Dehumidifier with separated drainage of water tank
By designing mobile components and drainage structures in the dehumidifier, the automatic drainage of the dehumidifier is achieved, solving the problem that existing dehumidifiers require manual movement and dumping of drainage, and improving the convenience and reliability of use.
Patent Information
- Application Number
- CN202421566604.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-03
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2034-07-03
AI Technical Summary
The existing dehumidifiers need to be manually moved and poured and drained when the water storage tank is full, which can easily lead to overflow and sprinkle water, making it inconvenient to use.
A dehumidifier for separating and draining water tanks is designed. The water tank module is automatically moved to the drainage position through the moving components, and the drainage structure is used to automatically discharge the liquid in the water storage chamber to achieve automatic drainage without manual operation.
The automatic drainage of the dehumidifier is realized, which reduces the time and labor intensity of manual operation, and improves the convenience and reliability of use.
Smart Images

Figure CN222865095U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of dehumidification equipment, in particular to a dehumidifier with a water tank separation and drainage. Background Art
[0002] There are many kinds of dehumidifiers on the market. Their working principle is basically to achieve the effect of indoor dehumidification by condensing water molecules in the air into liquid water and discharging it. Therefore, a water storage tank needs to be set in the existing dehumidifier, and the condensed water formed by the dehumidification module needs to be stored in the water storage tank first. After the dehumidifier has been running for a period of time, the water stored in the water storage tank is close to full load. The user needs to move the dehumidifier to the drain position to dump out the stored water, otherwise the accumulated water in the water storage tank is at risk of overflowing. However, the user needs to always pay attention to the amount of water stored in the water storage tank, and the accumulated water is easy to spill during the dumping process, which is time-consuming and labor-intensive, and it is difficult to meet the user's usage needs. Utility Model Content
[0003] The utility model aims to solve at least one of the technical problems existing in the prior art. To this end, the utility model provides a dehumidifier with a water tank separation and drainage, which is automatic in drainage and convenient and reliable in use.
[0004] According to the first aspect of the utility model, a dehumidifier with separated water tank and drainage comprises: a dehumidification shell, in which a dehumidification module is arranged, and the dehumidification shell is provided with a water outlet corresponding to the dehumidification module; a water tank module, in which a water storage chamber is arranged, and the water tank module is provided with a moving component, and the moving component is used to drive the water tank module to move, and the water tank module is provided with a water receiving part connected with the water storage chamber, and the water receiving part can be detachably docked with the water outlet so that the liquid output by the water outlet is stored in the water storage chamber, and the water tank module is provided with a drainage structure connected with the water storage chamber, and the drainage structure is used to discharge the liquid in the water storage chamber.
[0005] A dehumidifier with a water tank separation and drainage according to an embodiment of the utility model has at least the following beneficial effects:
[0006] The utility model discloses a dehumidifier with a separated water tank and drainage. The dehumidification module can dehumidify the air in the environment when it is running. The water inlet on the water tank module can be connected with the water outlet. The condensed water formed by the dehumidification module can flow to the water storage chamber through the water outlet for storage. When the water storage in the water storage chamber reaches a certain level, the moving component can drive the water tank module to move. The water inlet of the water tank module is separated from the water outlet of the dehumidification shell. The water tank module is driven by the moving component to move to a suitable drainage position alone. The drainage structure is then opened to discharge the liquid in the water storage chamber. The design automatically drains water without manual operation. It is convenient and reliable to use.
[0007] According to some embodiments of the utility model, a storage groove is arranged below the dehumidification shell, the water outlet is arranged on the top surface of the storage groove, the water receiving part is arranged on the top of the water tank module, and the water tank module can enter the storage groove.
[0008] According to some embodiments of the utility model, a water collecting chamber is arranged in the dehumidification shell, and the water collecting chamber corresponds to the dehumidification module so that the liquid output by the dehumidification module is stored in the water collecting chamber, and the water outlet is arranged corresponding to the water collecting chamber so as to be able to discharge the liquid in the water collecting chamber.
