Environment monitoring device with dehumidification function

By separating the sensor from the air inlet and outlet and lowering its height in the environmental monitoring device, and combining it with dehumidifier control, the problems of sensor damage and inaccurate monitoring are solved, achieving higher monitoring accuracy and dehumidification efficiency.

CN223728162UActive Publication Date: 2025-12-26NINGBO QIXIN ELECTRICAL TECH
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Patent Information

Application Number
CN202520258537.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-17
Publication Date
2025-12-26
Estimated Expiration
2035-02-17

AI Technical Summary

Technical Problem

The sensors in existing environmental monitoring devices are easily affected by dust, debris, and corrosive gases, resulting in poor monitoring accuracy. Furthermore, airflow disturbances affect the precise measurement of the sensors.

Method used

Temperature, humidity, and gas sensors are placed on different side walls, away from the air inlet and outlet, and controlled in conjunction with the dehumidifier. The sensor height is set lower than the air inlet and outlet, and the integrated design and reasonable layout reduce interference.

Benefits of technology

It improves the reliability and stability of sensors, reduces the risk of failure, ensures monitoring accuracy and dehumidification efficiency, and enhances user experience and equipment operation safety.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses an environment monitoring device with a dehumidification function, which belongs to the field of environment monitoring, solves the problem of poor monitoring accuracy of environment parameters in the prior art, and adopts the technical scheme that the environment monitoring device comprises a box body, and a temperature sensor, a humidity sensor, a gas sensor, a control panel and a dehumidifier are arranged in the box body; an air inlet and an air outlet are formed in different side walls of the box body respectively, the temperature sensor, the humidity sensor and the gas sensor are arranged on the first side wall of the box body, and the control panel is used for regulating and controlling the dehumidifier according to data monitored by the temperature sensor, the humidity sensor and the gas sensor. The air inlet and the air outlet are formed in the second side wall and the third side wall which are different from the first side wall respectively and communicate with the dehumidifier. According to the utility model, the monitoring accuracy of environmental parameters is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of environmental monitoring, especially environmental monitoring device with dehumidification function. BACKGROUND

[0002] In order to monitor and manage equipment operating environment in real time, ensure the safety, stability and reliable operation of power transformation (distribution) equipment as far as possible, the existing power transformation (distribution) equipment is usually provided with an environmental monitoring device to detect environmental parameter abnormalities in time, such as temperature, humidity, air quality deviation from the normal range, or hidden dangers such as water immersion and SF6 gas leakage, and issue early warning in the first time to help operation and maintenance personnel to take response measures such as regulation and control and risk removal to ensure that the equipment is in good operating condition.

[0003] Among them, too high humidity will condense water vapor on the surface of the equipment, increase the risk of equipment dampness and short circuit, and increase the probability of creepage and arc flash of power transformation (distribution) equipment, therefore, the existing environmental monitoring device is also provided with a dehumidifier, but the sensor of the existing environmental monitoring device is usually arranged on the same side of the air inlet or air outlet, and the airflow speed at the air inlet and air outlet is relatively large, which may carry some particulate matters such as dust and sundries. If the sensor is arranged on the same side, these particulate matters may directly impact the sensor with the airflow, increasing the risk of sensor blockage and damage, affecting the monitoring accuracy of the sensor on the environmental parameters, and the air inlet or air outlet process may form airflow disturbance, temperature change or humidity fluctuation in the local area, further affecting the monitoring accuracy of the sensor on the environmental parameters. SUMMARY

[0004] The utility model wants to achieve the purpose of providing an environmental monitoring device with dehumidification function, solving the problem of poor monitoring accuracy of environmental parameters in the prior art, and improving the monitoring accuracy of environmental parameters.

[0005] In order to achieve the above purpose, the utility model adopts the following technical scheme: the environmental monitoring device with dehumidification function comprises a box body, the box body is provided with a temperature sensor, a humidity sensor, a gas sensor, a control panel and a dehumidifier, different side walls of the box body are respectively provided with an air inlet and an air outlet, the temperature sensor, the humidity sensor and the gas sensor are arranged on the first side wall of the box body, the control panel is used for regulating and controlling the dehumidifier according to the data monitored by the temperature sensor, the humidity sensor and the gas sensor, the air inlet and the air outlet are arranged on the second side wall and the third side wall different from the first side wall respectively, and both are communicated with the dehumidifier.

