Solar energy engineering water tank based on wi-fi internet of things technology

By integrating a motor-driven threaded rod and telescopic rod system into the solar water tank, combined with a Wi-Fi IoT module, automated cleaning and intelligent management of the water tank are achieved. This solves the problems of efficiency fluctuations and scale accumulation in solar water tanks under the influence of the external environment, improves operating efficiency and user experience, and reduces maintenance costs.

CN223607933UActive Publication Date: 2025-11-28GUANGXI SHIMAODA TECH CO LTD +1
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Patent Information

Application Number
CN202423281382.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2025-11-28
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

Existing solar water tanks suffer from significant fluctuations in heating efficiency due to weather, temperature, and humidity in outdoor environments. They also lack intelligent control and remote monitoring, and internal scale and impurities are difficult to clean in a timely manner, resulting in energy waste and high maintenance costs.

Method used

A solar water tank based on Wi-Fi IoT technology has been designed, integrating a motor-driven threaded rod and telescopic rod system, equipped with an automatic brush head for cleaning, and data transmission via an IoT module. This enables the water tank to be used in various fields, including homes, industry, agriculture, and commerce, such as photovoltaic power generation, solar equipment, offices, and commercial environments. Users can achieve interconnection between devices without building additional network infrastructure, making it suitable for applications requiring real-time monitoring and data analysis. It features efficient data transmission and intelligent management functions, reducing system development and deployment costs.

Benefits of technology

It enables automated cleaning and maintenance of water tanks, reduces the need for manual operation, improves operating efficiency and water quality stability, lowers maintenance costs, provides remote monitoring and management functions, enhances the system's intelligence and energy self-sufficiency, and meets the requirements of green and sustainable development.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model relates to the field of solar energy engineering discloses a solar energy engineering water tank based on wi -Fi internet of things technique, including the box, the box top fixedly connected with motor, motor output fixedly provided with third threaded rod, the first connecting pipe is rotatively connected with third threaded rod outer surface, the second connecting pipe is screw connected with third threaded rod outer surface, the second threaded rod is rotatively connected with second connecting pipe inner wall top, the third connecting pipe is screw connected with second threaded rod outer surface. In the utility model, the motor is arranged on the top of the water tank, and the brush head is arranged on the bottom of the motor, the brush heads are connected by the connecting block and the telescopic rod, under the action of the motor, the connecting block rotates, thereby driving the four brush heads to rotate, and the four brush heads and the telescopic rod are opened outward due to the centrifugal force, the inner wall of the box is cleaned at the same time of rotating, and the problem that the water tank is difficult to clean in time is solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to solar energy engineering field especially, relate to a solar energy engineering water tank based on wi -Fi internet of things technique. BACKGROUND

[0002] With the increasingly serious global energy problem, the consumption of traditional energy and environmental pollution have a more and more significant impact on the earth's ecological system, especially the overexploitation and use of fossil fuels have triggered a series of problems such as global climate change. In order to alleviate these problems, new energy technology has gradually become an important direction of global energy transformation, among which solar energy as a clean and renewable energy has been widely applied and valued.

[0003] The application of solar energy can be divided into multiple fields, including photovoltaic power generation, solar water heating system, etc. Especially in remote areas and areas with strong solar radiation, solar energy as the main energy source has solved many energy supply problems. Solar water tank as the core component of solar water heating system is mainly used for storing water heated by solar energy, and is widely used in multiple fields such as family, industry, commerce and agriculture.

[0004] However, the solar water tank system also faces some technical and management challenges in practical application. First of all, solar water tank usually needs to be used in outdoor environment, which makes it greatly affected by external factors such as weather, temperature and humidity, resulting in large fluctuation of heating efficiency. Secondly, most of the existing solar water heating systems lack intelligent control, and users usually rely on manual adjustment of temperature and water quantity, which cannot automatically adjust the running state according to real-time data, resulting in energy waste or low heating efficiency. In addition, the traditional solar water heating system often lacks remote monitoring and management function, and users and maintenance personnel are difficult to obtain system running state and fault information in time, increasing the maintenance cost and management difficulty.

