneration fan and / or the driving device is adjusted until the temperature of the humidifying rotating disc is within the preset temperature range.

2. The control method for a humidity control device according to claim 1, wherein the adjustment of the power of the heating device when the temperature of the regeneration inlet is greater than the first preset temperature or less than the second preset temperature comprises: if the temperature of the regeneration inlet is greater than the first preset temperature, the power of the heating device is reduced; if the temperature of the regeneration inlet is less than the second preset temperature, the power of the heating device is increased.

3. The control method for a humidity control device according to claim 1, wherein The adjusting the rotating speed of the regenerative fan and / or the driving device comprises: If it is required to simultaneously adjust the rotating speed of the regenerative fan and the driving device, the rotating speed of the regenerative fan and the driving device is increased or decreased in the same proportion.

4. The control method for a humidity control device according to claim 1, wherein The adjusting the rotating speed of the regenerative fan and / or the driving device comprises: If the temperature of the regenerative inlet is greater than or equal to the second preset temperature and less than or equal to a third preset temperature, the rotating speed of the regenerative fan and / or the driving device is decreased; If the temperature of the regenerative inlet is greater than or equal to a fourth preset temperature and less than or equal to the first preset temperature, the rotating speed of the regenerative fan and / or the driving device is increased, wherein the third preset temperature is less than the fourth preset temperature, and the temperature range greater than the third preset temperature and less than the fourth preset temperature corresponds to the humidifying turntable being located in the preset temperature range.

5. The control method for a humidity control device according to any one of claims 1 to 4, characterized in that, The adjusting the rotating speed of the regenerative fan and / or the driving device comprises: If the temperature of the regenerative outlet is greater than the first preset temperature, the power of the heating device is increased; If the temperature of the regenerative outlet is less than the second preset temperature, the power of the heating device is decreased.

6. The control method for the humidifying device according to any one of claims 1 to 4, wherein The adjusting the rotating speed of the regenerative fan and / or the driving device comprises: If the temperature of the regenerative outlet is greater than or equal to the second preset temperature and less than or equal to a third preset temperature, the rotating speed of the regenerative fan and / or the driving device is decreased; If the temperature of the regenerative outlet is greater than or equal to a fourth preset temperature and less than or equal to the first preset temperature, the rotating speed of the regenerative fan and / or the driving device is increased, wherein the third preset temperature is less than the fourth preset temperature, and the temperature range greater than the third preset temperature and less than the fourth preset temperature corresponds to the humidifying turntable being located in the preset temperature range.

7. A control device for a humidity control device, characterized in that comprise: a parameter acquisition module configured to acquire an operating environment parameter of the humidifying device; a parameter adjustment module configured to adjust a working parameter of the humidifying device according to the operating environment parameter; a running control module configured to control the humidifying device to run under the adjusted working parameter, so as to adjust the temperature of the humidifying turntable to a preset temperature range. The humidifying device comprises a humidifying rotating disc and a heating device, the heating device comprises a first heating device and a second heating device corresponding to different areas of the humidifying rotating disc respectively, the first heating device and the second heating device are opened alternatively; the humidifying device further comprises a driving device, a first fan and a second fan, the driving device is connected with the humidifying rotating disc and used to drive the humidifying rotating disc to rotate, the first fan corresponds to the first heating device, the second fan corresponds to the second heating device, when the first heating device is opened, the air inlet and the air outlet corresponding to the first heating device are a regeneration inlet and a regeneration outlet respectively, and the first fan is a regeneration fan; when the second heating device is opened, the air inlet and the air outlet corresponding to the second heating device are a regeneration inlet and a regeneration outlet respectively, and the second fan is a regeneration fan; The operating environment parameters comprise the temperature of the regeneration inlet and / or the temperature of the regeneration outlet; The working parameters comprise one or more of the power of the heating device, the rotating speed of the driving device and the rotating speed of the regeneration fan; the parameter adjustment module is further configured to: if the temperature of the regeneration inlet is greater than a first preset temperature or less than a second preset temperature, adjust the power of the heating device until the temperature of the humidifying rotating disc is within the preset temperature range, wherein the first preset temperature is greater than the second preset temperature, and any temperature value in the preset temperature range satisfies greater than the second preset temperature and less than the first preset temperature; if the temperature of the regeneration inlet is greater than or equal to the second preset temperature and less than or equal to the first preset temperature, adjust the rotating speed of the regeneration fan and / or the driving device until the temperature of the humidifying rotating disc is within the preset temperature range; if the temperature of the regeneration outlet is greater than a first preset temperature or less than a second preset temperature, adjust the power of the heating device until the temperature of the humidifying rotating disc is within the preset temperature range, wherein the first preset temperature is greater than the second preset temperature, and any temperature value in the preset temperature range satisfies greater than the second preset temperature and less than the first preset temperature; if the temperature of the regeneration outlet is greater than or equal to the second preset temperature and less than or equal to the first preset temperature, adjust the rotating speed of the regeneration fan and / or the driving device until the temperature of the humidifying rotating disc is within the preset temperature range.

8. A control device for a humidification apparatus, comprising a processor and a memory having stored program instructions, characterized in that, The processor is configured to execute the program instructions to execute the control method for the humidifying device as claimed in any one of claims 1 to 6.

9. A humidifying device, characterized by The control device for the humidifying device as claimed in claim 7 or 8. The processor is configured to execute the program instructions to execute the control method for the humidifying device as claimed in any one of claims 1 to 6.

Citation Information

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