[0006] The utility model discloses the following advantages after adopting the above technical scheme: first, the temperature sensor, humidity sensor and gas sensor are located at the first side wall, and the air inlet and the air outlet are at different second side wall, third side wall, so that the temperature sensor, humidity sensor and gas sensor are away from the air inlet and the air outlet, avoiding the influence of dust, sundries impact and corrosive gas on the temperature sensor, humidity sensor and gas sensor due to being close to the air inlet or the air outlet, reducing the risk of the temperature sensor, humidity sensor and gas sensor being blocked, damaged and corroded, prolonging the service life of the temperature sensor, humidity sensor and gas sensor, thereby improving the reliability and stability of the whole environment monitoring device, reducing the monitoring failure and equipment operation hidden danger caused by the temperature sensor, humidity sensor and gas sensor failure, and guaranteeing the monitoring accuracy of the environmental parameters, at the same time, the temperature sensor, humidity sensor and gas sensor away from the air inlet and the air outlet can also effectively reduce the direct interference of air flow disturbance, temperature change or humidity fluctuation generated during air intake and air exhaust on the temperature sensor, humidity sensor and gas sensor, so that the temperature sensor, humidity sensor and gas sensor can more accurately measure the environmental parameters, so that the control panel can more accurately regulate and control the dehumidifier according to more accurate data, so that the dehumidifier can be started in time and run at appropriate power when needed, and the humidity can be ensured to be always in the appropriate range as much as possible.

[0007] Further, the height of the temperature sensor, humidity sensor and gas sensor is lower than the height of the air inlet and the height of the air outlet.

[0008] By adopting the foregoing technical scheme, the air flow speed at the air inlet and the air outlet is relatively fast, and if the sensor is at the same height or higher position as them, the fast flowing air can affect the accurate perception of the sensor on the environmental temperature, humidity and gas composition, leading to deviation of the monitoring data, and by setting the sensor at a lower height, it can be in a relatively stable air environment, and the real parameters of the environment can be more accurately measured.

[0009] Further, the area of the plane where the second side wall is located and / or the area of the plane where the third side wall is located is greater than the area of the plane where the first side is located.

[0010] By adopting the foregoing technical scheme, when the area of the second side wall is large, the air inlet can have a larger opening space, so that more humid air can be sucked into the dehumidifier in unit time, and similarly, the large area of the third side wall can correspondingly increase the area of the air outlet, which is beneficial to the smooth and large amount of dry air after dehumidification being discharged to the environment, which helps to improve the air exchange efficiency and enhance the dehumidification capacity of the dehumidifier, so that the humidity of the whole environment can reach the set requirement faster.

[0011] Further, the second side wall is a front surface of the cabinet, and the control panel is located on the second side wall.

[0012] According to the above technical solution, the control panel is arranged on the front surface (i.e., the second side wall) of the cabinet, which is more ergonomic and in line with the operation habits of users. When the user stands in front of the device, the user can naturally and intuitively see various information and operation buttons on the control panel without needing to go around to the side or back of the cabinet to find the operation interface, greatly improving the convenience of operation. Whether it is to set a dehumidification mode, adjust parameters, or view environmental monitoring data, the user can easily complete the operation, improving the user experience.

[0013] Further, the second side wall includes a first area and a second area, the first area is located above the second area, the control panel is located in the first area, and the air inlet is located in the second area.

[0014] According to the above technical solution, the control panel is arranged in the upper first area of the second side wall, so that the user can conveniently see the display information on the control panel without needing to bend over or crouch down to perform parameter setting, mode selection, and other operations, improving the convenience and comfort of operation. Moreover, the higher position can reduce the risk of being collided or misoperated, ensuring stable operation of the equipment. The air inlet is located in the second area, i.e., the lower part of the front surface of the cabinet, which is conducive to forming a reasonable air flow path. Under normal circumstances, humid air accumulates near the ground, and the air inlet arranged at a lower position can more effectively suck in such humid air, improving the dehumidification efficiency. In addition, the air inlet and the control panel are arranged separately in different areas, which can avoid the influence of dust, water vapor, and the like on the control panel during the air inlet process, further ensuring the cleanliness and normal operation of the control panel.