[0005] With the rapid development of Internet of Things (Internet of Things, IoT) technology, more and more intelligent devices can be interconnected, providing technical support for the intelligent transformation of traditional devices. Through sensors, communication networks and cloud computing platforms, Internet of Things technology can realize real-time monitoring, remote control and data analysis of device status, greatly improving the running efficiency and intelligent level of devices.

[0006] In solar water heating system, the application of Internet of Things technology is of great significance. Through Internet of Things technology, sensors, Wi-Fi modules, cloud platforms and other intelligent hardware and software can be integrated in solar water tank, so that the system can collect real-time water temperature, sunlight intensity, water storage capacity and other key information, and upload data to cloud platform or mobile device. Users can check the system running condition at any time through mobile phone or computer, realize remote monitoring and intelligent adjustment.

[0007] For example, when the water temperature in the solar water tank reaches the set upper limit, the system can automatically turn off the heating function to prevent energy waste. Conversely, when the water temperature is below the set value, the system can automatically start heating to ensure that the water temperature in the tank always remains within the user's set range. In addition, the Internet of Things technology can dynamically adjust the heating strategy based on weather forecasts, solar radiation intensity, and other information to improve energy efficiency.

[0008] Wi-Fi, as a wireless communication technology with high popularity, fast transmission speed, and wide coverage, has become one of the important communication methods in the Internet of Things applications. The Wi-Fi-based Internet of Things system has the following advantages:

[0009] Wide network coverage: Wi-Fi technology is popular in homes, offices, businesses, and other environments, allowing users to interconnect devices without the need for additional complex network infrastructure.

[0010] Efficient data transmission: Wi-Fi networks have high data transmission speeds, enabling large amounts of data exchange between devices, particularly suitable for real-time monitoring and data analysis applications.

[0011] Intelligent management: Through Wi-Fi-connected Internet of Things systems, remote management and data storage of devices can be achieved on cloud platforms, allowing users to view system operation data at any time and adjust settings as needed.

[0012] Cost-effective: Compared to other wireless communication technologies, Wi-Fi has relatively low construction costs, and the devices and technology are widely used, significantly reducing the cost of system development and deployment.

[0013] The existing solar engineering water tank based on Wi-Fi Internet of Things technology not only has the function of storing hot water like traditional solar engineering water tanks, but also can transmit various data of the water tank to cloud servers or user mobile terminal devices through the built-in Wi-Fi module and related sensors, achieving remote monitoring and control. However, during the use of the water tank, scale and impurity pollutants can easily accumulate inside, affecting the quality of hot water and the operating efficiency of the system. Traditional manual cleaning methods are not only time-consuming and labor-intensive, but also difficult to ensure thoroughness and timeliness. SUMMARY

[0014] To address the above shortcomings, the present application provides a solar engineering water tank based on Wi-Fi Internet of Things technology, aiming to improve the problem of scale in the water tank being difficult to clean in a timely manner.

[0015] To achieve the above purpose, the present application provides the following technical solutions:

[0016] The utility model provides a kind of solar engineering water tank based on Wi-Fi internet of things technology, including box, the box top fixedly connected with motor, the motor output is fixedly provided with third threaded rod, the first connecting pipe is rotatably connected on the third threaded rod outer surface, the second connecting pipe is threadedly connected on the third threaded rod outer surface, the second threaded rod is rotatably connected on the second connecting pipe inner wall top, the third connecting pipe is threadedly connected on the second threaded rod outer surface, the first threaded rod is rotatably connected on the third connecting pipe inner wall top, the first threaded rod bottom fixedly connected with connecting block, the connecting block outer surface is fixedly connected with evenly distributed telescopic rod, the telescopic rod output is fixedly connected with brush head, the box bottom is fixedly connected with blow-off pipe, the box outer surface is provided with fixed assembly, and the fixed assembly is used for the fixation of water tank.

