Anti-scale and anti-blocking stainless steel water supply tank
By introducing a water circulation system and automated cleaning and disinfection function into the stainless steel water supply tank, the problems of scale and blockage in the tank are solved, achieving clean water quality and stable system operation, reducing maintenance costs and the risk of water outages.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- YANCHENG JINYANG WATER SUPPLY EQUIP CO LTD
- Filing Date
- 2025-06-30
- Publication Date
- 2026-05-19
AI Technical Summary
Existing stainless steel water tanks have limited scale prevention capabilities, leading to water pollution and pipe blockage, which affects the stable operation of the water supply system and residents' health.
It adopts a water circulation system and automated cleaning and disinfection function. It uses sensors to monitor water quality and temperature, and uses spray nozzles to circulate water and perform high-temperature flushing. Combined with a solar heating box to provide energy, it achieves automated scale prevention and clogging prevention.
It effectively reduces the accumulation of scale and impurities in the water tank, keeps the water clean, reduces maintenance costs, extends equipment life, improves the efficiency of the water supply system, and reduces the risk of water outages.
Smart Images

Figure CN224259510U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of stainless steel water supply tanks, and in particular to a stainless steel water supply tank that is anti-scaling and anti-clogging. Background Technology
[0002] In urban water supply systems, secondary water supply is a crucial link in ensuring residents' water supply, and stainless steel water tanks, as important equipment in secondary water supply, are widely used. However, with the passage of time and increased usage frequency, existing stainless steel water tanks have gradually revealed some problems, posing potential risks to the stable operation of the water supply system and the safety of residents' water use.
[0003] From a water quality perspective, due to the limited scale-preventing capabilities of water tanks and the lack of an effective inlet filtration mechanism, various impurities in the water, such as minerals like calcium and magnesium ions, as well as tiny particles, will continuously accumulate inside the tank, gradually forming scale. The presence of scale not only alters the chemical properties of the water and affects its taste, but it can also breed bacteria and microorganisms, posing a threat to residents' health.
[0004] From a system operation perspective, excessive scale buildup reduces the inner diameter of pipes, increases water flow resistance, and thus reduces the efficiency of the water supply system. Long-term scale accumulation can also cause pipe blockages, affecting normal water supply and even requiring frequent replacement of pipe components, increasing maintenance costs and the risk of water outages. Therefore, we propose a scale-resistant and blockage-resistant stainless steel water tank to address these issues. Utility Model Content
[0005] The purpose of this invention is to address the shortcomings of existing technologies by proposing a stainless steel water supply tank that is scale-proof and clog-proof.
[0006] To achieve the above objectives, the present invention adopts the following technical solution:
[0007] A stainless steel water supply tank with anti-scaling and anti-clogging properties includes a tank body, a circulation pump installed at the upper end of the tank body, a conveying frame installed on the top circumference of the tank body, the circulation pump and the conveying frame being connected, multiple nozzles evenly spaced around the lower end of the conveying frame, multiple nozzle holes evenly spaced along the vertical direction on both sides of each nozzle, the nozzle holes corresponding to the circumference of the tank body, an absorption pipe connected to the upper end of the circulation pump, a transfer pipe connected to one end of the absorption pipe, a heating box connected to one end of the transfer pipe, a solar panel installed on the heating box, and a sensor array installed on the inner circumference of the tank body.
[0008] Preferably, the output end of the circulating pump is connected to an output pipe, the lower end of the output pipe is connected to the upper end of the conveying frame, and a third electric valve is installed on the output pipe.
[0009] Preferably, the absorption pipeline includes a connecting pipe connected to the input end of the circulation pump, one end of the connecting pipe is connected to the lower end of the transfer pipe, the bottom of the transfer pipe is connected to the absorption pipe, the lower end of the absorption pipe penetrates the side wall of the water supply tank body and extends into the water supply tank body, and a second electric valve is installed on the absorption pipe.
