A multifunctional prefabricated water room

CN224769897UActive Publication Date: 2026-09-18SHANDONG MINGHE WATER IND CO LTD
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Patent Information

Application Number
CN202522239530.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-23
Publication Date
2026-09-18
Estimated Expiration
2035-10-23

AI Technical Summary

Technical Problem

作业空间极为局促,不仅使得维护、检修、抄读工作异常困难,效率低下,劳动强度大,还存在滑倒、磕碰等安全隐患

Benefits of technology

本实用新型通过在水井口的上方安装房屋本体,并在房屋本体的屋身内壁安装保温板,同时在房屋本体的空腔内安装了与水井内的供水管和用户管道连接的供水设备。房屋本体的设置在冬季时可以对供水设备进行保温,防止其冻坏,同时,也便于人工对供水设备的维修和供水数据的查看。而供水设备中的增压泵可以在供水压力不足时提供动力,以满足用户正常用水需求。

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model belongs to the field of building construction, and particularly relates to a multifunctional prefabricated water room, including a house body located above a wellhead. The house body has a cavity within it, and a water supply device for connecting to user pipelines is installed within the cavity. The house body includes a roof base located above the wellhead, a roof body on the roof base, and a roof at the top of the roof body. Insulation panels are installed on the inner walls of each enclosure panel and the inner walls of the door panels of the roof body. The water supply device includes a first connecting pipe that connects to the water supply pipe in the well and the user pipeline, and a pressure booster is detachably installed on the first connecting pipe to increase water pressure. The house body of this utility model can insulate the water supply device in winter, preventing it from freezing. It also facilitates manual maintenance of the water supply device and monitoring of water supply data. The booster pump in the water supply device can provide power when the water supply pressure is insufficient to meet the user's normal water needs.
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Description

Technical Field

[0001] This utility model belongs to the field of housing construction, and in particular relates to a multifunctional prefabricated water room. Background Technology

[0002] In existing rural, suburban, and some older residential water supply systems, key facilities such as water pipes, valves, and water meters are installed directly underground in wells. These facilities are deeply embedded within the wells, requiring maintenance or meter reading personnel to remove heavy well covers and then crouch, bend, or even stoop to enter the narrow, dark well chambers to operate. This extremely cramped working space not only makes maintenance, repair, and meter reading exceptionally difficult, inefficient, and labor-intensive, but also poses safety hazards such as slipping and bumping. Furthermore, most existing wells have rudimentary anti-freezing measures, typically relying only on well covers or a small amount of insulation material wrapped around the pipes. In harsh winters, these wells are prone to freezing damage, causing water leaks and resulting in economic losses for residents and water supply companies. Additionally, rural water users are not concentrated in one area, and the narrow pipes and low pressure at the end of the supply chain severely impact normal water usage for these users. Utility Model Content

[0003] The purpose of this utility model is to provide a multifunctional prefabricated water room to solve the technical problems mentioned in the background art.

[0004] To achieve the above objectives, the specific technical solution of this utility model for a multifunctional prefabricated water room is as follows: A multifunctional prefabricated water room includes a main body located above a wellhead. The main body has a cavity containing water supply equipment for connecting to user pipelines, with the inlet of the equipment connected to the water supply pipe inside the well. The main body includes a floor above the wellhead, a roof body on the floor, and a roof at the top of the roof body. A rotatable door is mounted on the perimeter of the roof body. Monitoring equipment and lighting are located within the cavity of the main body. Ventilation openings are located on the opposing perimeter panels of the roof body, and ventilation devices are installed at these openings. Insulation panels are installed on the inner walls of all perimeter panels and the inner walls of the door. The water supply equipment includes a first connecting pipe connected to the water supply pipe inside the well and the user pipeline. A booster pump for increasing water pressure is detachably mounted on the first connecting pipe, and a power supply for the booster pump, monitoring equipment, and lighting is located on the main body. A pressure gauge is mounted on the first connecting pipe next to the booster pump.

[0005] Furthermore, the power supply equipment includes solar panels installed on the roof, and batteries installed in the cavity of the building body, with the batteries connected to monitoring equipment, lighting, and a booster pump, respectively.