[0017] Further, the fixed assembly includes a bracket, the bracket is tightly attached between the top of the bracket and the bottom of the box, the bottom of the bracket is fixedly connected with evenly distributed air cylinders, the output end of the air cylinder is fixedly connected with a second connecting piece, the top of the first connecting piece is fixedly connected with a first connecting piece, the top of the first connecting piece is fixedly connected with a fixed ring, the top of the fixed ring is slidably connected with evenly distributed fixing pieces, and a bolt is provided between the first connecting piece and the fixing piece.

[0018] Further, the left side of the inner wall of the box is fixedly connected with evenly distributed sensing pieces, and the bottom of the box is fixedly connected with a communication module.

[0019] Further, the second connecting pipe is slidably connected with the first connecting pipe and the third connecting pipe, and the second threaded rod is slidably connected with the first threaded rod and the third threaded rod.

[0020] Further, the brush head is tightly attached to the top of the inner wall of the box.

[0021] Further, the bolt is threadedly connected with the first connecting piece, and the bolt is rotatably connected with the fixing piece.

[0022] Further, the fixing piece is tightly attached to the box.

[0023] Further, the first connecting piece is slidably connected with the bracket.

[0024] The core idea of the present application is to combine Wi-Fi internet of things technology with solar energy system to build an automatic and intelligent solar water tank system. The system has multiple functions such as water tank cleaning, sewage discharge and fixation, and realizes automatic adjustment and cleaning of the internal components of the water tank through motor and transmission mechanism. The main design idea and functions of each part are as follows:

[0025] 1. Box and motor drive system

[0026] Tank: As the outer shell of the water tank, it carries all the relevant components.

[0027] Motor and threaded rod system: The motor drives the connection pipe, threaded rod, and other components through the threaded rod to rotate and move. In this way, the position of the internal components of the water tank can be adjusted, achieving automatic adjustment of the mechanical structure.

[0028] First, second, and third connection pipes: These pipes can achieve transmission and adjustment through sliding connection and threaded connection. The threaded structure of the connection pipe and threaded rod provides the possibility of precise control.

[0029] 2. Telescopic rod and brush head cleaning system

[0030] Brush head: The brush head is installed on the telescopic rod, which can automatically clean the inner wall of the water tank. The brush head is driven by the motor-driven threaded rod to move up and down or rotate within the water tank to clean the inner surface of the water tank.

[0031] Telescopic rod and brush head cooperation: The design of the telescopic rod allows the brush head to adjust the cleaning area and range as needed, ensuring cleaning effectiveness.

[0032] 3. Drain pipe and automatic drainage system

[0033] Drain pipe: The drain pipe is designed to periodically clean the accumulated sediment inside the water tank. The drain pipe allows the water tank to automatically discharge impurities in the water, keeping the water clean.

[0034] 4. Fixed components and support structure

[0035] Support and air cylinder: The support is tightly fitted between the bottom and the tank, and the air cylinder adjusts or fixes the position of the water tank through its pushing force. The output end of the air cylinder is connected to the second connecting piece, ensuring that the support is stable and can support the water tank.

[0036] Fixed piece and fixed ring: The design of the fixed piece and fixed ring allows the water tank to be fixed in a specific position, ensuring its stability and avoiding movement or vibration affecting the function of the water tank.

[0037] 5. Internet of Things communication module

[0038] Communication module: The bottom of the water tank is equipped with a communication module that can connect to the Internet of Things through Wi-Fi, remotely monitor the status, cleaning situation, water quality, and other information of the water tank. This module provides users with intelligent management functions such as remote start cleaning, water level monitoring, temperature adjustment, etc.

[0039] 6. Sensing piece and intelligent monitoring system

[0040] Sensing elements: The sensing elements installed on the inner walls of the tank can detect changes in the internal environment of the tank, such as water level, temperature, and accumulation of pollutants. Through connection with the Internet of Things, the sensing elements can provide real-time feedback data to the user or control system, thereby achieving intelligent management.

