Siphon drainage energy-saving humidifier for urban residential area and use method of siphon drainage energy-saving humidifier

By designing a siphon drainage energy-saving humidifier, the water collection system collects rainwater, the filtration system purifies it, and the spray system cools it down, the demand for cooling and humidification in the green areas of urban residential areas is solved, and the efficient recycling of rainwater and the flexible and convenient operation of the equipment are achieved.

CN120830892APending Publication Date: 2025-10-24CHINA MCC17 GRP CO LTD
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Patent Information

Application Number
CN202510984384.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-17
Publication Date
2025-10-24

AI Technical Summary

Technical Problem

Green areas in urban residential areas urgently need cooling and humidification. Traditional drainage systems are unable to effectively collect and utilize rainwater, resulting in water resource waste and safety hazards.

Method used

A siphon drainage energy-saving humidifier is designed, which includes a spray system, a central control system, a water storage system, a conveying system and a water collection system. The siphon drainage energy-saving humidifier can recycle rainwater and cool the environment through water collection, filtration, storage and spraying.

Benefits of technology

It achieves efficient recycling of rainwater, reduces domestic water consumption, improves the comfort level of green areas, reduces the risk of urban waterlogging, and ensures the normal operation of equipment without an external power supply.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a siphon drainage energy-saving humidifier for urban residential areas and a using method thereof, and belongs to the technical field of water resource recycling. The siphon drainage energy-saving humidifier comprises a spraying system, a central control system, a water storage system, a conveying system and a water collecting system; the spraying system is installed at the upper end of the central control system, the central control system is connected with the water storage system through the conveying system, and the water collecting system is arranged at the side end of the water storage system. According to the energy-saving humidifier provided by the invention, summer rainwater accumulated on the basement roof is stored in the water storage bin through the siphon drainage groove, the temperature control probe and the humidity control probe are adopted to control the rotary spraying system to pump accumulated water and humidify and cool a greening area of a residential area, the use of domestic water is reduced, community environment fine adjustment is facilitated, and the energy-saving effect is achieved. And water resources are saved.
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Description

TECHNICAL FIELD

[0001] The present application belongs to the technical field of water resource recycling, and particularly relates to a siphon drainage energy-saving humidifier for urban residential areas and a use method thereof. BACKGROUND

[0002] In the current rapid urbanization process, urban water resources are facing severe challenges. On the one hand, the urban population continues to grow, and the demand for domestic water rises sharply, and the problem of water shortage is increasingly prominent. On the other hand, urban rainfall is unevenly distributed, and in summer, there is often abundant rainfall. If these rainfall cannot be effectively collected and utilized, it will be wasted, which will exacerbate the risk of urban waterlogging and also cause great waste of water resources.

[0003] Focusing on the urban residential area scene, the maintenance of the green area is crucial for adjusting the community microclimate and improving the comfort of residents. However, the traditional green irrigation method mainly relies on domestic water, consuming a large amount of valuable water resources. And with global warming, high-temperature weather in summer is becoming more frequent, and the demand for cooling and humidification of the residential green area is more urgent, which further increases the burden of domestic water.

[0004] From the perspective of the drainage system, the traditional basement roof drainage system has a single function, which can only simply drain away the rainwater and cannot realize the collection and reuse of the rainwater. In the face of heavy rainfall, the traditional drainage system often has problems such as basement waterlogging due to insufficient drainage capacity, which brings many inconveniences and safety hazards to residents' life. SUMMARY

[0005] The technical problem to be solved by the present application is to provide a siphon drainage energy-saving humidifier for urban residential areas and a use method thereof to solve the problems mentioned in the background or achieve a more optimal technical effect.

[0006] In order to solve the above technical problems, the inventors have summarized and obtained the technical solution of the present application through practice. The present application discloses a siphon drainage energy-saving humidifier for urban residential areas, which comprises a spraying system, a central control system, a water storage system, a conveying system and a water collecting system. The spraying system is installed at the upper end of the central control system, the central control system and the water storage system are connected through the conveying system, and the water collecting system is arranged at the side end of the water storage system. The water collecting system guides the rainwater in the external environment into the water storage system. According to the information collected and processed by the central control system, the conveying system is controlled to guide the rainwater in the water storage system to the spraying system, which is then sprayed out, thereby effectively realizing the recycling of rainwater and the cooling of the surrounding environment.