[0009] According to some embodiments of the utility model, a first control module and a water level detection module are provided in the water tank module. The water level detection module is used to detect the water level information of the water storage chamber. The first control module is respectively connected to the water level detection module and the moving component. The first control module controls the moving component to start running according to the water level information.
[0010] According to some embodiments of the utility model, a second control module is arranged in the dehumidification shell; wherein, the second control module is connected with the dehumidification module so as to be able to control the dehumidification module to start or stop the dehumidification action; or, a water collecting chamber is arranged in the dehumidification shell, and the water collecting chamber corresponds to the dehumidification module so that the liquid output by the dehumidification module is stored in the water collecting chamber, and the water outlet is provided with a first electrically-controlled valve, and the first electrically-controlled valve is connected with the water collecting chamber so as to be able to output the liquid in the water collecting chamber when the first electrically-controlled valve is opened, and the second control module is connected with the first electrically-controlled valve to control the first electrically-controlled valve to be opened or closed.
[0011] According to some embodiments of the utility model, a first wireless communication module is provided in the water tank module, a second wireless communication module is provided in the dehumidification shell, the first control module is connected to the first wireless communication module, the second control module is connected to the second wireless communication module, the first wireless communication module can communicate wirelessly with the second wireless communication module, and the second control module can control the dehumidification module to stop the dehumidification action or control the first electric control valve to close according to the water level information.
[0012] According to some embodiments of the utility model, a water collecting chamber is provided in the dehumidification shell, and the water collecting chamber corresponds to the dehumidification module so that the liquid output by the dehumidification module is stored in the water collecting chamber, and the water outlet portion includes a water outlet connected to the water collecting chamber and an induction driven valve, and the induction driven valve is arranged at the water outlet, and a matching piece is provided on the water tank module, and when the induction driven valve is coupled with the matching piece, the induction driven valve can be opened to output the liquid in the water collecting chamber.
[0013] According to some embodiments of the utility model, a distance measurement detection module is provided on the water tank module, and the distance measurement detection module is used to detect the distance information between the water tank module and surrounding objects. The first control module is connected to the distance measurement detection module to control the movement of the mobile component according to the distance information.
[0014] According to some embodiments of the present utility model, the drainage structure includes a nozzle component disposed on the water tank module, and the nozzle component is connected to the water storage chamber to utilize the liquid in the water storage chamber for spraying.
[0015] According to some embodiments of the present invention, the spray head component is arranged on the top of the water tank module and the spraying direction of the spray head component is inclined upward.
[0016] Additional aspects and advantages of the present invention will be given in part in the following description, and in part will become apparent from the following description, or will be learned through the practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] The above and / or additional aspects and advantages of the present invention will become apparent and easily understood from the description of the embodiments in conjunction with the following drawings, in which:
[0018] Figure 1 It is a three-dimensional schematic diagram of one embodiment of the dehumidifier of the utility model;
[0019] Figure 2 This is an exploded view of one embodiment of the dehumidifier of the utility model;
[0020] Figure 3 This is a schematic diagram of the bottom structure of the water tank module;
[0021] Figure 4 for Figure 1 A schematic diagram of section AA of one embodiment of the dehumidifier of the present invention.
[0022] Figure 5 This is a principle structural block diagram of one embodiment of the dehumidifier of the utility model.
[0023] Reference numerals:
[0024] Dehumidification housing 100; dehumidification module 110; water collecting chamber 120; water outlet 130; storage tank 140; second control module 150; second wireless communication module 160; first electric control valve 170; water tank module 200; water storage chamber 210; water inlet 220; first control module 230; first wireless communication module 240; distance measurement detection module 250; water level detection module 260; second electric control valve 270; nozzle component 280; moving component 300; fixed roller 310; movable roller 320. DETAILED DESCRIPTION
[0025] The embodiments of the present invention are described in detail below, and examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention, and cannot be understood as limiting the present invention.
