An emergency treatment device for water dripping on a high and large clearance roof

CN122610703APending Publication Date: 2026-08-21CHINA RAILWAY TUNNEL SURVEY & DESIGN INST +1
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Patent Information

Application Number
CN202610647908.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-05-12
Publication Date
2026-08-21

AI Technical Summary

Technical Problem

此类顶板渗漏点位分散、隐蔽性强,且受建筑高度与结构形式限制,紧急处理时同样面临高空作业风险高、渗漏溯源困难、无法短期内解决等同类难题

Benefits of technology

1.安装便捷、安全高效:本发明通过无人机辅助安装,实现设备的高空精准定位与挂载,无需人工高空作业,降低了作业风险,提高了安装效率;无人机挂载接口模块采用标准快拆连接座,可与消费级无人机适配,通用性强。

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a high-clearance roof drip emergency treatment device, relates to the technical field of ceiling drip treatment, and comprises a ceiling and a treatment device. The treatment device comprises a UAV mounting interface module, an adaptive ceiling fixing module and a drip collecting-atomizing host. The UAV mounting interface module, the adaptive ceiling fixing module and the drip collecting-atomizing host are detachably connected in sequence. The device effectively solves the problem of inconvenient installation of related equipment in a large building indoor scene, significantly reduces comprehensive (daily inspection and emergency repair / long-term) operation and maintenance costs, and can efficiently eliminate indoor floor water hidden dangers, and is especially suitable for industrial and civil facilities with high ceiling structures, such as industrial plants and commercial venues.
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Description

Technical Field

[0001] This invention relates to the field of ceiling dripping water treatment technology, and in particular to an emergency treatment device for dripping water on tall, clear roofs. Background Technology

[0002] In tall buildings with large spans and high ceilings, various pipes inside the ceiling, such as water supply, drainage, air conditioning, and fire protection pipes, are prone to dripping due to pipe aging, loose connections, and condensation. Emergency solutions often involve installing drip collection devices to maintain the ceiling's normal operation. However, for some special ceiling structures (such as grid ceilings and transparent ceilings), manually installing drip collection devices presents challenges such as high-altitude work risks, low installation efficiency, poor adaptability, and difficulty in providing a permanent solution in the short term.

[0003] In addition, the roof slab of the main structure is prone to developing micro-cracks due to the increasing service life, concrete aging and shrinkage, and temperature stress cracking. During rainy or snowy weather, water accumulated on the roof or upper structure can easily seep into the indoor roof slab along these cracks, forming a continuous dripping. These types of roof slab leaks are scattered and highly concealed, and due to limitations imposed by building height and structural form, emergency treatment also faces similar challenges such as high-altitude operation risks, difficulty in tracing the source of the leak, and the inability to resolve the issue in a short period of time.

[0004] Currently, there are two main ways to deal with dripping water from suspended ceilings: one is to use a traditional drip collection tray, which is fixed to the bottom of the ceiling with bolts, clips, etc. After collecting the dripping water, it needs to be emptied manually periodically. This not only has high maintenance costs, but if it is not emptied in time, water will overflow, making the floor slippery and causing safety accidents; the other is to use an atomizer for active humidification, but this device does not have a drip collection function and cannot passively deal with dripping water from suspended ceilings, and it also requires manual installation.

[0005] In addition, existing technologies also include drone-mounted aerial work equipment, but these are mainly used for active operation scenarios such as agricultural spraying, fire rescue, and environmental monitoring, and do not involve technical solutions for drone-assisted installation of ceiling drip water collection and atomization devices.

[0006] Therefore, there is an urgent need for a ceiling dripping water treatment device that is easy to install, securely fixed, requires no manual intervention, and can achieve harmless treatment of dripping water. Developing such an integrated collection-treatment device can, on the one hand, reduce the risks of high-altitude operations and improve installation and operation efficiency by relying on intelligent equipment; on the other hand, it can effectively collect and harmlessly treat ceiling dripping water. Summary of the Invention