[0007] Further, the spray system comprises a three-column rotary spray head, an atomizing bin, a spray head vertical rod, a water outlet pipe, a suction filter and a driving mechanism; the driving mechanism is installed on the inner side of the central control system; the output end of the driving mechanism is connected with the suction filter.

[0008] Further, the side of the suction filter is respectively connected with the water outlet pipe and the built-in filter pipe.

[0009] Further, the water outlet pipe is connected with the atomizing bin through the top end of the central control system; the atomizing bin is installed on the top end of the spray head vertical rod.

[0010] Further, the driving mechanism comprises a battery and an electric motor; the battery is detachably installed in the central control system; the electric motor is installed on one side of the battery, and the output end of the electric motor is connected with the suction filter.

[0011] Further, the central control system comprises a temperature and humidity processing element, a temperature control probe, a humidity control probe and a solar energy collection plate; the temperature and humidity processing element is installed on one side of the central control system; the temperature control probe and the humidity control probe are sequentially installed on the bottom of the central control system, and the temperature control probe and the humidity control probe are connected with the temperature and humidity processing element through lines.

[0012] Further, the water storage system comprises a water storage bin, and the water collecting system comprises A-type siphon drainage channels; a plurality of groups of A-type siphon drainage channels are installed on the bottom side end of the water storage bin; the bottom of each group of A-type siphon drainage channels is wider than the top, and a plurality of groups of through holes are arranged on both sides of the bottom end of the A-type siphon drainage channels.

[0013] Further, the A-type siphon drainage channels are at least four groups, and the A-type siphon drainage channels are uniformly installed around the water storage bin.

[0014] Further, the conveying system comprises a filtering mechanism, a water inlet pipe, a built-in filter pipe and a corrugated outer vertical pipe; the built-in filter pipe passes through the top end of the water storage bin, the bottom of the built-in filter pipe is located in the interior of the water storage bin, and the top end of the built-in filter pipe is connected with the central control system.

[0015] Further, the use method of the siphon drainage energy-saving humidifier for urban residential areas comprises the following steps:

[0016] S1: A corresponding number of A-type siphon drainage channels are installed on the top plate of the basement of the urban residential area, and are connected with the water storage bin to ensure that the rainwater accumulated on the top plate of the basement can flow into the water storage bin smoothly;

[0017] S2: A geotextile filter layer, a coarse sand filter layer, a fine sand filter layer and an activated carbon filter layer are sequentially installed in the water storage bin, and a built-in filter pipe is installed in the water outlet pipe to ensure the rainwater filtering effect;

[0018] S3: Install the three-column rotary spray head on the spray head stand, connect the water outlet pipe, filter and electric motor, and ensure the normal operation of the spray system;

[0019] S4: Install the temperature and humidity processing element, temperature control probe and humidity control probe to accurately monitor the temperature and humidity data of the residential area green area and transmit the data to the temperature and humidity processing element;

[0020] S5: Install the solar collector and battery, connect the solar collector and battery, ensure that the solar energy can be successfully converted into electrical energy and stored in the battery, and provide power for the operation of the device;

[0021] S6: In actual use, when it rains in summer, the rainwater on the basement roof flows into the water storage warehouse through the A-type siphon drainage channel, is stored in the water storage warehouse after multi-stage filtration, and the temperature and humidity control probes monitor the environmental temperature and humidity in real time. When the temperature and humidity processing element determines that spraying humidification is needed according to the monitoring data, the electric motor is started to drive the filter and the three-column rotary spray head to work, and the residential area green area is humidified and cooled.

[0022] Compared with the prior art, the beneficial effects of the present application are as follows:

[0023] (1) The present application provides an energy-saving humidifier for urban residential areas cooperating with the siphon drainage system of the basement roof, which stores the summer rainwater accumulated on the basement roof in the water storage warehouse through the siphon drainage channel, uses the temperature control probe and humidity control probe to control the rotary spray system to extract the accumulated water, and humidifies and cools the residential area green area, reduces the use of domestic water, and is beneficial to creating a community environment micro-regulation and saving water resources.