[0026] In the description of the present invention, it should be understood that descriptions involving orientation, such as the orientations or positional relationships indicated by terms such as "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside" and "outside", etc., are based on the orientations or positional relationships shown in the accompanying drawings and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present invention.
[0027] In the description of the present utility model, "several" means one or more, "more" means more than two, "greater than", "less than", "exceed" etc. are understood to exclude the number itself, and "above", "below", "within" etc. are understood to include the number itself. If there is a description of "first" or "second", it is only used for the purpose of distinguishing the technical features, and cannot be understood as indicating or implying the relative importance or implicitly indicating the number of the indicated technical features or implicitly indicating the order of the indicated technical features.
[0028] In the description of the present invention, it should be noted that, unless otherwise clearly specified and limited, the terms "installation", "connection" and "connection" should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection, or it can be indirectly connected through an intermediate medium, or it can be the internal communication of two components. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.
[0029] like Figure 1-Figure 5As shown, a dehumidifier with a water tank separation and drainage according to an embodiment of the first aspect of the utility model includes a dehumidification shell 100 and a water tank module 200, a dehumidification module 110 is arranged inside the dehumidification shell 100, the dehumidification shell 100 is provided with a water outlet corresponding to the dehumidification module 110, a water storage chamber 210 is arranged inside the water tank module 200, the water tank module 200 is provided with a moving component 300, the moving component 300 is used to drive the water tank module 200 to move, the water tank module 200 is provided with a water receiving part connected to the water storage chamber 210, the water receiving part can be detachably docked with the water outlet so that the liquid output by the water outlet is stored in the water storage chamber 210, the water tank module 200 is provided with a drainage structure connected to the water storage chamber 210, and the drainage structure is used to discharge the liquid in the water storage chamber 210.
[0030] Among them, the dehumidification shell 100 can be a conventional rectangular, cylindrical, spherical or other shell. The dehumidification shell 100 has an air duct for accommodating the dehumidification module 110. The dehumidification shell 100 is provided with an air inlet and an air outlet connected to the air duct. A fan can be provided in the air duct. The fan is used to guide the external air flow into the air duct from the air inlet. The dehumidification module 110 can dehumidify the water vapor in the air flow and then discharge it to the outside through the air outlet.
[0031] The dehumidification module 110 can be a semiconductor dehumidification component, a compressor dehumidification component, a rotary dehumidification component, a physical material dehumidification component, etc., wherein the semiconductor dehumidification component can include a semiconductor refrigeration plate. When the wind flow contacts the cooling surface of the semiconductor refrigeration plate, the water vapor will condense on the cooling surface and condense into water droplets.
[0032] The compressor dehumidification component adopts the conventional compressor refrigeration principle. The refrigerant absorbs heat through the evaporator tube, and the heat exchanger connected to the evaporator tube can cool the airflow, so that water vapor will condense into water droplets on the surface of the heat exchanger.
[0033] The rotary dehumidification component uses molecular sieve hygroscopic material to form the rotor. When the airflow passes through the molecular sieve holes of the rotor, water vapor will be adsorbed on the rotor. As the rotor rotates, part of the rotor will pass through the blowing area of the hot air blower. The high temperature causes the water vapor in the molecular sieve to precipitate, and then condense into water droplets on the surface with lower temperature.
[0034] The water outlet is usually located below the condensed water collection position of the dehumidification module 110 so that the condensed water can be discharged from the water outlet.
[0035] Among them, the water outlet part usually includes at least a water outlet 130, and the water receiving part usually includes at least a water receiving port 220. The water outlet 130 is located above the water receiving port 220. The moving component 300 drives the water tank module 200 to move. When the water outlet 130 is directly opposite or butted against the water receiving port 220, the water condensed by the dehumidification module 110 can drip into the water storage chamber 210.