[0041] 7. Automation and intelligence of the system

[0042] The degree of automation of the present application scheme is high, and multiple driving systems realize automatic adjustment and cleaning through motors, threaded rods, telescopic rods, etc. Combined with the Internet of Things communication module, the system can interact with external devices, automatically manage and maintain.

[0043] Through the control system, the user can remotely operate or set the working state of the water tank, achieving the purpose of real-time monitoring, remote diagnosis, and automatic adjustment.

[0044] 8. Integration of solar energy and energy self-sufficiency

[0045] Solar energy system: Considering the demand for solar power supply, the energy of the water tank can be supplied by solar panels. Solar energy enables the water tank to operate without external power supply, reduces energy costs, and enhances the autonomy of the system.

[0046] The design idea of the present application scheme is based on the direction of automation and intelligence, combined with mechanical transmission, electrical control, and Internet of Things technology, to build a solar water tank system that can automatically clean, monitor, adjust, and discharge pollutants. The system not only improves the operating efficiency of the water tank, but also realizes remote monitoring and management, providing users with a convenient user experience.

[0047] The utility model has the following beneficial effects:

[0048] Automatic cleaning and maintenance: Traditional solar water tanks usually require manual cleaning and regular maintenance, and the inner wall of the water tank may be contaminated due to dirt or scale accumulation, and the cleaning process is tedious and time-consuming. The present application scheme uses an automatic brush head cleaning system combined with a motor-driven threaded rod and telescopic rod, which can automatically clean the inner wall of the water tank, greatly reducing the need for manual operation. Regular cleaning of the internal components of the water tank can ensure clean water and prolong the service life of the water tank;

[0049] Intelligent management and remote monitoring: Many existing solar water tanks lack intelligent monitoring functions, and users cannot monitor the working state of the water tank in real time, and once a fault occurs, it is difficult to find out in time. The integrated Internet of Things communication module of the present application scheme enables the water tank to be connected with smart devices such as mobile phones and computers, and users can remotely monitor the state of the water tank (such as water level, temperature, cleaning condition, etc.) at any time. In addition, through the intelligent system, users can remotely start cleaning, draining, adjusting temperature, etc., providing a more convenient management experience;

[0050] Timed Drainage and Water Quality Management: Traditional water tanks usually rely on manual cleaning of accumulated sediment or scale, which can lead to unstable or unhealthy water quality, and there is a risk of improper operation of manual drainage. The automatic drainage system of the present application regularly cleans the sediment in the water tank through the drainage pipe, can keep the water clean, reduce the need for manual intervention, and effectively reduce the risk of water pollution, ensuring the health of the water quality;

[0051] Energy Self-sufficiency and Environmental Friendliness: Many solar water tanks require external power support and rely on traditional power grids, increasing energy consumption and use costs. The built-in solar power module of the present application can achieve energy self-sufficiency. By using solar panels to power the motor drive, sensors, Internet of Things modules, and other devices, the dependence on external power is reduced, the electricity bill is reduced, and the environmental friendliness of the system is improved, meeting the requirements of green and sustainable development;

[0052] Precise Adjustment and Efficient Operation: The structure of traditional water tanks is usually fixed, and the space and components inside the water tank are not flexible enough, which may cause blind spots or omissions during cleaning or maintenance. The adjustable threaded rod and telescopic rod system of the present application can accurately adjust the position of the components inside the water tank according to actual needs, ensuring that every corner can be fully cleaned and maintained. At the same time, the automatic adjustment system enables the water tank to operate efficiently under different conditions, avoiding the inaccuracy and complexity of traditional manual operation;

[0053] Enhanced Stability and Safety: In some existing designs, the stability and stability of the water tank may not be sufficient, especially in high or low temperature environments, which may cause displacement or damage. The strong support structure (such as brackets, air cylinders, and fixing parts) of the present application ensures the stability of the water tank, and can maintain efficient operation even in unstable environmental conditions, avoiding the risk of water tank displacement or structural damage;