[0007] To address the aforementioned technical problems, this invention discloses an emergency treatment device for dripping water from tall, clear-roofed roofs, comprising a ceiling and a treatment device. The treatment device includes a UAV mounting interface module, an adapter ceiling fixing module, and a dripping water collection-atomizing host, which are sequentially and detachably connected. The drone mounting interface module includes a standard quick-release connector, a miniature camera, and a wireless signal transmitter. The bottom of the standard quick-release connector is compatible with existing consumer-grade drone mounts, and the top of the standard quick-release connector is connected to an compatible ceiling mounting module. The ceiling mounting module is connected to a mounting unit, which is at least two of the following: a suction cup mounting unit, a magnet mounting unit, and a rotating hook mounting unit. The drip collection-atomizing host includes a funnel-shaped drip collection tray, a filter assembly, and a water tank. The funnel-shaped drip collection tray is connected to the filter assembly via a universal joint. The filter assembly is connected to the water tank. An atomizing assembly is fixedly installed on one side of the water tank, and an alarm assembly is fixedly installed on the other side of the water tank to remotely issue an alarm signal when the drip collection-atomizing host malfunctions. A power supply module for power supply, a control module for controlling the atomizing assembly, and a water level detection component for monitoring the water level are fixedly installed above the water tank.

[0008] Furthermore, the filter assembly employs a detachable filter screen, which is located at the outlet at the bottom of the funnel-shaped drip collection tray and is used to filter impurities in the water, facilitating regular cleaning and replacement.

[0009] Furthermore, the water level detection component is an infrared water level sensor or a float water level sensor, the water level detection component is electrically connected to the control module, and the water level detection component is preset with a high water level threshold and a low water level threshold.

[0010] Furthermore, the atomizing component adopts an ultrasonic atomizer with an atomized particle size of 5-10μm, ensuring rapid evaporation after atomization and preventing secondary dampness on surrounding walls and equipment. The nozzle of the ultrasonic atomizer is equipped with a self-cleaning structure to prevent impurities from clogging the atomization channel.

[0011] Furthermore, the power module is a rechargeable lithium battery with a battery life of ≥72 hours. The power module has a reserved solar charging interface, and an external solar charging panel can be connected to extend the battery life. The power module is electrically connected to the control module and the atomizing component.

[0012] The control module is equipped with a microcontroller with a wireless communication unit, which remotely transmits the device's operating status, power level, and water level information.

[0013] The alarm component sends alarm information to the ground terminal via wireless signal when the device battery level is below 10%, the fixing unit becomes loose, or the filter component becomes clogged.

[0014] The advantages of this invention compared to the prior art are: 1. Convenient, safe and efficient installation: This invention uses drone-assisted installation to achieve precise high-altitude positioning and mounting of equipment, eliminating the need for manual high-altitude operations, reducing operational risks and improving installation efficiency; the drone mounting interface module adopts a standard quick-release connector, which is compatible with consumer-grade drones and has strong versatility.

[0015] 2. Secure Fixing and Wide Adaptability: The ceiling fixing module of this invention includes three fixing units: suction cup, magnet, and rotating hook, which can be adapted to various types of ceilings such as smooth ceilings, metal ceilings, and grid ceilings. The miniature air pump of the suction cup fixing unit, the powerful permanent magnet of the magnet fixing unit, and the barbed structure of the rotating hook fixing unit all ensure the firmness of the fixation between the device and the ceiling. The universal joint connection design can adjust the angle of the device's drip collection to ensure maximum drip collection.

[0016] 3. Unattended and harmless treatment: The drip collection-atomizing host of this invention realizes the integrated treatment of drip collection and atomization. The water level detection component can monitor the water volume in real time, and the control module can automatically control the start and stop of the atomization component according to the water level, without the need for manual emptying; the ultrasonic atomizer atomizes the water into tiny particles of 5-10μm, which can evaporate quickly after being sprayed into the air, thus avoiding the problem of slippery water on the ground from the root and preventing secondary dampness.

[0017] 4. High level of intelligence and low maintenance cost: The control module of this invention has a built-in wireless communication unit, which can remotely monitor the working status, power, water level and other information of the equipment; the alarm component can send alarm information in time when the equipment is abnormal, which facilitates timely maintenance; the detachable filter, self-cleaning atomizing nozzle and modular design all reduce the maintenance cost of the equipment. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the overall structure of the present invention.

[0019] Figure 2 This is a schematic diagram of the interface module structure for mounting a drone.

[0020] Figure 3 This is a schematic diagram of the fixed unit structure of the present invention.

[0021] Figure 4 This is a schematic diagram of the drip water collection-atomizing host structure of the present invention.