[0036] like Figure 3 As shown, the moving component 300 may include a roller group arranged at the bottom of the water tank module 200, and the roller group may include two fixed rollers 310 and a movable roller 320. The two fixed rollers 310 and the movable roller 320 are both rotatably arranged at the bottom of the water tank module 200, and the movable roller 320 can also rotate along a rotation axis perpendicular to the ground, thereby changing the forward direction of the water tank module 200.
[0037] The utility model discloses a dehumidifier with a separated water tank and drainage. The dehumidification module 110 can dehumidify the air in the environment when it is running. The water receiving part on the water tank module 200 can be connected with the water outlet part. The condensed water formed by the dehumidification module 110 can flow to the water storage chamber 210 through the water outlet part for storage. When the water storage in the water storage chamber 210 reaches a certain level, the moving component 300 can drive the water tank module 200 to move. The water receiving part of the water tank module 200 is separated from the water outlet part of the dehumidification shell 100. The water tank module 200 is driven by the moving component 300 to move to a suitable drainage position alone. The drainage structure is then opened to discharge the liquid in the water storage chamber 210. The present design automatically drains water without manual operation. It is convenient and reliable to use.
[0038] In some embodiments of the present invention, Figure 2 , 4 As shown, a storage tank 140 is arranged below the dehumidification shell 100, the water outlet is arranged on the top surface of the storage tank 140, the water receiving part is arranged on the top of the water tank module 200, and the water tank module 200 can enter the storage tank 140.
[0039] The dehumidification shell 100 is placed vertically on the ground, and the water tank module 200 can be moved on the ground. A storage groove 140 is arranged under the dehumidification shell 100, and the water tank module 200 can enter the storage groove 140 during the movement. The water receiving part is located at the top of the water tank module 200, and the water outlet part is arranged on the top surface of the storage groove 140. Therefore, after the water tank module 200 enters the storage groove 140, the water receiving part can be connected with the water outlet part to realize the storage of condensed water in the water storage chamber 210.
[0040] In some embodiments of the present invention, Figure 5As shown, the water tank module 200 is provided with a first control module 230 and a water level detection module 260, the water level detection module 260 is used to detect the water level information of the water storage chamber 210, the first control module 230 is respectively connected to the water level detection module 260 and the moving component 300, and the first control module 230 controls the moving component 300 to start running according to the water level information.
[0041] The first control module 230 can be selected from the MCU or the CPU and its associated circuits. The water level detection module 260 can be a capacitive water level sensor, a float water level sensor, a photosensitive detection sensor, etc. The water level detection module 260 is set in the water storage chamber 210 to detect the water level information in the water storage chamber 210. When the water level is too high, the first control module 230 can control the moving component 300 to start and go to the drainage area for drainage. Timely drainage can prevent the accumulated water in the water storage chamber 210 from overflowing.
[0042] Among them, during the initial setting, the user can first place the dehumidifier in the dehumidification position, and then set the origin position in the first control module 230, and then the user moves the water tank module 200 to the drainage area and sets the drainage position. The first control module 230 records the origin position and the drainage position, and records and plans the moving path during the movement. When the water level is too high, the first control module 230 controls the movement component 300 to operate according to the recorded moving path, thereby moving the water tank module 200 from the origin position to the drainage position.
[0043] Specifically, the first control module 230 may control the fixed roller 310 and the movable roller 320 to rotate through a plurality of motors.
[0044] In some embodiments of the present invention, Figure 4 As shown, a water collecting chamber 120 is provided in the dehumidification shell 100, and the water collecting chamber 120 corresponds to the dehumidification module 110 so that the liquid output by the dehumidification module 110 is stored in the water collecting chamber 120, and the water outlet is provided corresponding to the water collecting chamber 120 so as to be able to discharge the liquid in the water collecting chamber 120.