[0054] Reducing Labor Costs and Improving User Experience: The cleaning, maintenance, and management of traditional water tanks often require frequent manual intervention, resulting in high maintenance costs. The present application greatly reduces the frequency and intensity of manual intervention, reduces daily maintenance costs, and improves user experience. Users do not need to clean and check the water tank frequently, and the system can automatically diagnose faults and remotely control, improving convenience and comfort;

[0055] Compared with existing technology, the present application significantly improves the automation, intelligence, and energy self-sufficiency of solar water tanks. Through automatic cleaning, intelligent monitoring, regular drainage, and other innovative functions, the use of the water tank is more efficient, energy-saving, and easy to maintain. At the same time, combined with solar power, the system is more environmentally friendly, reduces dependence on traditional power, and meets the needs of sustainable development. BRIEF DESCRIPTION OF DRAWINGS

[0056] Figure 1 A perspective view of a solar energy engineering water tank based on Wi-Fi Internet of Things technology is provided for the utility model;

[0057] Figure 2 A sensing piece schematic view of a solar energy engineering water tank based on Wi-Fi Internet of Things technology is provided for the utility model;

[0058] Figure 3 A brush head schematic view of a solar energy engineering water tank based on Wi-Fi Internet of Things technology is provided for the utility model;

[0059] Figure 4 A first threaded rod schematic view of a solar energy engineering water tank based on Wi-Fi Internet of Things technology is provided for the utility model;

[0060] Figure 5 A support schematic view of a solar energy engineering water tank based on Wi-Fi Internet of Things technology is provided for the utility model;

[0061] Legend:

[0062] 1, tank; 2, motor; 3, brush head; 4, telescopic rod; 5, connecting block; 6, first connecting pipe; 7, second connecting pipe; 8, third connecting pipe; 9, sensing piece; 10, first threaded rod; 11, second threaded rod; 12, third threaded rod; 13, support; 14, blowdown pipe; 15, fixed ring; 16, first connecting piece; 17, bolt; 18, air cylinder; 19, fixed piece; 20, second connecting piece; 21, communication module. DETAILED DESCRIPTION

[0063] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the specification of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.

[0064] Refer to Figures 1-4The utility model provides an embodiment: a solar energy engineering water tank based on wi -Fi internet of things technique, including the box 1, the box 1 top fixedly connected with motor 2, motor 2 output fixedly provided with third screw rod 12, first connecting pipe 6 is rotatively connected to the outer surface of third screw rod 12, the outer surface of second connecting pipe 7 is screw connected with second screw rod 11 that the inner wall top of second connecting pipe 7 rotatively connected, third connecting pipe 8 is screw connected with first screw rod 10 that the inner wall top of third connecting pipe 8 rotatively connected, first screw rod 10 bottom fixedly connected with connecting block 5, the outer surface of connecting block 5 is fixedly connected with the telescopic rod 4 of even distribution, the output of telescopic rod 4 is fixedly connected with brush head 3, the box 1 bottom fixedly connected with blowdown pipe 14, the outer surface of box 1 is provided with fixed assembly, and fixed assembly is used for the fixation of water tank.

[0065] Specifically, by setting motor 2 on the top of the box 1, and setting brush head 3 at the bottom of the motor 2, the brush heads 3 are connected by the connecting block 5 and the telescopic rod 4, the third screw rod 12 is rotated under the start of the motor 2, and due to the connection between the first screw rod 10, the second screw rod 11, the third screw rod 12, the first connecting pipe 6, the second connecting pipe 7 and the third connecting pipe 8, the first screw rod 10 moves downward while rotating, thereby driving the four brush heads 3 to rotate, and the four brush heads 3 are opened outward due to the centrifugal force, thereby cleaning the inner wall of the box 1 while rotating, and solving the problem of difficult and timely cleaning of the water tank.

[0066] Referring to Figure 5 The fixed assembly includes a bracket 13, the bracket 13 is tightly fitted between the top of the bracket 13 and the bottom of the box 1, evenly distributed air cylinders 18 are fixedly connected to the bottom of the bracket 13, second connecting pieces 20 are fixedly connected to the output of the air cylinders 18, first connecting pieces 16 are fixedly connected to the top of the second connecting pieces 20, fixing rings 15 are fixedly connected to the top of the first connecting pieces 16, fixing pieces 19 are slidingly connected to the top of the fixing rings 15, and bolts 17 are arranged between the first connecting pieces 16 and the fixing pieces 19.

