Outdoor box type intelligent integrated water supply system
By designing an outdoor box-type intelligent integrated water supply system, the problem of the inability to iterate water supply systems in old urban areas within limited space was solved. Modular installation and automated control were achieved, improving the system's protection level and aesthetics, and adapting to diverse installation needs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-09
- Publication Date
- 2026-03-13
Smart Images

Figure CN223991403U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of secondary water supply technology, specifically an outdoor box-type intelligent integrated water supply system. Background Technology
[0002] In the past, the old city used high-level water towers and rooftop water tanks for domestic water supply, which made it impossible to install the updated water supply system. The limited space and the stress on the roof became problems to be faced in the renovation.
[0003] Therefore, how to rationally optimize the layout and iterate the system within a limited space has become an urgent technical problem to be solved. Summary of the Invention
[0004] The purpose of this utility model is to address the above-mentioned shortcomings by providing an outdoor box-type intelligent integrated water supply system, which effectively solves the problem of not being able to iterate the water supply system in a limited space, thereby avoiding the situation of limited space and roof installation restrictions.
[0005] To achieve the above objectives, an outdoor box-type intelligent integrated water supply system is designed, including a soundproof box. The soundproof box is internally divided into an electrical control chamber, a pump assembly chamber, a heat dissipation chamber, and a water quality testing chamber. The electrical control chamber and the water quality testing chamber are both located on one side of the pump assembly chamber, and the heat dissipation chamber is located above the pump assembly chamber. The pump assembly chamber includes a motor 206, a water pump 207, a pressure tank 208, a ball valve 210, an outlet ball valve 211, an outlet main pipe 212, a unit 214, an inlet ball valve 215, an inlet main pipe 216, and a digital integrated controller 219. The inlet main pipe 216 is connected to the inlet ball valve 215, and the inlet... The other end of ball valve 215 is connected to the inlet of water pump 207, which is fixed on unit 214. Water pump 207 is connected to the output of motor 206, and a digital integrated controller 219 is connected to motor 206. The digital integrated controller 219 drives motor 206 to drive impeller of water pump 207 to pressurize and deliver fluid to outlet. The outlet of water pump 207 is connected to outlet ball valve 211, and the other end of outlet ball valve 211 is connected to outlet main pipe 212. Ball valve 210 is connected to outlet main pipe 212 and is connected to pressure tank 208 through ball valve 210. Pressure tank 208 is used for differential pressure replenishment.
[0006] Furthermore, the soundproof enclosure includes a shell 115, reinforcing ribs 204, an electrically controlled front door 218, a first side panel 203, a second side panel 205, and a base 109. The shell 115, reinforcing ribs 204, and electrically controlled front door 218 are fixed on the base 109. The base 109 has a forklift hole 107. The first side panel 203 and the second side panel 205 are opened or closed by snaps 202. A top cover 201 is provided on the top of the shell 115, and a camera 110 is installed on the top cover 201, which further realizes the diversification and modularity of the system in an effective space.
[0007] Furthermore, the front face of the electrical control chamber is provided with an HMI 101, a viewing window 102, an indicator light 103, a door lock 104, and an emergency stop button 220. The HMI 101 is used to display and collect data. The HMI 101 communicates with the digital integrated controller 219 via CAN. The viewing window 102 is used to view the data displayed by the internal HMI 101 from the outside. The indicator light 103 includes a power indicator light, a running indicator light, and a fault indicator light. The door lock 104 is installed on the door panel of the electrical control chamber. The lower part of the electrical control chamber is provided with an incoming cable chamber 106, which is used to connect external cables and communication cables, thereby effectively protecting electrical components and further improving the protection level of the control cabinet.
[0008] Furthermore, the heat dissipation chamber includes a heat dissipation fan 114, a filter screen 113, a viewing window 112, and a filter hole 111. The heat dissipation fan 114 is embedded in the filter screen 113, the filter screen 113 is installed in the filter hole 111, and is controlled by a temperature control switch. The viewing window 112 is used to view the operation of the heat dissipation fan 114.