[0045] The water collecting chamber 120 can first collect the condensed water of the dehumidification module 110, and then discharge it into the water storage chamber 210 through the water outlet. When the water tank module 200 moves to the drainage area, the water outlet is closed, and the dehumidification module 110 can still continue to operate the dehumidification. The condensed water can be first stored in the water collecting chamber 120. After the water tank module 200 completes drainage and the water receiving part and the water outlet are docked again, the water in the water collecting chamber 120 can be discharged into the water storage chamber 210.
[0046] In some embodiments of the present invention, Figure 5As shown, a second control module 150 is arranged in the dehumidification shell 100; wherein, the second control module 150 is connected with the dehumidification module 110 so as to be able to control the dehumidification module 110 to start or stop the dehumidification action; or, a water collecting chamber 120 is arranged in the dehumidification shell 100, and the water collecting chamber 120 corresponds to the dehumidification module 110 so that the liquid output by the dehumidification module 110 is stored in the water collecting chamber 120, and the water outlet is provided with a first electric-controlled valve 170, and the first electric-controlled valve 170 is connected with the water collecting chamber 120 so as to be able to output the liquid in the water collecting chamber 120 when the first electric-controlled valve 170 is opened, and the second control module 150 is connected with the first electric-controlled valve 170 to control the first electric-controlled valve 170 to be opened or closed.
[0047] Among them, the second control module 150 can be selected in the MCU or CPU and its affiliated circuits. When there is too much water in the water storage chamber 210 and the water tank module 200 moves away to drain water, the second control module 150 can control the dehumidification module 110 to stop running, thereby stopping the generation of condensed water and preventing the condensed water from dripping to the outside through the water outlet.
[0048] Alternatively, the water outlet part includes a water outlet 130 connected to the water collecting chamber 120, and the first electrically controlled valve 170 is arranged at the water outlet 130. When the first electrically controlled valve 170 is opened, the liquid in the water collecting chamber 120 will be discharged from the water outlet 130, and when the first electrically controlled valve 170 is closed, the liquid at the water outlet 130 is cut off from being output. Similarly, after the water tank module 200 moves away for drainage, the first electrically controlled valve 170 can be closed to prevent condensed water from dripping to the outside through the water outlet part.
[0049] In some embodiments of the present utility model, a first wireless communication module 240 is provided in the water tank module 200, and a second wireless communication module 160 is provided in the dehumidification shell 100, the first control module 230 is connected to the first wireless communication module 240, and the second control module 150 is connected to the second wireless communication module 160, the first wireless communication module 240 can communicate wirelessly with the second wireless communication module 160, and the second control module 150 can control the dehumidification module 110 to stop the dehumidification action or control the first electric control valve 170 to close according to the water level information.
[0050] The first wireless communication module 240 and the second wireless communication module 160 can both use Bluetooth chips, Wi-Fi chips and 4G / 5G mobile communication chips that can be paired with each other. When the water level detection module 260 detects that the water level is too high, the first control module 230 can send the water level information to the second control module 150 through the first wireless communication module 240 and the second wireless communication module 160. The second control module 150 can know that the water tank module 200 needs to leave and go to the drainage area according to the water level information. The second control module 150 will control the dehumidification module 110 to stop the dehumidification action or control the first electric control valve 170 to close.
[0051] In some embodiments of the utility model, it is unnecessary to set the water level detection module 260. Instead, a timing module is set in the dehumidification shell 100. The timing module can adopt a crystal oscillator timing circuit, an integrated timer or a timing software set in the second control module 150. The timing module records the working time of the dehumidification module 110 and estimates the water storage volume based on the working time. After the working time reaches the time threshold, the second control module 150 controls the dehumidification module 110 to stop the dehumidification action or controls the first electric control valve 170 to close, and then sends the timing signal to the first control module 230 through the first wireless communication module 240 and the second wireless communication module 160. The first control module 230 controls the moving component 300 to move to the drainage area.