[0067] Specifically, by setting the bracket 13 on the bottom of the box 1, the box 1 is directly placed above the bracket 13 during installation, the first connecting pieces 16 and the second connecting pieces 20 are moved upward by the air cylinders 18 at the bottom of the bracket 13, the fixing rings 15 and the fixing pieces 19 are brought to the outer surface of the box 1, the fixing pieces 19 are tightly clamped to the box 1 by screwing the bolts 17 at this time, and the problem of troublesome disassembly and easy damage of the water tank during maintenance of the water tank is solved.

[0068] Referring to Figure 2 Evenly distributed sensing pieces 9 are fixedly connected to the left side of the inner wall of the box 1, and a communication module 21 is fixedly connected to the bottom of the box 1.

[0069] Specifically, the water temperature, water quality and water level information of different areas in the water tank are measured in real time by the sensors installed at different positions on the inner wall of the tank 1, and the information is transmitted to the personal terminal through the communication module 21 and WI-FI at the bottom of the tank 1.

[0070] With reference to Figure 4 , the second connecting pipe 7 is in sliding connection with the first connecting pipe 6 and the third connecting pipe 8, and the second threaded rod 11 is in sliding connection with the first threaded rod 10 and the third threaded rod 12.

[0071] Specifically, when the third threaded rod 12 is driven to rotate by the motor 2, the second connecting pipe 7 is driven to move downward, and the second threaded rod 11 is driven to move downward with the second connecting pipe 7 and is driven to rotate by the third threaded rod 12. When the second threaded rod 11 rotates, the third connecting pipe 8 moves downward, and the first threaded rod 10 is driven to move downward and rotate. The first threaded rod 10 has the connecting block 5 fixed at the bottom, and the brush head 3 is driven to rotate and move.

[0072] With reference to Figure 2 , the brush head 3 is tightly attached to the top of the inner wall of the tank 1.

[0073] Specifically, when the device is not started, the brush head 3 is retracted and placed on the top of the tank 1. When the connecting block 5 is driven to rotate and move downward, the telescopic rod 4 expands outward due to centrifugal force, so that the brush head 3 tightly attaches to the inner wall of the tank 1 to rotate and clean the inner wall of the tank 1.

[0074] With reference to Figure 5 , the bolt 17 is in threaded connection with the first connecting piece 16, and the bolt 17 is in rotating connection with the fixing piece 19.

[0075] Specifically, when the bolt 17 rotates on the first connecting piece 16, the fixing piece 19 moves forward and backward due to the rotating connection between the bolt 17 and the fixing piece 19.

[0076] With reference to Figure 1 , the fixing piece 19 is tightly attached to the tank 1.

[0077] Specifically, when the tank 1 is placed on the support 13, the fixing piece 19 is driven by the air cylinder 18 to come to the outer surface of the tank 1, and the fixing piece 19 is tightly clamped on the tank 1 by the bolt 17 to play a fixing role.

[0078] With reference to Figure 5 , the first connecting piece 16 is in sliding connection with the support 13.

[0079] Specifically, the air cylinder 18 drives the second connecting piece 20 and the first connecting piece 16 to move up and down, and the first connecting piece 16 is in sliding connection with the support 13 to prevent the first connecting piece 16 from shifting.