[0009] Furthermore, the water quality testing chamber includes a water quality testing device 301, a pipeline 302, and a ball valve 303. The water quality testing device 301 is connected to the pipeline 302, and the other end of the pipeline 302 is connected to the pump chamber via the ball valve 303. The effluent from the pump chamber enters the pipeline 302 through the ball valve 303 and is transported to the water quality testing device 301 for testing, thereby preventing substandard fluid from entering the user's home.
[0010] Furthermore, a shock-absorbing pad is sandwiched between the water pump 207 and the unit 214, and an exhaust valve 217 is provided on the water pump 207. The exhaust valve 217 is used to discharge the air inside the water pump 207, thereby reducing the cavitation of the pump unit.
[0011] Furthermore, a clamp check valve 209 is installed between the water pump 207 and the outlet ball valve 211. The clamp check valve 209 is used to prevent the backflow of the pressurized fluid. A pressure gauge 108 is installed at the outlet main pipe 212. A wire trough 213 is provided at the unit 214. The wire trough 213 is used to place wires and cables.
[0012] Compared with the prior art, this utility model has the following advantages:
[0013] (1) This utility model effectively solves the problem of not being able to iterate the water supply system in a limited space by adopting an integrated installation and embedded layout outdoor water supply system, thereby avoiding the situation of limited space and roof installation.
[0014] (2) The integrated design of this utility model reduces the construction period and cost. It only requires the pump set and inlet / outlet water pipes to be reasonably configured according to the original total pipe diameter and directly connected and installed on the outdoor reference.
[0015] (3) This utility model adopts a new structural design, a multi-chamber integrated design, and modular installation and replacement of the system according to different functions, so as to realize the diversification and modularization of the system in an effective space;
[0016] (4) This utility model has been optimized in terms of protection level. The control cabinet is embedded in the integrated water supply system, which reduces the number of times it needs to be moved during production, transportation, installation and storage. It can be moved in one step by forklift or crane.
[0017] (5) The protection level of this utility model has been improved. The HMI touch screen and indicator lights are protected by setting transparent windows, which also improves the protection level of the control cabinet.
[0018] (6) This utility model enhances the functionality of the system structure and highlights the company logo through the LED display device, making the overall appearance more beautiful with minimal brightness;
[0019] (7) This utility model adopts an upper integrated ventilation mode, which can operate one or more axial flow fans and automatically adjust according to the temperature inside the chamber;
[0020] In summary, this utility model has a reasonable structural design. It is prefabricated and installed according to the on-site working conditions. After the system is produced, it can be installed in place in one go without the need for relocation and recalibration. It is worth promoting and applying. Attached Figure Description
[0021] Figure 1 This is a front view structural diagram of the present invention;
[0022] Figure 2 This is a side view of the structure of this utility model;
[0023] Figure 3 This is a top view of the structure of this utility model;
[0024] In the diagram: 101. HMI; 102. View Window 1; 103. Indicator Light; 104. Door Lock; 105. Logo Backlight; 106. Incoming Cable Chamber; 107. Forklift Hole; 108. Pressure Gauge; 109. Base; 110. Camera; 111. Filter Hole; 112. View Window 2; 113. Filter Screen; 114. Cooling Fan; 115. Housing; 201. Top Cover; 202. Snap Fastener; 203. Side Panel 1; 204. 205. Reinforcing rib; 206. Side plate 2; 207. Motor; 208. Water pump; 209. Pressure tank; 2000. Wafer check valve; 210. Ball valve; 211. Outlet ball valve; 212. Outlet main pipe; 213. Cable tray; 214. Unit; 216. Inlet main pipe; 217. Air vent valve; 218. Electrically controlled front door; 219. Digital integrated controller; 220. Emergency stop button; 301. Water quality testing device; 302. Piping; 303. Ball valve 2. Detailed Implementation