[0022] Reference numerals: 1-UAV mounting interface module; 2-Standard quick-release connector; 3-Miniature camera; 4-Wireless signal transmitter; 5-Ceiling mounting module; 6-Mounting unit; 7-Drip collection-atomizing host; 8-Funnel-shaped drip collection tray; 9-Filter assembly; 10-Water level detection assembly; 11-Atomizing assembly; 12-Water tank; 13-Power module; 14-Control module; 15-Alarm assembly; 16-Drip point; 17-Ceiling. Detailed Implementation

[0023] It should be noted that, unless otherwise specified, the embodiments and features described in the present invention can be combined with each other.

[0024] In the description of this invention, it should be understood that the terms "center," "longitudinal," "lateral," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicating orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, are only for the convenience of describing the invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of the invention. Furthermore, the terms "first," "second," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, a feature defined with "first," "second," etc., may explicitly or implicitly include one or more of that feature. In the description of this invention, unless otherwise stated, "a plurality of" means two or more.

[0025] In the description of this invention, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this invention based on the specific circumstances. The specific embodiments of this invention are described in detail below. These embodiments are based on the technical solution of this invention and provide detailed implementation structures, but the scope of protection of this invention is not limited to the following embodiments.

[0026] Example: Figures 1-4As shown, an emergency treatment device for dripping water on a tall, clear roof includes a ceiling 17 and a treatment device. There are dripping points 16 on the ceiling 17. The treatment device includes a UAV mounting interface module 1, an adapter ceiling fixing module 5, and a dripping water collection-atomizing host 7. The UAV mounting interface module 1, the adapter ceiling fixing module 5, and the dripping water collection-atomizing host 7 are detachably connected in sequence.

[0027] The drone mounting interface module 1 is mainly used to support the adapter ceiling fixing module 5 and the drip collection-atomizing host 7 and connect to the consumer drone. The drone mounting interface module 1 includes a standard quick-release connector 2, a miniature camera 3 and a wireless signal transmitter 4. The bottom of the standard quick-release connector 2 is adapted to the existing consumer drone mounting frame, and the top of the standard quick-release connector 2 is connected to the adapter ceiling fixing module 5. The miniature camera 3 transmits the position image of the ceiling 17 in real time, and the wireless signal transmitter 4 realizes the signal interaction with the ground control terminal.

[0028] The ceiling mounting module 5 is connected to a mounting unit 6, which is at least two of the following: a suction cup mounting unit, a magnetic mounting unit, and a rotating hook mounting unit. The mounting unit 6 can be quickly disassembled and replaced for easy maintenance. The suction cup mounting unit has a built-in miniature air pump to enhance the adhesion to smooth ceiling surfaces. The magnetic mounting unit uses a powerful permanent magnet and is suitable for metal ceilings or keels. The rotating hook mounting unit has a miniature camera 3 mounting unit with a 60° rotatable elastic hook. The hook head has a barbed structure and is suitable for fixing gaps in grid ceilings.

[0029] First, install the drip collection-atomizing host 7 and the fixing unit 6 suitable for the ceiling 17 on the adapter ceiling fixing module 5. Connect the adapter ceiling fixing module 5 to the top of the drone mounting interface module 1. Then, manually control the consumer-grade drone carrying the processing device to reach below the dripping point 16 on the ceiling 17. Then, make gradual adjustments based on the real-time image transmitted by the miniature camera 3 until the funnel-shaped drip collection tray 8 on the drip collection-atomizing host 7 is precisely aligned with the dripping point 16.

[0030] When an abnormality occurs in the fixing state between the fixing unit 6 and the ceiling 17, the abnormal signal is fed back to the ground terminal through the wireless signal transmitter 4 on the adapter ceiling fixing module 5. The drip water collection-atomizing host 7 automatically suspends the processing flow. After the staff adjusts and restores the normal fixing state, it continues to operate.

[0031] The drip collection-atomizing host 7 includes a funnel-shaped drip collection tray 8, a filter assembly 9, and a water tank 12. The funnel-shaped drip collection tray 8 and the filter assembly 9 are connected by a universal joint. The filter assembly 9 is connected to the water tank 12. An atomizing assembly 11 is fixedly installed on one side of the water tank 12. An alarm assembly 15 is fixedly installed on the other side of the water tank 12 to remotely issue an alarm signal when the drip collection-atomizing host 7 malfunctions. A power supply module 13 for power supply, a control module 14 for controlling the atomizing assembly 11, and a water level detection assembly 10 for monitoring the water level are fixedly installed on the top of the water tank 12.