[0006] Furthermore, the ventilation device is an openable and closable louver.

[0007] Furthermore, the inner wall of the cavity of the house body is equipped with a water quality detector for water quality monitoring. A second connecting pipe is connected to the first connecting pipe, and the water quality detector is connected to the second connecting pipe. The water quality detector is connected to a battery to provide power to the water quality detector.

[0008] Furthermore, two butterfly valves are installed on the first connecting pipe between the second connecting pipe and the user pipe, and the pressure pump is bolted between the two butterfly valves.

[0009] Furthermore, the user's pipeline is a branch pipe, and a water meter is installed on the branch pipe.

[0010] The multifunctional prefabricated water room of this utility model has the following advantages: This invention involves installing a house body above a wellhead, with insulation panels installed on the inner walls of the house body. A water supply system, connected to the water supply pipes in the well and the user's pipeline, is installed within the cavity of the house body. The house body insulates the water supply system during winter, preventing it from freezing, and also facilitates manual maintenance and monitoring of water supply data. The booster pump within the water supply system provides power when the water pressure is insufficient, ensuring the user's normal water needs are met. Attached Figure Description

[0011] Figure 1 This is a schematic diagram of a multifunctional prefabricated water room structure according to the present invention; Figure 2 This is a schematic diagram of the internal structure of the house body of this utility model; Figure 3 This is a schematic diagram of the water supply equipment of this utility model.

[0012] Explanation of markings in the diagram: 1. Roof body; 2. Roof; 3. Solar panel; 4. Lighting; 5. Monitoring equipment; 6. Ventilation opening; 7. Louver; 8. Door panel; 9. Battery; 10. Water quality detector; 11. First connecting pipe; 111. Water inlet; 112. Water outlet; 12. Butterfly valve; 13. Pressure gauge; 14. Booster pump; 15. Insulation board; 16. Second connecting pipe; 17. Branch pipe; 18. Water meter; 19. Roof base. Detailed Implementation

[0013] To better understand the purpose, structure, and function of this utility model, a multifunctional prefabricated water room of this utility model will be described in further detail below with reference to the accompanying drawings.

[0014] like Figures 1 to 3As shown, this utility model discloses a multifunctional prefabricated water room, comprising a main body located above a wellhead. The main body has a cavity containing water supply equipment for connecting to user pipelines, with the inlet of the equipment connected to a water supply pipe inside the well. Moving the water supply equipment from the well to the cavity of the main body, from underground to above ground, facilitates subsequent manual maintenance and inspection of the equipment and some of the water supply pipelines. This eliminates the complex procedures of traditional methods requiring manual entry into the well, improving the convenience of maintenance and inspection of the water supply pipelines and equipment, and also enhancing worker safety. The placement of the water supply equipment inside the main body provides a safe environment, preventing contamination from soil.

[0015] Specifically, the building structure includes a roof base 19 located above the wellhead, a roof body 1 located on the roof base 19, and a roof 2 located at the top of the roof body 1. A rotatable door panel 8 is mounted on the perimeter of the roof body 1, and the door panel 8 is connected to the roof body 1 via a lock. Personnel can enter the building structure to maintain and inspect the water supply equipment by opening the door panel 8. It is important to note that an opening is provided in the roof base 19, through which the water supply pipe from the well can connect to the water inlet of the water supply equipment. Alternatively, the roof base 1 can be a single, integral panel; holes can be drilled in the roof base 19 during the building structure's installation, depending on the specific needs. To monitor the interior of the building structure in real time, a monitoring device 5 and lighting 4 are installed within the building structure's cavity. The monitoring device 5 is a conventional surveillance camera connected to a remote control console, allowing monitoring of the interior of the building structure's cavity. It should be noted that insulation boards 15 are installed on the inner walls of each enclosure panel of the house body 1 and the inner walls of the door panel 8. In addition, insulation boards 15 are also installed on the inner top surface of the roof 2. This can improve the overall insulation effect of the house body and reduce the risk of water supply equipment freezing in winter.