[0015] Further, the control panel includes a control unit and a panel part for operation and display, the control unit is electrically connected with a temperature sensor, a humidity sensor, a gas sensor, and a dehumidifier, respectively, the panel part is provided with a display area for displaying the working state of the temperature sensor, the working state of the humidity sensor, the working state of the gas sensor, and the working state of the dehumidifier, the display area displays at least two different color working display states and fault display states, the panel part is electrically connected with the control unit, and the control unit controls the display area to work in the working display state or the fault display state according to the working conditions of the temperature sensor, the humidity sensor, the gas sensor, and the dehumidifier.

[0016] By the technical scheme, the control unit is combined with the panel part for operation and display, centralized control and management of the temperature sensor, the humidity sensor, the gas sensor and the dehumidifier are realized. The staff does not need to operate on different devices or interfaces, and can complete operation and monitoring of multiple components on one panel, greatly improving work efficiency. The display area can display at least two different colors of working display state and fault display state, and the staff can quickly judge whether each component is in normal working state or has a fault through the intuitive difference of colors, without a tedious troubleshooting process, greatly shortening fault positioning time and improving fault handling efficiency.

[0017] Further, the temperature sensor, the humidity sensor and the gas sensor are integrated on one integrated circuit board to form a multifunctional sensor.

[0018] By the technical scheme, the multiple sensors are integrated on one integrated circuit board, signal interference between the sensors can be reduced, measurement accuracy is improved, the integrated multifunctional sensor is small in size and light in weight, and is convenient to install and maintain. During installation, the multifunctional sensor only needs to be installed at a suitable position, without the need to install multiple sensors respectively, thereby reducing installation time and workload.

[0019] Further, the first side wall is further provided with a smoke sensor, and the smoke sensor is located at a middle upper part or a highest part of the plane of the first side wall.

[0020] By the technical scheme, smoke usually has the characteristic of heat rising and gathers upward. The smoke sensor is arranged at the middle upper part or the highest part of the plane of the first side wall, so that the characteristic is utilized to the greatest extent, the smoke is detected in time in the initial stage, and the response speed of the entire environment monitoring device to safety hazards such as fire is improved. In addition, the smoke sensor is installed at a high place, and interference from the ground or personnel activities can be avoided. For example, dust, water vapor, and dust raised by personnel walking on the ground can affect the normal work of the smoke sensor, leading to false reporting or inaccurate monitoring. The relatively clean and stable environment at a high place helps to ensure the reliability and accuracy of the smoke sensor.

[0021] Further, the third side wall is an upper surface of the box body, and the air outlet is arranged upward.

[0022] By the technical scheme, the upward air outlet can make dry air after dehumidification be discharged upward and rapidly spread in the surrounding environment, so as to avoid direct blowing of the dry air to the temperature sensor, the humidity sensor and the gas sensor as much as possible, and further ensure the accuracy of monitoring.

[0023] Further, the lower surface of the box body is further provided with a movable wheel.

[0024] Through the technical scheme, the mobile wheel makes the carrying of the environment monitoring device easy, and the position of the device can be adjusted at will according to actual needs, so that the device can be more flexible to adapt to different environments and monitoring requirements. BRIEF DESCRIPTION OF DRAWINGS

[0025] The utility model will be further described below in combination with the drawings:

[0026] Fig. 1 It is the structure diagram of the environment monitoring device with dehumidification function of the utility model;

[0027] Fig. 2 It is the second side wall structure diagram of the environment monitoring device with dehumidification function of the utility model;

[0028] Fig. 3 It is the first side wall structure diagram of the environment monitoring device with dehumidification function of the utility model;

[0029] Fig. 4 It is the sectional view of the environment monitoring device with dehumidification function of the utility model;

[0030] In the drawing, 10, box body;11, first side wall;12, second side wall;121, first area;122, second area;123, third area;13, third side wall;14, air inlet;15, air outlet;16, mobile wheel;

[0031] 20, multifunctional sensor;21, control panel;22, smoke alarm;

[0032] 30, dehumidifier;31, condenser;32, centrifugal fan;33, compressor;

[0033] 40, power indicator light;41, infrared sensor;42, USB slot;43, communication port;44, water outlet;45, liquid level sensor;46, main power switch;47, main power line-in. DETAILED DESCRIPTION

[0034] In order to make the purpose, technical scheme and advantage of the utility model embodiment more clear, the technical scheme in the utility model embodiment will be described clearly and completely below in combination with the drawings in the utility model embodiment, and obviously, the described embodiment is only a part of the utility model embodiment, rather than all the embodiments.