[0024] (2) The atomizing chamber adopted by the present application provides a relatively closed space environment for the atomization process, so that the water is uniformly distributed in the chamber, the atomization efficiency is improved, the rainwater introduced from the water outlet pipe can be formed into water mist, and the water mist can be transported to the three-column rotary spray head at the upper end. The three-column rotary spray head can rotate under the driving of the atomizing gas, and the liquid transported from the water outlet pipe can be sprayed out in a uniform and dispersed manner during the rotation, so that fine mist droplets are formed.

[0025] (3) The present application adopts a detachable battery to provide a stable power source for the operation of the electric motor and the entire atomizing part, temperature and humidity monitoring, which can provide continuous power supply in the case of disconnection from the external power supply, ensure the normal operation of the equipment, realize flexible and convenient mobile operation, and meet the use demand of the atomization function in different environments.

[0026] (4) The application uses a water storage bin as a container for storing water, has a certain capacity, can collect and store water introduced from the A-type siphon drainage channel, provides water source guarantee for water recycling of the entire device, ensures that there is enough water supply when fogging and other operations are needed, and can also play a buffering and water regulating role.

[0027] (5) The application is installed with several groups of A-type siphon drainage channels at the bottom side end of the water storage bin, the bottom of each group of A-type siphon drainage channels is wider than the top, and the bottom end of the A-type siphon drainage channel is provided with multiple groups of through holes on both sides, which not only increases the water collection area and improves the water collection efficiency, but also effectively prevents sundries from entering the drainage channel, ensures the smoothness of drainage, and realizes efficient collection of excess moisture in the environment. BRIEF DESCRIPTION OF DRAWINGS

[0028] Figure 1 It is a front view of the siphon drainage energy-saving humidifier for urban residential areas of the application;

[0029] Figure 2 It is a top view of the siphon drainage energy-saving humidifier for urban residential areas of the application;

[0030] Figure 3 It is an installation schematic diagram of the siphon drainage energy-saving humidifier for urban residential areas of the application;

[0031] Figure 4 It is a three-dimensional detail view of the siphon drainage energy-saving humidifier for urban residential areas of the application;

[0032] Figure 5 It is a front view of the siphon drainage energy-saving humidifier for urban residential areas of the application;

[0033] Figure 6 It is a top view of the siphon drainage energy-saving humidifier for urban residential areas of the application;

[0034] Figure 7 It is a schematic diagram of the siphon drainage energy-saving humidifier for urban residential areas of the application;

[0035] Figure 8 It is a three-dimensional detail view of the siphon drainage energy-saving humidifier for urban residential areas of the application;

[0036] Among them, the accompanying drawings are marked as follows: 1. three-column rotary spray head; 2. spray head pole; 3. battery; 4. electric motor; 5. filter; 6. water outlet pipe; 7. A-type siphon drainage trough; 8. water storage tank; 9. geotextile filter layer; 10. solar energy collection panel; 11. temperature and humidity treatment element; 12. temperature control probe; 13. humidity control probe; 14. built-in filter tube; 15. corrugated external vertical pipe; 16. water inlet pipe; 17. activated carbon filter layer; 18. fine sand filter layer; 19. coarse sand filter layer; 20. atomization chamber. DETAILED DESCRIPTION

[0037] In order to make the above-mentioned objects, features and advantages of the present invention more obvious and easy to understand, the specific implementation methods of the present invention are described in detail below in conjunction with specific embodiments.

[0038] Example 1

[0039] like Figure 1 、 2 As shown in Figures 4, 5, 6 and 8, a siphon drainage energy-saving humidifier for urban residential areas includes a spray system, a central control system, a water storage system, a conveying system and a water collection system; the spray system is installed at the upper end of the central control system, the central control system and the water storage system are connected through the conveying system, and the water collection system is arranged at the side end of the water storage system; the water collection system guides rainwater from the external environment into the water storage system, and according to the information collected and processed by the central control system, controls the conveying system to guide the rainwater in the water storage system into the spray system, and then sprays it out by the spray system, thereby effectively realizing the recycling of rainwater and cooling of the surrounding environment.