[0010] Preferably, a hot water delivery pipe is connected to one side of the transfer pipe, and one end of the hot water delivery pipe is connected to one side of the heating box via a delivery pump. A first electric valve is installed on the hot water delivery pipe.
[0011] Preferably, a support frame is fixed to the lower end of the heating box.
[0012] Preferably, the sensor group consists of a water quality sensor, a liquid level sensor, and a temperature sensor.
[0013] In this utility model:
[0014] 1. Daily water circulation: The sensor group monitors parameters such as water quality, liquid level and temperature in the water supply tank in real time. When water circulation is required, the second electric valve is opened and the circulation pump starts. Water is drawn from the water supply tank through the connecting pipe and the absorption pipe. The water passes through the transfer pipe and the output pipe, and the flow rate is regulated by the third electric valve. It enters the conveying frame and is finally sprayed out at high speed from the nozzle of the spray pipe to flush the side wall of the water supply tank, promote the flow and mixing of water in the tank and prevent impurities from settling.
[0015] 2. Heating and hot water delivery: The solar panels convert solar energy into electrical energy to power the heating box. The heating box heats the water. When hot water is needed for cleaning or disinfection, the first electric valve and the delivery pump are opened. The hot water in the heating box enters the absorption pipeline through the hot water delivery pipe and the transfer pipe, and then passes through the circulation pump and the delivery frame before being sprayed out from the nozzle. At this time, the second electric valve is closed to ensure that only high-temperature hot water participates in the circulation.
[0016] 3. Cleaning and cleaning: When the sensor group detects that there is a lot of dirt in the water tank or the water quality deteriorates, the cleaning program is started. The circulation pump sends the water in the water tank into the conveying frame through the absorption pipe, and then sprays it out at high speed through the nozzles to powerfully flush the side walls of the water tank, washing away the dirt and draining it out of the water tank with the water flow.
[0017] 4. High-temperature disinfection: When performing high-temperature cleaning and disinfection, the water source in the water supply tank is first drained, and then the hot water in the heating tank is output through the delivery pump. The second electric valve is closed, and the circulating pump sprays the high-temperature hot water out of the nozzle. The high temperature kills bacteria and microorganisms in the water tank, thus achieving the disinfection function.
[0018] This utility model has the following advantages:
[0019] 1. Through water circulation and cleaning functions, the accumulation of scale and impurities in the water tank is effectively reduced, keeping the water in the tank clean, avoiding water pollution, and providing residents with safer and healthier drinking water;
[0020] 2. Automated cleaning and disinfection functions reduce the workload and frequency of manual cleaning, lowering maintenance costs and safety risks. At the same time, it extends the service life of water tanks and pipes, reducing equipment replacement costs.
[0021] 3. Using solar panels to provide energy for the heating box makes full use of renewable energy, reduces dependence on traditional energy sources, lowers operating costs, and is in line with the development concept of energy conservation and environmental protection;
[0022] In summary, this utility model effectively reduces the accumulation of scale and impurities in the water tank through water circulation and cleaning functions, keeps the water in the tank clean, avoids water pollution, prevents pipe blockage, reduces water flow resistance, ensures the smooth operation of the water supply system, improves water supply efficiency, and reduces the number of water outages and repairs caused by pipe problems. Attached Figure Description
[0023] Figure 1 This is a structural diagram of the connection between the conveying frame and the nozzle of this utility model;
[0024] Figure 2 This is a structural diagram of the present invention;
[0025] Figure 3 This is a diagram of the nozzle installation structure of this utility model;
[0026] Figure 4 A structural diagram of the sensor assembly of this utility model is provided.
[0027] In the diagram: 1 Solar panel, 2 Heating box, 3 Hot water delivery pipe, 4 First electric valve, 5 Transfer pipe, 6 Absorption pipe, 7 Second electric valve, 8 Circulation pump, 9 Output pipe, 10 Third electric valve, 11 Spray nozzle, 12 Delivery pump, 13 Connecting pipe, 14 Delivery frame, 15 Spray hole, 16 Support frame, 17 Water supply tank body, 18 Sensor group. Detailed Implementation
[0028] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.