[0035] The terms "first", "second", "third", "fourth" and the like in the description and in the claims of the utility model, and the above drawings (if any) are used to distinguish similar objects, and do not have to be used to describe a particular order or sequence. It should be understood that the data used in this way can be interchanged under appropriate circumstances, so that the embodiments of the utility model described herein can be implemented in an order other than those illustrated or described herein.

[0036] It should be understood that in various embodiments of the utility model, the size of the serial number as related to each process does not mean the order of execution, and the execution order of each process should be determined by its function and inherent logic, and should not constitute any limitation on the implementation process of the embodiments of the utility model.

[0037] It should be understood that in the utility model, "includes" and "has" and any variations thereof are intended to cover non-exclusive inclusion, for example, a process, method, system, product or device that includes a series of steps or units does not have to be limited to those steps or units clearly listed, but can include other steps or units that are not clearly listed or inherent to these processes, methods, products or devices.

[0038] It should be understood that in the utility model, "multiple" means two or more. "And / or" is only a description of the relationship between the associated objects, which means that there can be three relationships, for example, X and / or Y can mean that X exists alone, X and Y exist at the same time, and Y exists alone. The character " / " generally represents that the associated objects before and after are in an "or" relationship. "Including X, Y and Z", "including X, Y, Z" means that X, Y and Z are all included, "including X, Y or Z" means that one of X, Y and Z is included, and "including X, Y and / or Z" means that any one or any two or three of X, Y and Z is included.

[0039] The technical solutions of the utility model will be described in detail below with specific examples. The following specific examples can be combined or replaced according to actual conditions, and the same or similar concepts or processes may not be described in some embodiments.

[0040] As Figs. 1 to 4The utility model provides an environmental monitoring device with dehumidification function, including box 10, the box 10 is equipped with temperature sensor, humidity transducer, gas sensor, control panel 21 and dehumidifier 30, the different lateral wall of box 10 is set up air inlet 14 and air outlet 15 respectively, temperature sensor, humidity transducer and gas sensor set up in the first lateral wall 11 of box 10, control panel 21 is used for the data of temperature sensor, humidity transducer and gas sensor three monitoring to dehumidifier 30 carries out the regulation and control, air inlet 14, air outlet 15 are set up respectively in the second lateral wall 12 and third lateral wall 13 different from the first lateral wall 11, and both are communicated with dehumidifier 30.

[0041] First, temperature sensor, humidity transducer and gas sensor three are located in the first lateral wall 11, air inlet 14 and air outlet 15 are in different second lateral wall 12, third lateral wall 13, make temperature sensor, humidity transducer and gas sensor away from air inlet 14 and air outlet 15, avoid the impact of dust, sundries and corrosive gas that temperature sensor, humidity transducer and gas sensor can receive because of being close to air inlet 14 or air outlet 15, reduce the risk of temperature sensor, humidity transducer and gas sensor being blocked, damaged and corroded, prolong the service life of temperature sensor, humidity transducer and gas sensor, and then improve the reliability and stability of the whole environmental monitoring device, reduce the monitoring failure and equipment operation hidden danger caused by temperature sensor, humidity transducer and gas sensor failure, guarantee the monitoring accuracy of environmental parameters, at the same time, temperature sensor, humidity transducer and gas sensor away from air inlet 14 and air outlet 15 can also effectively reduce the direct interference of air flow disturbance, temperature change or humidity fluctuation generated when air inlet, air outlet to temperature sensor, humidity transducer and gas sensor, so that temperature sensor, humidity transducer and gas sensor can more accurately measure environmental parameters, so that control panel 21 can more accurately regulate and control dehumidifier 30 according to more accurate data, so that dehumidifier 30 can start in time and run at appropriate power when needed, and ensure that the humidity is always kept in the appropriate range as far as possible. Air inlet 14 and air outlet 15 are not arranged on the same lateral wall, which can also reduce the back air phenomenon, thereby reducing the back air noise and achieving the noise reduction effect.