[0052] In some embodiments of the utility model, the dehumidification shell 100 may not need to be provided with the first electrically controlled valve 170, but an induction driven valve may be provided at the water outlet 130 connected to the water collecting chamber 120, and a matching part is provided on the water tank module 200. When the induction driven valve is coupled with the matching part, the induction driven valve can be opened to output the liquid in the water collecting chamber 120.
[0053] Among them, the induction driven valve can be a magnetic driven valve, the matching part can be a magnet, and a magnetic valve plate can be arranged in the magnetic driven valve. When a magnet with the same polarity approaches, the magnetic valve plate can be opened to make the water outlet 130 conductive, and the moving component 300 drives the water tank module 200 to move close to the dehumidification shell 100. In the process of the water inlet 220 and the water outlet 130 engaging, the magnet will also approach the magnetic driven valve, and the magnetic effect of the magnet drives the magnetic driven valve to open, so that water can be automatically discharged.
[0054] The induction driven valve can also be a photosensitive driven valve, and the matching part can be a reflective sheet. The photosensitive driven valve can be provided with a photosensitive probe and an electric control valve. The moving component 300 drives the water tank module 200 to move close to the dehumidification shell 100. In the process of the water inlet 220 and the water outlet 130 being engaged, the reflective sheet will reach the front of the photosensitive probe, and the light emitted by the photosensitive probe will be quickly reflected by the reflective sheet and fed back to the photosensitive probe. If the reflection time is lower than the set feedback time threshold, the photosensitive probe controls the electric control valve to open and make the water outlet 130 conductive, so that water can be automatically output.
[0055] In some embodiments of the present invention, Figure 1 , 2 As shown in Figures 3 and 5, the water tank module 200 is provided with a distance measuring detection module 250, and the distance measuring detection module 250 is used to detect the distance information between the water tank module 200 and surrounding objects. The first control module 230 is connected to the distance measuring detection module 250 to control the movement of the moving component 300 according to the distance information.
[0056] The ranging detection module 250 may include a laser radar probe or an infrared ranging probe. During the movement of the water tank module 200, the ranging detection module 250 can detect the distance information between the water tank module 200 and surrounding objects. When objects appear around the water tank module 200, the first control module 230 can control the moving component 300 to drive the water tank module 200 away according to the distance information to prevent collision during movement.
[0057] In some embodiments of the utility model, the drainage structure may include a drain outlet and a second electrically controlled valve 270 arranged on the water tank module 200, the drain outlet is connected to the water storage chamber 210, the second electrically controlled valve 270 is arranged at the drain outlet, and the first control module 230 is connected to the second electrically controlled valve 270. After moving to the drainage area, the first control module 230 can control the second electrically controlled valve 270 to be turned on, thereby discharging the stored water in the water storage chamber 210.
[0058] In some embodiments of the present invention, the drainage structure includes a nozzle member 280 disposed on the water tank module 200 , and the nozzle member 280 is connected to the water storage chamber 210 to utilize the liquid in the water storage chamber 210 for spraying.
[0059] The nozzle member 280 can be selected from conventional atomizing nozzles, and the first control module 230 can be connected to the nozzle member 280. After moving to the drainage area, the first control module 230 can control the nozzle member 280 to operate so as to utilize the liquid in the water storage chamber 210 for spraying.
[0060] Specifically, the nozzle component 280 is disposed on the top of the water tank module 200 and the spraying direction of the nozzle component 280 is inclined upward. The nozzle component 280 can be tilted toward the front to spray, spraying flowers and plants in a specific direction.
[0061] The technical features of the above-described embodiments may be arbitrarily combined. To make the description concise, not all possible combinations of the technical features in the above-described embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0062] Although the embodiments of the present invention have been shown and described, those skilled in the art will appreciate that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the claims and their equivalents.