[0029] Reference Figure 1-4A stainless steel water tank that is scale-proof and clog-proof includes a water tank body 17, which is provided with a drain outlet and a delivery outlet. A circulation pump 8 is installed at the upper end of the water tank body 17. The circulation pump 8 is the power source of the entire water circulation system and can provide sufficient power to make the water circulate in the system.
[0030] A conveying frame 14 is installed on the top side wall inside the water supply tank body 17. The circulating pump 8 is connected to the conveying frame 14. Multiple nozzles 11 are connected at equal intervals around the lower end of the conveying frame 14. Multiple nozzle holes 15 are provided at equal intervals on both sides of the nozzles 11 in the vertical direction. The nozzle holes 15 correspond to the side wall of the water supply tank body 17. The nozzles 11 extend vertically downward and are evenly distributed along the circumference of the conveying frame 14, which can ensure that water is sprayed out at a suitable speed and pressure.
[0031] The upper end of the circulating pump 8 is connected to an absorption pipe, one end of which is connected to a transfer pipe 5. The transfer pipe 5 serves to transfer and regulate the water flow. One end of the transfer pipe 5 is connected to a heating box 2. A solar panel 1 is installed on the heating box 2. A sensor group 18 is provided on the inner side wall of the water supply tank body 17. The solar panel 1 can convert solar energy into electrical energy, providing clean and renewable energy for the heating box 2, reducing operating costs, and also conforming to the concept of environmental protection. The heating box 2 is equipped with a high-efficiency heating device that can quickly heat the water. The heating device is connected to the solar panel 1, and it can be powered by solar energy or conventional heating.
[0032] The output end of the circulating pump 8 is connected to the output pipe 9, the lower end of the output pipe 9 is connected to the upper end of the conveying frame 14, and a third electric valve 10 is installed on the output pipe 9 to close the connection of the conveying frame 14.
[0033] The absorption pipeline includes a connecting pipe 13 connected to the input end of the circulating pump 8. One end of the connecting pipe 13 is connected to the lower side of the transfer pipe 5. The bottom of the transfer pipe 5 is connected to the absorption pipe 6. The lower end of the absorption pipe 6 penetrates the side wall of the water supply tank body 17 and extends into the water supply tank body 17. A second electric valve 7 is installed on the absorption pipe 6. The second electric valve 7 can control the opening and closing of the absorption pipe 6, thereby realizing the control of water extraction.
[0034] One side of the transfer pipe 5 is connected to a hot water delivery pipe 3. One end of the hot water delivery pipe 3 is connected to one side of the heating box 2 through a delivery pump 12. A first electric valve 4 is installed on the hot water delivery pipe 3. The first electric valve 4 is used to control the opening and closing of the hot water delivery pipe 3. The delivery pump 12 provides power for the delivery of hot water.
[0035] The lower end of the heating box 2 is fixed with a support frame 16. The sensor group 18 consists of a water quality sensor, a liquid level sensor, and a temperature sensor. The water quality sensor can monitor indicators such as acidity, alkalinity, turbidity, and heavy metal content of the water in the tank in real time; the liquid level sensor can accurately measure the water level in the tank; and the temperature sensor can monitor the water temperature. These sensors provide important data support for the intelligent control of the water tank.
[0036] In this utility model:
[0037] 1. Daily water circulation: Sensor group 18 monitors parameters such as water quality, liquid level and temperature in the water supply tank body 17 in real time. When water circulation is required, the second electric valve 7 is opened and the circulation pump 8 is started. Water is drawn from the water supply tank body 17 through the connecting pipe 13 and the absorption pipe 6. The water passes through the transfer pipe 5 and the output pipe 9, and the flow rate is adjusted by the third electric valve 10. It enters the conveying frame 14 and finally sprays out at high speed from the spray hole 15 of the spray pipe 11 to flush the side wall of the water supply tank body 17, promote the flow and mixing of water in the tank, and prevent impurities from settling.