[0042] Need to be explained, the environmental monitoring device with dehumidification function of the application is mainly suitable for the cell change, change (distribution) power station and switch station of the power system, especially the indoor station or underground station with compact equipment arrangement, mainly through collecting and fusing the environmental temperature and humidity, air quality and other parameters of the application object, the dehumidifier 30 can more efficiently dehumidify the air, improve the dehumidification effect, better control the environmental humidity, and reduce the risk of moisture, short circuit, creepage and arc flash of the change (distribution) power equipment caused by high humidity.

[0043] Since the air flow speed at the air inlet 14 and the air outlet 15 is relatively fast, if the sensors are at the same height or higher position, the fast flowing air can affect the accurate sensing of the environmental temperature, humidity and gas composition by the sensors, resulting in deviation of the monitoring data. Therefore, in the present application, the height of the temperature sensor, the humidity sensor and the gas sensor is lower than the height of the air inlet 14 and the height of the air outlet 15, so that they can be in a relatively stable air environment, and the real parameters of the environment can be measured more accurately.

[0044] Further, the third side wall 13 is the upper surface of the box body 10, and the air outlet 15 is upwardly arranged. The upwardly arranged air outlet 15 can let the dry air after dehumidification be discharged upwardly and quickly spread in the surrounding environment, so as to avoid the dry air from directly blowing on the temperature sensor, the humidity sensor and the gas sensor as much as possible, and further guarantee the accuracy of monitoring.

[0045] In order to facilitate installation, the temperature sensor, the humidity sensor and the gas sensor are integrated on an integrated circuit board to form a multifunctional sensor 20, which can reduce signal interference between different sensors, improve measurement accuracy, and the integrated multifunctional sensor 20 is small in size and light in weight, so that installation and maintenance are facilitated. During installation, only the multifunctional sensor 20 needs to be installed at a suitable position, and multiple sensors do not need to be installed separately, so that the installation time and workload are reduced.

[0046] It should be noted that in the present application, the airflow sensor is mainly used for monitoring the concentration of SF6 gas and oxygen.

[0047] In order to improve the monitoring capability, the first side wall 11 is further provided with a smoke sensor. Smoke usually has the characteristic of heat rising and will gather upwardly. Therefore, in the present application, the smoke sensor is located at the highest position of the plane of the first side wall 11, so that this characteristic can be utilized to the maximum extent, and the smoke can be detected in time in the early stage of generation, so that the response speed of the entire environmental monitoring device to safety hazards such as fire is improved. In addition, the smoke sensor is installed at a high position, so that some interference from the ground or personnel activities can be avoided. For example, dust, water vapor and dust raised by personnel walking on the ground can affect the normal work of the smoke sensor, resulting in false alarm or inaccurate monitoring. The relatively clean and stable environment at a high position is helpful to guarantee the reliability and accuracy of the smoke sensor.

[0048] In order to improve the dehumidification capability, the area of the plane of the second side wall 12 is greater than the area of the plane of the first side wall, and the air inlet 14 can have a larger opening space, so that more humid air can be sucked into the dehumidifier 30 in unit time, which is helpful to improve the air exchange efficiency and enhance the dehumidification capability of the dehumidifier 30, so that the humidity of the entire environment can reach the set requirement more quickly.

[0049] The second side wall 12 is the front surface of the box body 10, and the control panel 21 is located on the second side wall 12, which is more ergonomic and in line with the operation habits of users. When a user stands in front of the device, the user can naturally and intuitively see various information and operation buttons on the control panel 21, without needing to go around to the side or back of the box body 10 to find the operation interface, greatly improving the convenience of operation. Whether it is to set a dehumidification mode, adjust parameters, or view environmental monitoring data, the user can more easily complete the operation, improving the user experience.

[0050] Specifically, the second side wall 12 includes a first region 121 and a second region 122, the first region 121 is located above the second region 122, and the control panel 21 is located in the first region 121. The air inlet 14 is located in the second region 122. By arranging the control panel 21 in the upper first region 121 of the second side wall 12, the user can easily see the display information on the control panel 21 without bending over or squatting, and can perform parameter setting, mode selection and other operations, improving the convenience and comfort of operation. Moreover, the higher position can reduce the risk of being collided or misoperated, ensuring the stable operation of the equipment. The air inlet 14 is located in the second region 122, i.e., the lower part of the front surface of the box body 10, which is conducive to forming a reasonable air flow path. Under normal circumstances, humid air accumulates near the ground. By arranging the air inlet 14 at a lower position, the humid air can be more effectively sucked in, improving the dehumidification efficiency. At the same time, the air inlet 14 and the control panel 21 are arranged separately in different regions, which can avoid the influence of dust, water vapor and the like brought by the air inlet process on the control panel 21, further ensuring the cleanliness and normal operation of the control panel 21.