[0032] The dripping water on the ceiling 17 is first collected by the funnel-shaped drip collection tray 8, and then filtered by the filter component 9. When the collected water reaches the preset high water level threshold as monitored by the water level detection component 10, the control module 14 receives a real-time signal from the water level detection component 10. Subsequently, the control module 14 controls the atomizing component 11 to atomize and spray the collected water. When the water level in the water tank 12 is lower than the preset low water level threshold, the control module 14 controls the atomizing component 11 to turn off. The atomization amount of the atomizing component 11 can be dynamically adjusted by the control module 14 according to the ambient humidity. When the ambient humidity is higher than 60%, the atomization amount is reduced, and when the ambient humidity is lower than 40%, the atomization amount is increased, realizing unattended operation of dripping water. During the process, the power module 13 is used to supply power to all electrical components in the processing device.

[0033] The filter assembly 9 uses a detachable filter screen, which is located at the outlet at the bottom of the funnel-shaped drip collection tray 8 and is used to filter impurities in the water, making it convenient for regular cleaning and replacement.

[0034] The water level detection component 10 is an infrared water level sensor or a float water level sensor. The water level detection component 10 is electrically connected to the control module 14. The water level detection component 10 has preset high water level threshold and low water level threshold. The high water level threshold is 70%-80% of the drip collection tray capacity, and the low water level threshold is 10%-20% of the drip collection tray capacity.

[0035] The atomizing component 11 uses an ultrasonic atomizer with a particle size of 5-10μm, ensuring rapid evaporation after atomization and preventing secondary dampness on surrounding walls and equipment. The ultrasonic atomizer nozzle is equipped with a self-cleaning structure to prevent impurities from clogging the atomization channel.

[0036] The power module 13 is a rechargeable lithium battery with a battery life of ≥72 hours. The power module 13 has a reserved solar charging interface, and an external solar charging panel can be connected to extend the battery life. The power module 13 is electrically connected to the control module 14 and the atomizing component 11.

[0037] The control module 14 is equipped with a microcontroller with a wireless communication unit to remotely transmit equipment operating status, power consumption and water level information.

[0038] When the device power is below 10%, the fixing unit 6 becomes loose, or the filter component 9 becomes clogged, the alarm component 15 sends an alarm message to the ground terminal via a wireless signal.

[0039] The treatment device effectively solves the problem of inconvenient installation of related equipment in large building indoor scenarios, while significantly reducing the overall (daily inspection and emergency maintenance / long-term) operation and maintenance costs, and can efficiently eliminate the hidden danger of water accumulation on indoor floors. It is especially suitable for industrial and civil facilities with high ceiling structures, such as industrial plants and commercial venues.

[0040] Based on the different types of ceiling 17, a suitable fixing unit 6 is selected. Then, the suitable fixing unit 6 and the drip collection-atomizing host 7 are both installed on the suitable ceiling fixing module 5. The suitable ceiling fixing module 5 is then connected to the top of the standard quick-release connector 2. When dripping occurs in the ceiling 17 of large buildings such as industrial plants and commercial venues, a suitable consumer-grade drone is installed at the bottom of the standard quick-release connector 2. The consumer-grade drone carries the drip collection-atomizing host 7 to the location below the dripping point 16 via the bottom of the standard quick-release connector 2. The system controls a consumer-grade drone to precisely position the funnel-shaped drip collection tray 8 of the drip collection-atomizing host 7 at the dripping point 16, and firmly fixes the matching fixing unit 6 to the ceiling 17. The image is transmitted in real time through the miniature camera 3. The fixing status between the fixing unit 6 and the ceiling 17 is fed back to the ground terminal through the wireless signal transmitted by the wireless signal transmitter 4. When the fixing status between the fixing unit 6 and the ceiling 17 is abnormal, the wireless signal transmitter 4 will issue a prompt signal and suspend drip collection. It will continue to work after the fixing status is adjusted and restored to normal.