[0040] The spray system comprises a three-column rotary spray head 1, an atomizing bin 20, a spray head vertical rod 2, a water outlet pipe 6, a suction filter 5 and a driving mechanism; the driving mechanism is installed at one end of the inside of the central control system and mainly provides power for the spray system; the output end of the driving mechanism is connected with the suction filter 5, and the side of the suction filter 5 is connected with the water outlet pipe 6 and the built-in filter pipe 14, wherein the other end of the water outlet pipe 6 extends to the atomizing bin 20 through the top of the central control system; under the action of the driving mechanism, the suction filter 5 can pump the rainwater in the water storage bin 8 to the water outlet pipe 6 through the water inlet pipe 16, and then complete the subsequent atomization and spraying operation. Specifically, the motor drives the piston to make reciprocating motion in the pump cylinder through the mechanical transmission device. When the piston moves outward, the volume of the pump cylinder increases, forming a negative pressure, and the water in the barrel pushes the water inlet valve under the action of atmospheric pressure and enters the pump cylinder. When the piston moves inward, the volume of the pump cylinder decreases, the pressure of the water increases, the water inlet valve is closed, the water outlet valve is pushed open, and the water flows out from the water outlet pipe, realizing the water pumping function. The atomizing bin 20 is installed at the top end of the spray head vertical rod 2, the spray head vertical rod 2 is a hollow rod, the water outlet pipe 6 penetrates the spray head vertical rod 2 and is connected with the atomizing bin 20; as a supporting component, it stably fixes the three-column rotary spray head at a suitable height position, ensures that the spray head can normally work within the set space range, guarantees the accuracy and effectiveness of the spray coverage, and at the same time provides the necessary structural stability for the entire atomizing part. The upper end of the atomizing bin 20 is provided with the three-column rotary spray head 1, and the atomizing bin 20 provides a relatively closed space environment for the atomization process, so that the water is uniformly distributed in the bin, the atomization efficiency is improved, the rainwater introduced from the water outlet pipe 6 can form water mist and be delivered to the three-column rotary spray head 1 at the upper end. The three-column rotary spray head 1 can rotate under the driving of the atomized gas through the unique three-column structure design, and in the rotating process, the liquid delivered from the water outlet pipe 6 is sprayed out in a uniform and dispersed manner, so as to form fine mist droplets.

[0041] As preferred, the driving mechanism comprises a storage battery 3 and an electric motor 4, the storage battery 3 is detachably installed inside the central control system, the electric motor 4 is installed at one side of the storage battery 3, and the output end of the electric motor 4 is connected with the suction filter 5. When the working period of the driving mechanism reaches a certain time, the power cannot meet the normal driving effect, at this time, only the storage battery 3 needs to be replaced with a new one. The detachable storage battery 3 of the present application provides stable power source for the electric motor and the entire atomizing part and the operation of the temperature and humidity monitoring, can continuously supply power in the case that the equipment is separated from the external power supply, guarantees the normal operation of the equipment, realizes flexible and convenient mobile operation, and meets the use demand of the atomization function in different environments.

[0042] As preferred, at least three pipes are installed on the three-column rotary spray head 1, and a plurality of air holes are arranged at the top of each pipe. When the three-column rotary spray head 1 rotates, the water mist in the atomizing chamber 20 can be quickly discharged while maintaining good balance.

[0043] The central control system comprises a temperature and humidity processing element 11, a temperature control probe 12, a humidity control probe 13 and a solar energy collection plate 10. The temperature and humidity processing element 11 is installed on the other side of the central control system, the temperature control probe 12 and the humidity control probe 13 are sequentially installed at the bottom of the central control system, and the temperature control probe 12 and the humidity control probe 13 are connected with the temperature and humidity processing element 11 through lines. The data collected from the temperature control probe 12 and the humidity control probe 13 are analyzed and processed. The analog signals transmitted by the probes can be converted into digital signals, and comparative analysis can be carried out according to the preset temperature and humidity standard values. When the actual temperature and humidity values deviate from the set range, control signals are sent in time to adjust the operating state of the related equipment, so as to realize accurate regulation and control of the environment temperature and humidity.