Claims
1. A dehumidifier with water tank separation and drainage, characterized in that: include: A dehumidification housing is provided with a dehumidification module inside, and the dehumidification housing is provided with a water outlet corresponding to the dehumidification module; A water tank module is provided with a water storage cavity therein. The water tank module is provided with a moving component, and the moving component is used to drive the water tank module to move. The water tank module is provided with a water receiving part connected with the water storage cavity, and the water receiving part can be detachably docked with the water outlet part so that the liquid output by the water outlet part is stored in the water storage cavity. The water tank module is provided with a drainage structure connected with the water storage cavity, and the drainage structure is used to discharge the liquid in the water storage cavity.
2. A dehumidifier with water tank separation and drainage according to claim 1, characterized in that: A storage tank is arranged below the dehumidification shell, the water outlet is arranged on the top surface of the storage tank, the water receiving part is arranged on the top of the water tank module, and the water tank module can enter the storage tank.
3. A dehumidifier with water tank separation and drainage according to claim 1, characterized in that: A water collecting chamber is arranged in the dehumidification shell, and the water collecting chamber corresponds to the dehumidification module so that the liquid output by the dehumidification module is stored in the water collecting chamber, and the water outlet is arranged corresponding to the water collecting chamber so as to be able to discharge the liquid in the water collecting chamber.
4. A dehumidifier with separated water tank and drainage according to claim 1, characterized in that: The water tank module is provided with a first control module and a water level detection module, the water level detection module is used to detect the water level information of the water storage chamber, the first control module is connected to the water level detection module and the moving component respectively, and the first control module controls the moving component to start running according to the water level information.
5. A dehumidifier with separated water tank and drainage according to claim 4, characterized in that: A second control module is arranged in the dehumidification shell; wherein, the second control module is connected to the dehumidification module so as to be able to control the dehumidification module to start or stop the dehumidification action; or, a water collecting chamber is arranged in the dehumidification shell, and the water collecting chamber corresponds to the dehumidification module so that the liquid output by the dehumidification module is stored in the water collecting chamber, and the water outlet is provided with a first electrically-controlled valve, and the first electrically-controlled valve is connected to the water collecting chamber so as to be able to output the liquid in the water collecting chamber when the first electrically-controlled valve is opened, and the second control module is connected to the first electrically-controlled valve to control the first electrically-controlled valve to be opened or closed.
6. A dehumidifier with water tank separation and drainage according to claim 5, characterized in that: A first wireless communication module is provided in the water tank module, and a second wireless communication module is provided in the dehumidification shell. The first control module is connected to the first wireless communication module, and the second control module is connected to the second wireless communication module. The first wireless communication module can communicate wirelessly with the second wireless communication module, and the second control module can control the dehumidification module to stop the dehumidification action or control the first electric control valve to close according to the water level information.
7. A dehumidifier with water tank separation and drainage according to claim 4, characterized in that: A water collecting chamber is arranged in the dehumidification shell, and the water collecting chamber corresponds to the dehumidification module so that the liquid output by the dehumidification module is stored in the water collecting chamber. The water outlet part includes a water outlet connected to the water collecting chamber and an induction driven valve, and the induction driven valve is arranged at the water outlet. A matching part is arranged on the water tank module. When the induction driven valve is coupled with the matching part, the induction driven valve can be opened to output the liquid in the water collecting chamber.
8. A dehumidifier with water tank separation and drainage according to claim 4, characterized in that: The water tank module is provided with a distance measuring detection module, which is used to detect the distance information between the water tank module and surrounding objects. The first control module is connected to the distance measuring detection module to control the movement of the moving component according to the distance information.
9. A dehumidifier with water tank separation and drainage according to claim 1, characterized in that: The drainage structure includes a spray head component arranged on the water tank module, and the spray head component is connected to the water storage chamber to utilize the liquid in the water storage chamber for spraying.
10. A dehumidifier with water tank separation and drainage according to claim 9, characterized in that: The spray head component is arranged on the top of the water tank module and the spraying direction of the spray head component is inclined upward.