[0025] As attached Figure 1 To be continued Figure 3As shown, this utility model provides an outdoor box-type intelligent integrated water supply system, including a soundproof box. The soundproof box is internally divided into an electrical control chamber, a pump set chamber, a heat dissipation chamber, and a water quality testing chamber. The electrical control chamber and the water quality testing chamber are both located on one side of the pump set chamber, and the heat dissipation chamber is located above the pump set chamber. The pump set chamber includes a motor 206, a water pump 207, a pressure tank 208, a ball valve 210, an outlet ball valve 211, an outlet main pipe 212, a unit 214, an inlet ball valve 215, an inlet main pipe 216, and a digital integrated controller 219. The inlet main pipe 216 is connected to the inlet ball valve 215, and the other end of the inlet ball valve 215 is connected to the inlet end of the water pump 207. The water pump 207 is fixed on the unit 214 and is connected to the output end of the motor 206. The digital integrated controller 219 is connected to the motor 206. The drive motor 206 drives the impeller of the water pump 207 to pressurize the fluid and deliver it to the outlet. The outlet of the water pump 207 is connected to the outlet ball valve 211, and the other end of the outlet ball valve 211 is connected to the outlet main pipe 212. The outlet main pipe 212 is connected to the ball valve 210, and the pressure tank 208 is connected through the ball valve 210. The pressure tank 208 is used for differential pressure replenishment. The water pump 207 and the unit 214 are sandwiched between shock-absorbing pads. The water pump 207 is equipped with an exhaust valve 217, which is used to release the air inside the water pump 207, thereby reducing the cavitation of the pump unit. A clamp check valve 209 is installed between the water pump 207 and the outlet ball valve 211 to prevent the backflow of the pressurized fluid. A pressure gauge 108 is installed at the outlet main pipe 212. A cable tray 213 is installed at the unit 214 to hold wires and cables.
[0026] The soundproof enclosure includes a shell 115, reinforcing ribs 204, an electrically controlled front door 218, side panel 1 203, side panel 2 205, and a base 109. The shell 115, reinforcing ribs 204, and electrically controlled front door 218 are fixed on the base 109. The base 109 has a forklift hole 107. The side panels 1 203 and 2 205 are opened or closed by snaps 202. A top cover 201 is provided on the top of the shell 115, and a camera 110 is installed on the top cover 201, which further realizes the diversification and modularity of the system in an effective space.
[0027] The front face of the electrical control chamber is equipped with an HMI 101, a viewing window 102, indicator lights 103, a door lock 104, and an emergency stop button 220. The HMI 101 is used to display and collect data. The HMI 101 communicates with the digital integrated controller 219 via CAN. The viewing window 102 is used to view the data displayed by the internal HMI 101 from the outside. The indicator lights 103 include a power indicator, a running indicator, and a fault indicator. The door lock 104 is installed on the door panel of the electrical control chamber. The lower part of the electrical control chamber is equipped with an incoming cable chamber 106, which is used to connect external cables and communication cables, thereby effectively protecting electrical components and further improving the protection level of the control cabinet.
[0028] The heat dissipation chamber includes a cooling fan 114, a filter screen 113, a viewing window 112, and a filter hole 111. The cooling fan 114 is embedded in the filter screen 113, and the filter screen 113 is installed in the filter hole 111 and controlled by a temperature control switch. The viewing window 112 is used to view the operation of the cooling fan 114.
[0029] The water quality testing chamber includes a water quality testing device 301, a pipeline 302, and a ball valve 303. The water quality testing device 301 is connected to the pipeline 302, and the other end of the pipeline 302 is connected to the pump chamber through the ball valve 303. The water fluid emanating from the pump chamber enters the pipeline 302 through the ball valve 303 and is transported to the water quality testing device 301 for testing, thereby preventing substandard fluid from entering the user's home.
[0030] The present invention will be further described below with reference to the accompanying drawings:
[0031] The outdoor box-type intelligent integrated water supply system includes a soundproof box, a booster pump set, and a water quality testing system. The soundproof box adopts a partitioned layout. In the soundproof box, the shell 115, reinforcing ribs 204, and electrically controlled front door 218 are fixed on the base 109. Side panels 1 203 and 2 205 are opened and closed by snaps 202 on the left and right sides and the rear cover, which is convenient for installation and maintenance. A camera 110 is installed on the top cover 201 to record the flow of personnel and operators on site in real time. The base 109 has a forklift hole 107 for easy on-site handling. The soundproof box is further divided into an electrical control chamber, a pump set chamber, a heat dissipation chamber, and a water quality testing chamber.