[0044] The temperature control probe 12 adopts high-sensitivity temperature sensing material to real-time perceive the temperature change of the surrounding environment. The collected temperature data are transmitted to the temperature and humidity processing element in the form of electrical signals, and the high-precision characteristics of the temperature control probe 12 ensure the accuracy of temperature data collection, providing reliable data basis for subsequent temperature regulation, so as to timely adjust the equipment operating parameters and maintain the environment temperature in the appropriate range. The humidity control probe 13 utilizes special humidity sensitive elements to quickly and accurately measure the humidity value in the environment. Through interaction with water vapor molecules in the air, the humidity control probe 13 generates electrical signal changes and transmits humidity data to the temperature and humidity processing element. With its good stability and response speed, the humidity control probe 13 provides accurate data support for humidity monitoring, ensuring that the equipment can respond in time and effectively according to the change of the environment humidity.

[0045] The solar energy collection plate 10 is laid at the top of the central control system, and the solar energy collection plate 10 and the temperature and humidity processing element are connected through lines to convert solar energy into electrical energy. The electrical energy can directly charge the battery 3 in the equipment, supplementing the power required for the operation of the equipment. Especially in the environment with sufficient light, the dependence on external power supply can be greatly reduced, and the energy consumption and use cost can be reduced.

[0046] As preferred, the temperature control probe 12 is close to the bottom of the central control system, and the position of the humidity control probe 13 is lower than that of the temperature control probe 12. This can effectively avoid the direct sunlight on the surface of the temperature control probe 12, causing the temperature detection to deviate from the actual environment temperature.

[0047] As preferred, the temperature and humidity processing element 11 is connected with the switch of the battery 3 through a line, when the temperature and humidity processing element 11 receives the signal transmitted by the temperature control probe 12 and the humidity control probe 13, it will quickly process and send corresponding instructions to the switch of the battery 3 through the line, and then control the closing or opening of the switch of the battery 3, so as to start / stop the battery to supply power to the electric motor 4, and control the operation of the suction filter pipe 5.

[0048] The water storage system includes a water storage bin 8, which is a container for storing water, has a certain capacity, can collect and store water introduced from the A-type siphon drainage channel, provides water source guarantee for water recycling of the whole device, ensures that there is enough water supply when misting and other operations are needed, and also plays a role in buffering and adjusting water volume.

[0049] The water collection system includes A-type siphon drainage channels 7; the bottom side end of the water storage bin 8 is provided with a plurality of groups of A-type siphon drainage channels 7, the bottom of each group of A-type siphon drainage channels 7 is wider than the top, and the bottom end of the A-type siphon drainage channel 7 is provided with a plurality of groups of through holes on both sides, which not only increases the water collection area and improves the water collection efficiency, but also effectively prevents sundries from entering the drainage channel, ensures the smoothness of drainage, and realizes efficient collection of excess water in the environment.

[0050] As preferred, the A-type siphon drainage channel 7 is at least four groups, which are evenly installed around the water storage bin 8 to improve the water collection efficiency.

[0051] The conveying system includes a filtering mechanism, a water inlet pipe 16, an internal filtering pipe 14, and a corrugated external stand pipe 15. The internal filtering pipe 14 penetrates through the top end of the water storage bin 8 and is installed inside the water storage bin 8. The top end is connected with the central control system. The water inlet pipe 16 is installed inside the internal filtering pipe 14 and is responsible for conveying water in the water storage bin to the water-using part, such as the front end of the suction filter 5 of the atomizing part. The pipe diameter and material design ensure that the water flow can be stably conveyed under pressure, meet the requirements of each part of the device for water volume and water pressure, and ensure the normal operation of the device. The internal filtering pipe 14 is installed inside the water storage bin 8 to further filter the water entering the water storage bin. Through physical filtration, small particles, impurities, and microorganisms in the water are removed, the quality of the stored water is improved, the influence of these impurities on the subsequent operation of the device is prevented, and the normal operation of the entire device system is ensured. The corrugated external stand pipe 15 is sleeved around the internal filtering pipe 14, which not only serves as a channel connecting the water storage bin with the outside and guides the water flow during drainage, but also increases the strength and flexibility of the pipe, making it adaptable to different installation environments and pressure changes, while also helping to reduce the impact force of the water flow on the pipe wall, prolonging the service life of the pipe.