[0041] The dripping water from the ceiling 17 is first collected by the funnel-shaped drip collection tray 8, then flows through the filter assembly 9 for filtration, and is finally stored in the water tank 12. When the collected water volume reaches the preset high water level threshold as monitored by the water level detection assembly 10, the control module 14 receives the real-time signal from the water level detection assembly 10. Subsequently, the control module 14 controls the activation of the atomizing assembly 11 to atomize and spray the water in the water tank 12. When the water volume in the water tank 12 is lower than the preset low water level threshold, the control module 14 controls the shutdown of the atomizing assembly 11 to stop atomization. The atomization volume of the atomizing assembly 11 can be dynamically adjusted by the control module 14 according to the ambient humidity, thereby achieving non-artificial harmless treatment of the dripping water on the ceiling 17. In the overall process, the power module 13 is specifically responsible for powering the various action links in the dripping water collection-atomizing host 7, and the alarm assembly 15 is responsible for remotely sending an alarm signal to the control center when the dripping water collection-atomizing host 7 malfunctions.

[0042] The above embodiments only illustrate one or more implementations of the present invention, and their descriptions are relatively specific and detailed, but they should not be construed as limiting the scope of the present invention. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of the present invention, and these all fall within the protection scope of the present invention. Therefore, the protection scope of the present invention should be determined by the appended claims.

Claims

1. An emergency treatment device for dripping water on a tall, clear roof, comprising a suspended ceiling (17) and a treatment device, characterized in that: The processing device includes a UAV mounting interface module (1), an adapter ceiling fixing module (5), and a drip water collection-atomizing host (7), which are detachably connected in sequence. The drone mounting interface module (1) includes a standard quick-release connector (2), a miniature camera (3) and a wireless signal transmitter (4). The bottom end of the standard quick-release connector (2) is adapted to the existing consumer drone mounting bracket, and the top end of the standard quick-release connector (2) is connected to the adapted ceiling fixing module (5). The ceiling mounting module (5) is connected to a mounting unit (6), which is at least two of the following: a suction cup mounting unit, a magnet mounting unit, and a rotating hook mounting unit. The drip collection-atomizing host (7) includes a funnel-shaped drip collection tray (8), a filter assembly (9), and a water tank (12). The funnel-shaped drip collection tray (8) and the filter assembly (9) are connected by a universal joint. The filter assembly (9) is connected to the water tank (12). An atomizing assembly (11) is fixedly installed on one side of the water tank (12). An alarm assembly (15) is fixedly installed on the other side of the water tank (12) to remotely issue an alarm signal when the drip collection-atomizing host (7) is in an abnormal state. A power supply module (13) for power supply, a control module (14) for controlling the atomizing assembly (11), and a water level detection assembly (10) for monitoring the water level are fixedly installed above the water tank (12).

2. The emergency treatment device for dripping water on tall, clear roofs as described in claim 1, characterized in that: The filter assembly (9) uses a detachable filter screen, which is set at the outlet at the bottom of the funnel-shaped drip collection plate (8) and is used to filter impurities in the water, making it convenient to clean and replace regularly.

3. The emergency treatment device for dripping water on tall, clear roofs as described in claim 1, characterized in that: The water level detection component (10) is an infrared water level sensor or a float water level sensor. The water level detection component (10) is electrically connected to the control module (14). The water level detection component (10) has preset high water level threshold and low water level threshold.

4. The emergency treatment device for dripping water on a tall, clear roof as described in claim 1, characterized in that: The atomizing component (11) uses an ultrasonic atomizer with a particle size of 5-10μm to ensure rapid evaporation after atomization and prevent secondary dampness on the surrounding walls and equipment. The nozzle of the ultrasonic atomizer is equipped with a self-cleaning structure to prevent impurities from clogging the atomization channel.

5. The emergency treatment device for dripping water on tall, clear roofs as described in claim 1, characterized in that: The power module (13) is a rechargeable lithium battery with a battery life of ≥72 hours. The power module (13) has a reserved solar charging interface, and an external solar charging panel can be connected to extend the battery life. The power module (13) is electrically connected to the control module (14) and the atomizing component (11).

6. The emergency treatment device for dripping water on tall, clear roofs as described in claim 1, characterized in that: The control module (14) is equipped with a micro-microcontroller with a wireless communication unit, which remotely transmits the device's working status, power level, and water level information.

7. The emergency treatment device for dripping water on tall, clear roofs as described in claim 1, characterized in that: When the device power is below 10%, the fixing unit (6) becomes loose, or the filter component (9) becomes clogged, the alarm component (15) sends alarm information to the ground terminal via wireless signal.