[0051] The control panel 21 includes a control unit and a panel part for operation and display. The control unit is electrically connected with the temperature sensor, the humidity sensor, the gas sensor and the dehumidifier 30, respectively. By combining the control unit with the panel part for operation and display, centralized control and management of the temperature sensor, the humidity sensor, the gas sensor and the dehumidifier 30 are realized. The worker does not need to operate on different devices or interfaces, but can complete the operation and monitoring of multiple components on one panel, greatly improving the work efficiency. The panel part is provided with a display area for displaying the working state of the temperature sensor, the working state of the humidity sensor, the working state of the gas sensor and the working state of the dehumidifier 30. The display area displays at least two different color working display states and fault display states. The panel part is electrically connected with the control unit. The control unit controls the display area to work in the working display state or the fault display state according to the working conditions of the temperature sensor, the humidity sensor, the gas sensor and the dehumidifier 30. Through the intuitive difference in color, the worker can quickly judge whether each component is in a normal working state or has a fault, without going through a tedious troubleshooting process, greatly shortening the fault positioning time and improving the fault handling efficiency.

[0052] It should be noted that in this application, the display area can display two different colors, when the display area displays green, it is in working display state, and when the display area displays red, it is in fault display state.

[0053] The second area 122 is also provided with an infrared sensor 41, a USB slot 42 and a power indicator 40, the infrared sensor 41, the USB slot 42 and the power indicator 40 are located below the control panel 21, the power indicator 40 is used to display the running state of the environmental monitoring device, and the USB slot 42 is used for data import and export. The second side wall 12 is also provided with a third area 123, the second area 122 is located between the first area 121 and the third area 123, and the third area 123 is located below the second area 122. The third area 123 is a closed panel, and the lower closed third area 123 can play a role in stabilizing and guiding airflow, making the air entering the air inlet 14 more smooth. Since there are usually more dust, hair and other debris near the ground, setting the air inlet 14 at a certain height can reduce the inhalation of these large-particle pollutants and reduce the risk of the air inlet 14 being blocked due to ground debris, object collision and other reasons.

[0054] Since the environmental monitoring device adds a dehumidification function, the weight of the environmental monitoring device is relatively large due to the corresponding increase in components. Therefore, in this application, the lower surface of the box body 10 is also provided with a moving wheel 16, which makes the handling of the environmental monitoring device easier and more convenient. The position of the device can be adjusted at will according to actual needs, and it can be more flexible to adapt to different environments and monitoring requirements.

[0055] It should be noted that the dehumidifier 30 includes a condenser 31, a centrifugal fan 32 and a compressor 33, and the box body 10 is provided with a water outlet 44 that can be connected to an external drainage device. When the dehumidifier 30 is working, humid air enters from the air inlet 14, the centrifugal fan 32 starts to operate to provide power for the flow of air, pushing the humid air to flow towards the condenser 31. At the same time, the compressor 33 compresses the low-temperature and low-pressure refrigerant gas into high-temperature and high-pressure gas, which is then delivered to the condenser 31. In the condenser 31, the high-temperature and high-pressure refrigerant gas exchanges heat with the humid air, and the refrigerant gas releases heat and condenses into liquid, while the humid air is cooled. In this cooling process, the water vapor in the humid air condenses into water droplets when it is cold, which is collected and discharged through the drainage device. The air after condensation and dehumidification is sent back to the room through the air outlet 15 by the centrifugal fan 32, and the cycle continues, continuously reducing the humidity of the air and creating a dry and comfortable environment.

[0056] Further, the first side wall 11 is further provided with a communication port 43, a liquid level sensor 45, a main power switch 46 and a main power line 47, the communication port 43 is used for signal connection with an external mobile device, a collecting cavity for collecting water droplets is arranged in the box body 10, the liquid level sensor 45 is used for monitoring the water level of the collecting cavity to remind a user to drain water, the main power line 47 is used for electrical connection with an external power supply, and the main power switch 46 is used for controlling power supply connection of the environmental monitoring device. The water outlet 44 is also arranged on the first side wall 11.