[0016] To reduce energy consumption and operating costs, a power supply system is installed on the building structure to power the monitoring equipment 5 and the lighting fixtures 4. The power supply system includes a solar panel 3 mounted on the roof and a battery 9 housed within the building's cavity, connected to the monitoring equipment 5 and the lighting fixtures 4. The battery 9 is mounted on the side wall of the building structure 1 via a bracket, and is positioned above the roof floor 19 to prevent water contact and damage in case of leaks in the water supply system. As a further improvement, such as... Figure 1 and Figure 2 As shown, the roof 2 is cone-shaped, and the solar panel 3 is set along with the roof 2. This not only effectively increases the light-receiving efficiency of the solar panel 3, but also gives the solar panel 3 good drainage properties, enabling it to quickly guide rainwater, dew, or dust down, reducing the accumulation of impurities and rainwater.

[0017] Specifically, ventilation openings 6 are provided on the opposing panels of the building body 1, and ventilation devices are installed on the ventilation openings 6. The ventilation devices allow air circulation inside the building body, enabling the internal air to exchange with the outside air, preventing the building body from getting damp and causing bacterial growth. The ventilation device is preferably an openable and closable louver 7. The louver 7 can be either automatic or manual. In this embodiment, an automatic louver 7 is preferred. The automatic louver 7 is existing technology. Its internal motor can be connected to a storage battery 9, and the motor of the automatic louver 7 can be connected to a remote control console, so that the automatic louver 7 can be remotely controlled by a person, saving time and effort.

[0018] like Figure 2 and Figure 3 As shown, the water supply equipment includes a first connecting pipe 11 that connects to the water supply pipe in the well and the user's pipeline. The first connecting pipe 11 is horizontally installed at the roof floor 19. A booster pump 14 for increasing water pressure is detachably installed on the first connecting pipe 11, and a storage battery 9 is connected to the booster pump 14. The booster pump 14 is detachably installed on the first connecting pipe 11. When it is necessary to replace, repair, or upgrade the booster pump 14, it is not necessary to cut or replace the entire pipeline; only the booster pump 14 needs to be replaced or repaired, which greatly simplifies the process, shortens downtime, and reduces maintenance costs. A pressure gauge 13 is also installed on one side of the booster pump 14 on the first connecting pipe 11, which can intuitively and in real time read the water pressure value in the pipeline. For ease of understanding, as shown... Figure 3 As shown, the left end of the first connecting pipe 11 is named the inlet end 111, and the right end is named the outlet end 112. The water supply pipe of the well is connected to the inlet end 111 of the first connecting pipe 11, and the outlet end 112 is connected to the user's pipeline.

[0019] Preferably, the inner wall of the cavity of the building body is equipped with a water quality detector 10 for water quality monitoring. A second connecting pipe 16 is connected to the first connecting pipe 11, and the water quality detector 10 is connected to the second connecting pipe 16. The water quality detector 10 is connected to a battery 9 to power the water quality detector 10. Through the water quality detector 10, the water quality in the water supply pipeline can be continuously and automatically monitored, eliminating the need for manual periodic sampling and testing, greatly improving monitoring efficiency and timeliness, and enabling the immediate detection of water quality anomalies. Furthermore, the water quality detector 10 can perform online detection of water turbidity, HP value, and CIO. A second connecting pipe 16 is connected to the first connecting pipe 11. The second connecting pipe 16 acts as a branch flow path, continuously or intermittently guiding water samples from the main water pipe to the sampling port of the water quality detector 10. When water flows through the detection chamber inside the detector, the water quality detector 10 detects the water quality and transmits the detected data to the control panel for staff to view. The water quality detector 10 is existing technology and will not be described in detail here.

[0020] Specifically, two butterfly valves 12 are installed on the first connecting pipe 11 between the second connecting pipe 16 and the user pipe, and the booster pump 14 is bolted between the two butterfly valves 12. The arrangement of the two butterfly valves 12 constitutes a standard maintenance isolation section. When it is necessary to disassemble, repair, or replace the booster pump 14, simply close the two butterfly valves 12 upstream and downstream to completely isolate the booster pump 14 from the main water supply system, achieving convenient maintenance. It should be noted that the user pipe is a branch pipe 17, and a water meter 18 is installed on the branch pipe 17.