[0038] 2. Heating and hot water delivery: Solar panel 1 converts solar energy into electrical energy to power heating box 2. Heating box 2 heats water. When hot water is needed for cleaning or disinfection, the first electric valve 4 and delivery pump 12 are opened. The hot water in heating box 2 enters the absorption pipeline through hot water delivery pipe 3 and transfer pipe 5, and then passes through circulation pump 8 and delivery frame 14 before being sprayed out from nozzle 15. At this time, the second electric valve 7 is closed to ensure that only high-temperature hot water participates in the circulation.
[0039] 3. Cleaning and cleaning: When the sensor group 18 detects that there is a lot of dirt in the water tank or the water quality deteriorates, the cleaning program is started. The circulation pump 8 sends the water source in the water supply tank body 17 into the conveying frame 14 through the absorption pipe, and then sprays it out at high speed through the spray hole 15 to powerfully flush the side wall of the water supply tank body 17, wash away the dirt, and discharge it out of the water tank with the water flow.
[0040] 4. High-temperature disinfection: When performing high-temperature cleaning and disinfection, the water source in the water supply tank 17 is first drained, and then the hot water in the heating tank 2 is output through the delivery pump 12. The second electric valve 7 is closed, and the circulating pump 8 sprays the high-temperature hot water out of the spray hole 15. The high temperature kills the bacteria and microorganisms in the water tank, thus achieving the disinfection function.
[0041] The above are merely preferred embodiments of this utility model, but the scope of protection of this utility model is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in this utility model, based on the technical solution and inventive concept of this utility model, should be included within the scope of protection of this utility model.
Claims
1. A scale-proof and clog-proof stainless steel water supply tank, comprising a tank body (17), characterized in that, A circulation pump (8) is installed at the upper end of the water supply tank body (17). A conveying frame (14) is installed on the top side wall of the water supply tank body (17). The circulation pump (8) and the conveying frame (14) are connected. Multiple nozzles (11) are connected at equal intervals around the lower end of the conveying frame (14). Multiple nozzle holes (15) are provided at equal intervals along the vertical direction on both sides of the nozzles (11). The nozzle holes (15) correspond to the side wall of the water supply tank body (17). An absorption pipeline is connected to the upper end of the circulation pump (8). One end of the absorption pipeline is connected to a transfer pipe (5). One end of the transfer pipe (5) is connected to a heating box (2). A solar panel (1) is installed on the heating box (2). A sensor group (18) is provided on the side wall of the water supply tank body (17).
2. The anti-scaling and anti-clogging stainless steel water supply tank according to claim 1, characterized in that: The output end of the circulating pump (8) is connected to an output pipe (9), the lower end of the output pipe (9) is connected to the upper end of the conveying frame (14), and a third electric valve (10) is installed on the output pipe (9).
3. The anti-scaling and anti-clogging stainless steel water supply tank according to claim 1, characterized in that: The absorption pipeline includes a connecting pipe (13) connected to the input end of the circulating pump (8). One end of the connecting pipe (13) is connected to the lower side of the transfer pipe (5). The bottom of the transfer pipe (5) is connected to an absorption pipe (6). The lower end of the absorption pipe (6) penetrates the side wall of the water supply tank body (17) and extends into the water supply tank body (17). A second electric valve (7) is installed on the absorption pipe (6).
4. The anti-scaling and anti-clogging stainless steel water supply tank according to claim 1, characterized in that: One side of the transfer pipe (5) is connected to a hot water delivery pipe (3), and one end of the hot water delivery pipe (3) is connected to one side of the heating box (2) through a delivery pump (12). A first electric valve (4) is installed on the hot water delivery pipe (3).
5. A stainless steel water supply tank with anti-scaling and anti-clogging properties according to claim 1, characterized in that: The lower end of the heating box (2) is fixed with a support frame (16).
6. The anti-scaling and anti-clogging stainless steel water supply tank according to claim 1, characterized in that: The sensor group (18) consists of a water quality sensor, a liquid level sensor, and a temperature sensor.