[0052] As preferred, the filtering mechanism is installed at the bottom end inside the built-in filter pipe 14, and sequentially includes the geotextile filter layer 9, the coarse sand filter layer 19, the fine sand filter layer 18 and the activated carbon filter layer 17 from bottom to top; the coarse sand filter layer 19 adopts sand particles with a larger particle size, and is mainly used for intercepting impurities with a larger particle size in water, such as sand, leaves and the like, as the first line of defense for filtering, can quickly and effectively remove larger suspended solids in water, prevent these large-particle impurities from causing blockage to the subsequent filter layers, protect the normal operation of the entire filtering system, and prolong the maintenance period of the equipment. The fine sand filter layer 18 is composed of fine sand particles, can intercept and filter fine particles, suspended solids and the like in the water flow, block the impurities in the water on the surface of the filter layer through the tiny pores between the sand particles, further reduce the turbidity of the water, improve the clarity of the water, reduce the filtering burden of the subsequent coarse sand filter layer, and ensure the efficient operation of the entire filtering system. The activated carbon filter layer 17 is filled with activated carbon, has a rich microporous structure and a large specific surface area, and can remove odors, pigments, organic matter and part of heavy metal ions in water through adsorption. When the water flow passes through the activated carbon filter layer, these impurities are adsorbed on the surface of the activated carbon, thereby effectively improving the water quality, improving the purity of the water, and reducing the adverse effects on the equipment and subsequent use process.

[0053] The rainwater collected is filtered through the geotextile filter layer 9, the coarse sand filter layer 19, the fine sand filter layer 18 and the activated carbon filter layer 17 in sequence, impurities and harmful substances are removed, and the water quality entering the spray system is ensured to be clean.

[0054] Embodiment 2

[0055] As Figure 3 With 7 As shown in the figure, a use method of a siphon drainage energy-saving humidifier for urban residential areas, the steps are as follows:

[0056] S1: According to the actual situation, a corresponding number of A-type siphon drainage channels 7 are installed on the top plate of the basement of the urban residential area, and are communicated with the water storage bin 8, so that the rainwater accumulated on the top plate of the basement can flow into the water storage bin 8 smoothly;

[0057] S2: The geotextile filter layer 9, the coarse sand filter layer 19, the fine sand filter layer 18 and the activated carbon filter layer 17 are sequentially installed in the water storage bin 8, and the built-in filter pipe 14 is installed in the water outlet pipe 6, so as to ensure the rainwater filtering effect;

[0058] S3: The three-column rotary spray head 1 is installed at a suitable position through the spray head vertical rod 2, the water outlet pipe 6, the filter 5 and the electric motor 4 are connected, and the normal operation of the spray system is ensured;

[0059] S4: install the temperature and humidity processing element 11, the temperature control probe 12 and the humidity control probe 13, so that the temperature and humidity data of the residential area green area can be accurately monitored, and the data is transmitted to the temperature and humidity processing element 11.

[0060] S5: install the solar collector plate 10 and the battery 3, connect the solar collector plate 10 and the battery 3, ensure that solar energy can be successfully converted into electrical energy and stored in the battery 3, and provide power for the operation of the device.

[0061] S6: in actual use, when it rains in summer, the rainwater on the basement roof flows into the water storage bin 8 through the A-type siphon drainage channel 7, is stored in the water storage bin 8 after multi-stage filtration, and the temperature control probe 12 and the humidity control probe 13 monitor the environmental temperature and humidity in real time. When the temperature and humidity processing element 11 determines that spraying humidification is needed according to the monitoring data, the control electric motor 4 is started, and then the filter 5 and the three-column rotary spray head 1 are driven to work, so as to humidify and cool the residential area green area.

[0062] It is obvious for those skilled in the art that the present application is not limited to the details of the above-mentioned exemplary embodiments, and can be realized in other specific forms without departing from the spirit or essential characteristics of the present application. Therefore, the embodiments should be regarded as exemplary and non-limiting, and the scope of the present application is defined by the appended claims rather than the above description, and all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present application.