[0032] As attached Figure 1As shown, the electrical control chamber is equipped with an HMI (Human-Machine Interface) and an automated control system, including an HMI101 for displaying and acquiring data. Automated communication of the system is achieved through human-machine interaction. A miniature camera 110 is used to collect real-time data about the surrounding environment. The HMI101 communicates with the digital integrated controller 219 via CAN to ensure real-time data sharing. A viewing window 102 allows direct viewing of the data displayed on the internal HMI101 from the outside and also enhances the protection level of the automatic control system. Indicator lights 103 include a power indicator to determine if the control system is powered on, a running indicator to display the system's operating status, and a fault indicator to trigger an alarm if an abnormality occurs. In case of an abnormal situation requiring an emergency stop, the power to all control systems can be disconnected using the waterproof emergency stop button 220, ensuring the system's normal operation. A door lock 104 is installed on the door panel of the electrical control chamber, allowing the chamber to be opened and closed with a key. The logo background light 105 displays the company logo directly upon power-up. The incoming cable chamber 106 is used for connecting external cables and communication cables. The heat dissipation chamber includes a cooling fan 114, which is embedded in a filter screen 113. The filter screen 113 is directly installed in the filter hole 111 and controlled by a temperature control switch. The operation of the fan can be directly observed through the viewing window 112.
[0033] As attached Figure 2 As shown, the pump unit chamber includes a main inlet pipe 216, which is connected to an inlet ball valve 215. The other end of the inlet ball valve 215 is bolted to the water pump 207. The water pump 207 is directly bolted to the pump unit 214 with a shock-absorbing pad sandwiched in between. When the water pump 207 is used for the first time, the vent valve 217 is opened to release the air inside the water pump 207, reducing cavitation in the pump unit. After the fluid passes through the inlet pipe, the water pump 207 is judged and compared by the set value and feedback value of the automatic control system. The digital integrated controller 219 then drives the motor 206. The impeller of water pump 207 is driven to pressurize the fluid and deliver it to the outlet. The outlet of water pump 207 is bolted to the outlet ball valve 211, with a check valve 209 in between to prevent backflow of the pressurized fluid. The pressurized fluid enters the outlet main pipe 212, and the actual pressurized pressure is displayed visually by pressure gauge 108. After opening ball valve 210, the fluid squeezes the gas inside pressure tank 208. When the outlet pressure fluctuates slightly, pressure tank 208 provides differential pressure replenishment, thereby reducing the frequency of pump start-up and reducing energy consumption. Cable tray 213 houses the wires and cables of the automatic control system.
[0034] As attached Figure 3As shown, the water quality testing chamber includes a water quality testing device 301. After ball valve 2 303 is opened, the fluid is supplied for testing. The fluid passes through ball valve 2 303 into pipeline 302 and then into the water quality testing device 301. The device detects residual chlorine, turbidity, pH value, temperature, and other parameters in the fluid to determine whether the pressurized water quality meets the standards for residential drinking water. The effluent fluid passes through ball valve 2 303 into pipeline 302 and is then supplied to the water quality testing device 301 for testing to determine if the water quality is normal. If the water quality is abnormal, the pump unit can be forcibly restricted via a controller to prevent substandard fluid from entering the user's home.
[0035] The contents not described in detail in this specification are existing technologies known to those skilled in the art. The standard parts used can be purchased from the market, and the irregular parts can be customized according to the description and drawings. The specific connection methods of each part adopt conventional methods such as bolts, rivets, and welding that are mature in the existing technology. The machinery, parts and equipment adopt conventional models in the existing technology, and the circuit connection adopts conventional connection methods in the existing technology, which will not be described in detail here.
[0036] This utility model is not limited to the above-described embodiments. Any changes, modifications, substitutions, combinations, or simplifications made without departing from the spirit and principle of this utility model shall be considered equivalent substitutions and shall be included within the protection scope of this utility model.