[0057] It can be understood that, in other embodiments, the area of the plane where the third side wall is located is greater than the area of the plane where the first side is located, and the large area of the third side wall can correspondingly increase the area of the air outlet, which is beneficial to the dry air after dehumidification to be discharged more smoothly and in a larger amount to the environment, which helps to improve the air exchange efficiency, enhance the dehumidification capacity of the dehumidifier, and make the humidity of the entire environment reach the set requirement more quickly. Of course, the area of the plane where the second side wall is located and the area of the plane where the third side wall is located can also be greater than the area of the plane where the first side is located, so that the air inlet can have a larger opening space, so that more humid air can be sucked into the dehumidifier in a unit of time, and at the same time, the large area of the third side wall can correspondingly increase the area of the air outlet, which is beneficial to the dry air after dehumidification to be discharged more smoothly and in a larger amount to the environment, which helps to improve the air exchange efficiency, enhance the dehumidification capacity of the dehumidifier, and make the humidity of the entire environment reach the set requirement more quickly.

[0058] It can be understood that, in other embodiments, the smoke sensor is located in the upper part of the plane where the first side wall is located, which can utilize the characteristic that smoke usually rises upward as much as possible, and detect in time in the initial stage of smoke generation, thereby improving the response speed of the entire environmental monitoring device to safety hazards such as fire.

[0059] In addition to the above preferred embodiments, the utility model also has other implementation manners, and all other embodiments obtained by a person skilled in the art without creative labor based on the embodiments in the utility model belong to the range of the utility model claimed.

Claims

1. An environmental monitoring device with dehumidification function, characterized in that, The box is provided with a temperature sensor, a humidity sensor, a gas sensor, a control panel and a dehumidifier, different side walls of the box are respectively provided with an air inlet and an air outlet, the temperature sensor, the humidity sensor and the gas sensor are arranged on the first side wall of the box, the control panel is used for regulating and controlling the dehumidifier according to the data monitored by the temperature sensor, the humidity sensor and the gas sensor, the air inlet and the air outlet are arranged on the second side wall and the third side wall which are different from the first side wall, and both are communicated with the dehumidifier.

2. The environment monitoring device with dehumidification function according to claim 1, characterized in that, The height of the temperature sensor, the humidity sensor and the gas sensor is lower than the height of the air inlet and the height of the air outlet.

3. The environment monitoring device with dehumidification function according to claim 1, characterized in that, The area of the plane where the second side wall is located and / or the area of the plane where the third side wall is located is greater than the area of the plane where the first side wall is located.

4. The environment monitoring device with dehumidification function according to claim 1, characterized in that, The second side wall is the front surface of the box, and the control panel is located on the second side wall.

5. The environment monitoring device with dehumidification function according to claim 4, characterized in that, The second side wall includes a first area and a second area, the first area is located above the second area, the control panel is located in the first area, and the air inlet is located in the second area.

6. The environment monitoring device with dehumidification function according to claim 1, characterized in that, The control panel includes a control unit and a panel part for operation and display, the control unit is electrically connected with the temperature sensor, the humidity sensor, the gas sensor and the dehumidifier respectively, the panel part is provided with display areas for displaying the working state of the temperature sensor, the working state of the humidity sensor, the working state of the gas sensor and the working state of the dehumidifier respectively, the display areas display at least two different color working display states and fault display states, the panel part is electrically connected with the control unit, and the control unit controls the display areas to work in the working display state or the fault display state according to the working conditions of the temperature sensor, the humidity sensor, the gas sensor and the dehumidifier.

7. The environment monitoring device with dehumidification function according to claim 1, characterized in that, The temperature sensor, the humidity sensor and the gas sensor are integrated on an integrated circuit board to form a multifunctional sensor.

8. The environment monitoring device with dehumidification function according to claim 1, characterized in that, The first side wall is further provided with a smoke sensor, and the smoke sensor is located in the middle upper part or the highest position of the plane where the first side wall is located.

9. The environment monitoring device with dehumidification function according to claim 1, characterized in that, The third side wall is the upper surface of the box, and the air outlet is arranged upward.

10. The environment monitoring device with dehumidification function according to claim 1, characterized in that, The lower surface of the box is further provided with a movable wheel.

Citation Information

Patent Citations

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    US3340A