[0063] In addition, it should be understood that although the present application is described in the form of embodiments, each embodiment does not contain only one independent technical solution, and the description manner of the specification is only for the sake of clarity, and those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be properly combined to form other embodiments which can be understood by those skilled in the art.

Claims

1. A siphon drainage energy saving humidifier for urban residential areas, characterized in that, The utility model provides a rainwater recycling system, which comprises a spraying system, a central control system, a water storage system, a conveying system and a water collecting system.

2. The siphonic drain energy saving humidifier for urban residential areas according to claim 1, characterized by The spraying system comprises three-column rotary spraying heads (1), atomizing chambers (20), spraying head vertical rods (2), water outlet pipes (6), suction filters (5) and a driving mechanism.

3. The siphonic drain energy saving humidifier for urban residential areas according to claim 2, characterized in that, The side of the suction filter (5) is connected with the water outlet pipe (6) and an embedded filter pipe (14).

4. The siphonic drain energy saving humidifier for urban residential areas according to claim 3, characterized in that, The water outlet pipe (6) is connected with the atomizing chamber (20) through the top end of the central control system.

5. The siphonic drain energy saving humidifier for urban residential areas according to claim 2, characterized by, The driving mechanism comprises a battery (3) and an electric motor (4).

6. The siphonic drain energy saving humidifier for urban residential areas according to claim 1, characterized by The central control system comprises a temperature and humidity processing element (11), a temperature control probe (12), a humidity control probe (13) and a solar energy collecting plate (10).

7. The siphonic drain energy saving humidifier for urban residential areas according to claim 1, characterized by The water storage system comprises a water storage chamber (8), and the water collecting system comprises A-type siphon drainage channels (7).

8. The siphonic drain energy saving humidifier for urban residential areas according to claim 7, characterized by The A-type siphon drainage channels (7) are at least four groups, and the A-type siphon drainage channels (7) are evenly arranged around the water storage chamber (8).

9. The siphonic drain energy saving humidifier for urban residential areas according to claim 1, characterized by, The conveying system comprises a filtering mechanism, a water inlet pipe (16), the embedded filter pipe (14) and a corrugated outer stand pipe (15).

10. A method of using the siphon drainage energy-saving humidifier for urban residential areas according to any one of claims 1 to 9, characterized in that, The steps are as follows: S1: install corresponding numbers of A-type siphon drainage channels (7) on the basement roof of the urban residential area, and make the A-type siphon drainage channels (7) communicate with the water storage chamber (8), so that the rainwater accumulated on the basement roof can flow into the water storage chamber (8) smoothly; S2: Install geotextile filter layer (9), coarse sand filter layer (19), fine sand filter layer (18), and activated carbon filter layer (17) in the water storage bin (8) in turn, and install the built-in filter pipe (14) in the water outlet pipe (6) to ensure the rainwater filtration effect; S3: Install the three-column rotating spray head (1) at a suitable position through the spray head vertical rod (2), connect the water outlet pipe (6), the filter (5), and the electric motor (4), and ensure the normal operation of the spray system; S4: Install the temperature and humidity processing element (11), the temperature control probe (12), and the humidity control probe (13) to accurately monitor the temperature and humidity data of the residential area green area and transmit the data to the temperature and humidity processing element (11); S5: Install the solar collector plate (10) and the storage battery (3), connect the solar collector plate (10) and the storage battery (3), ensure that the solar energy can be successfully converted into electrical energy and stored in the storage battery (3), and provide power for the operation of the device; S6: In actual use, when it rains in summer, the rainwater on the basement roof flows into the water storage bin (8) through the A-type siphon drainage channel (7), is stored in the water storage bin (8) after multi-stage filtration, and the temperature control probe (12) and the humidity control probe (13) monitor the environmental temperature and humidity in real time. When the temperature and humidity processing element (11) determines that spraying and humidification are needed according to the monitoring data, the electric motor (4) is started to drive the filter (5) and the three-column rotating spray head (1) to work, and the residential area green area is humidified and cooled.