Claims
1. An outdoor box-type intelligent integrated water supply system, characterized in that: The soundproof box is internally divided into an electric control chamber, a pump group chamber, a heat dissipation chamber and a water quality detection chamber, the electric control chamber and the water quality detection chamber are arranged on one side of the pump group chamber, and the heat dissipation chamber is arranged above the pump group chamber; the pump group chamber comprises a motor (206), a water pump (207), a pressure tank (208), a ball valve (210), a water outlet ball valve (211), a water outlet main pipe (212), a unit (214), a water inlet ball valve (215), a water inlet main pipe (216) and a digital integrated controller (219), the water inlet main pipe (216) is connected with the water inlet ball valve (215), one end of the water inlet ball valve (215) is connected with the water inlet end of the water pump (207), the water pump (207) is fixed on the unit (214), the water pump (207) is connected with the output end of the motor (206), the motor (206) is connected with the digital integrated controller (219), the digital integrated controller (219) drives the motor (206) to drive the impeller of the water pump (207) to increase the pressure to deliver fluid to the water outlet end, the water outlet end of the water pump (207) is connected with the water outlet ball valve (211), the other end of the water outlet ball valve (211) is connected with the water outlet main pipe (212), the water outlet main pipe (212) is connected with the ball valve (210), and the ball valve (210) is connected with the pressure tank (208), and the pressure tank (208) is used for pressure difference compensation.
2. The outdoor box-type intelligent integrated water supply system according to claim 1, characterized in that: The soundproof box comprises a shell (115), a reinforcing rib (204), an electric control front door (218), a side plate one (203), a side plate two (205) and a base (109), the shell (115), the reinforcing rib (204) and the electric control front door (218) are fixed on the base (109), a forklift hole (107) is formed in the base (109), the side plate one (203) and the side plate two (205) are opened or closed through buckles (202), the shell (115) is provided with a top cover (201) at the top, and a camera (110) is installed on the top cover (201).
3. The outdoor box-type intelligent integrated water supply system according to claim 1, characterized in that: An HMI (101), a perspective window one (102), an indicator light (103), a door lock (104) and an emergency stop button (220) are arranged on the front end face of the electric control chamber, the HMI (101) is used for displaying and collecting data, the HMI (101) communicates with the digital integrated controller (219) through CAN, the perspective window one (102) is used for checking the data displayed by the internal HMI (101) from the outside, the indicator light (103) comprises a power indicator light, an operation indicator light and a fault indicator light, the door lock (104) is installed on the door plate of the electric control chamber, and a wire inlet cable chamber (106) is arranged below the electric control chamber, and the wire inlet cable chamber (106) is used for connecting external cables and communication cables.
4. The outdoor box-type intelligent integrated water supply system according to claim 1, characterized in that: The heat dissipation chamber comprises a heat dissipation fan (114), a filter screen (113), a second perspective window (112) and a filter hole (111), the heat dissipation fan (114) is inlaid on the filter screen (113), the filter screen (113) is installed in the filter hole (111) and is controlled through a temperature control switch, and the second perspective window (112) is used for checking the running state of the heat dissipation fan (114).
5. The outdoor box-type intelligent integrated water supply system according to claim 1, characterized in that: The water quality detection chamber comprises a water quality detection device (301), a pipeline (302) and a ball valve two (303), the water quality detection device (301) is connected with the pipeline (302), one end of the pipeline (302) is connected to the pump group chamber through the ball valve two (303), and the water outlet fluid of the pump group chamber enters the pipeline (302) through the ball valve two (303) and is delivered to the water quality detection device (301) for detection.
6. The outdoor box-type intelligent integrated water supply system according to any one of claims 1 to 5, characterized in that: A clamping shock pad is arranged between the water pump (207) and the unit (214), an exhaust valve (217) is arranged on the water pump (207), and the exhaust valve (217) is used for discharging air in the water pump (207) to reduce pump group cavitation.
7. The outdoor box-type intelligent integrated water supply system according to claim 6, characterized in that: A clamping check valve (209) is arranged between the water pump (207) and the water outlet ball valve (211), the clamping check valve (209) is used for preventing backflow of the pressurized fluid, a pressure gauge (108) is arranged at the water outlet main pipe (212), a wire slot (213) is arranged at the unit (214), and the wire slot (213) is used for placing electric wires and cables.