[0021] It is worth mentioning that the water meter 18, booster pump 14, and water quality detector 10 mentioned above can be used individually, together, or in pairs on the water supply system within the building. This flexible combination allows for "on-demand" configuration of equipment functions based on the specific needs of each water supply point. For example, in areas with sufficient water pressure, only the water meter 18 can be installed for metering. In areas with insufficient water pressure but stable water quality, a combination of "water meter 18 + booster pump 14" can be used. In areas requiring intensive water quality monitoring, a solution of "water meter 18 + water quality detector 10" or a combination of all three can be used. This flexibility enables the water supply system to accurately match the actual requirements of different users or different scenarios.

[0022] Usage: Water flows through the water supply pipe in the well into the first connecting pipe 11. The water in the first connecting pipe 11 then passes through the pressure gauge 13, the second connecting pipe 16, the butterfly valve 12, and the pressure pump before finally entering the user's pipeline. To increase water pressure, simply start the pressure pump. The water meter 18 installed on the user's pipeline monitors the user's water consumption. When maintenance of the water supply equipment is required, personnel can open the door panel 8 to enter the building and perform maintenance on the equipment.

[0023] It is understood that this utility model has been described through some embodiments, and those skilled in the art will recognize that various changes or equivalent substitutions can be made to these features and embodiments without departing from the spirit and scope of this utility model. Furthermore, under the teachings of this utility model, these features and embodiments can be modified to adapt to specific situations and materials without departing from the spirit and scope of this utility model. Therefore, this utility model is not limited to the specific embodiments disclosed herein, and all embodiments falling within the scope of the claims of this application are within the protection scope of this utility model.

Claims

1. A multifunctional prefabricated water room, characterized in that: It includes a house body located above the wellhead, with a cavity inside the house body, and a water supply device for connecting to user pipelines is installed in the cavity, and the water inlet of the water supply device is connected to the water supply pipe inside the well. The house body includes a roof base (19) located on the top surface of the well opening, a house body (1) located on the roof base (19) and a roof (2) located at the top of the house body (1). A door panel (8) that can be opened and closed is rotatably provided on the surrounding panel of the house body (1). The monitoring equipment (5) and lighting (4) are located in the cavity of the house body; Ventilation openings (6) are provided on the opposing panels on the roof body (1), and ventilation devices are provided on the ventilation openings (6); Insulation boards (15) are provided on the inner walls of each enclosure panel of the roof body (1) and the inner walls of the door panel (8). The water supply equipment includes a first connecting pipe (11) that connects to the water supply pipe in the well and the user pipeline, and a booster pump (14) for boosting water pressure is detachably installed on the first connecting pipe (11), and a power supply device for powering the booster pump (14), monitoring equipment (5) and lighting (4) is installed on the main body of the house. A pressure gauge (13) is provided on the first connecting pipe (11) on one side of the booster pump (14).

2. The multifunctional prefabricated water room according to claim 1, characterized in that: The power supply equipment includes a solar panel (3) installed on the roof, a storage battery (9) installed in the cavity of the house body, and the storage battery (9) is connected to the monitoring equipment (5), the lighting lamp (4) and the booster pump (14) respectively.

3. A multifunctional prefabricated water room according to claim 2, characterized in that: The ventilation device is an openable and closable louver (7).

4. A multifunctional prefabricated water room according to any one of claims 1 to 3, characterized in that: The cavity inner wall of the house body is provided with a water quality detector (10) for water quality monitoring. A second connecting pipe (16) is connected to the first connecting pipe (11), and the water quality detector (10) is connected to the second connecting pipe (16). The water quality detector (10) is connected to the storage battery (9) to power the water quality detector (10).

5. A multifunctional prefabricated water room according to claim 4, characterized in that: Two butterfly valves (12) are provided on the first connecting pipe (11) between the second connecting pipe (16) and the user pipe, and the pressure pump is bolted between the two butterfly valves (12).

6. A multifunctional prefabricated water room according to claim 5, characterized in that: The user pipeline is a branch pipe (17), and a water meter (18) is installed on the branch pipe (17).