[0080] Working principle: when installing the water tank, the tank 1 is directly placed above the support 13, the first connecting piece 16 and the second connecting piece 20 are moved upward by the cylinder 18 at the bottom of the support 13, the fixing ring 15 and the fixing piece 19 are brought to the outer surface of the tank 1, at this time the bolt 17 is screwed to tightly engage the fixing piece 19 with the tank 1, so that the water tank is fixed, and when overhauling, the bolt 17 is loosened, and the cylinder 18 is started to move the fixing ring 15 downward, so that the tank 1 can be directly removed;

[0081] When used daily, the motor 2 is arranged at the top of the tank 1, and the brush head 3 is arranged at the bottom of the motor 2, the brush heads 3 are connected by the connecting block 5 and the telescopic rod 4, when the motor 2 is started, the third threaded rod 12 rotates, when the third threaded rod 12 is rotated by the motor 2, the second connecting pipe 7 is moved downward, the second threaded rod 11 and the second connecting pipe 7 are moved downward, and are rotated by the third threaded rod 12, when the second threaded rod 11 rotates, the third connecting pipe 8 moves downward, the first threaded rod 10 is moved downward and rotated, and the first threaded rod 10 is fixed with the connecting block 5 at the bottom, so that the four brush heads 3 are rotated, and the four brush heads 3 and the telescopic rod 4 are opened outward due to centrifugal force, and clean the inner wall of the tank 1, and the scale is cleaned together with the sewage and discharged from the sewage pipe 14.

[0082] Finally, it should be pointed out that: the above only for the preferred embodiments of the utility model, and does not limit the utility model, although the utility model is described in detail with reference to the foregoing embodiments, for the person skilled in the art, it still can modify the technical scheme recorded in the foregoing each embodiment, or equivalent replacement to part of technical features, any modification, equivalent replacement, improvement etc. made within the spirit and principles of the utility model, should be contained in the protection scope of the utility model.

Claims

1. A solar engineering water tank based on Wi-Fi Internet of Things technology, comprising a tank body (1), characterized in that: The box (1) top fixedly connected with motor (2), the motor (2) output fixedly provided with third threaded rod (12), the third threaded rod (12) outer surface rotationally connected with first connecting pipe (6), the third threaded rod (12) outer surface threadedly connected with second connecting pipe (7), the second connecting pipe (7) inner wall top rotationally connected with second threaded rod (11), the second threaded rod (11) outer surface threadedly connected with third connecting pipe (8), the third connecting pipe (8) inner wall top rotationally connected with first threaded rod (10), the first threaded rod (10) bottom fixedly connected with connecting block (5), the connecting block (5) outer surface fixedly connected with evenly distributed telescopic rod (4), the telescopic rod (4) output fixedly connected with brush head (3), the box (1) bottom fixedly connected with blowdown pipe (14), the box (1) outer surface is provided with fixed assembly, the fixed assembly is used for the fixation of water tank.

2. The solar engineering tank based on Wi-Fi Internet of Things technology according to claim 1, characterized in that: The fixed assembly includes a support (13), the support (13) top and box (1) bottom are closely attached, the support (13) bottom fixedly connected with evenly distributed air cylinder (18), the air cylinder (18) output fixedly connected with second connecting piece (20), the second connecting piece (20) top fixedly connected with first connecting piece (16), the first connecting piece (16) top fixedly connected with fixed ring (15) the fixed ring (15) top slidingly connected with evenly distributed fixing piece (19), the first connecting piece (16) and fixing piece (19) between bolt (17) are provided with.

3. The solar engineering tank based on Wi-Fi Internet of Things technology according to claim 1, characterized in that: The box (1) inner wall left side fixedly connected with evenly distributed inductive element (9), the box (1) bottom fixedly connected with communication module (21).

4. The solar engineering tank based on Wi-Fi Internet of Things technology according to claim 1, characterized in that: The second connecting pipe (7) and first connecting pipe (6) and third connecting pipe (8) are slidingly connected, the second threaded rod (11) and first threaded rod (10) and third threaded rod (12) are slidingly connected.

5. The solar engineering tank based on Wi-Fi Internet of Things technology according to claim 1, characterized in that: The brush head (3) and box (1) inner wall top are closely attached.

6. The solar engineering tank based on Wi-Fi Internet of Things technology according to claim 2, characterized in that: The bolt (17) and first connecting piece (16) are threadedly connected, the bolt (17) and fixing piece (19) are rotationally connected.

7. The solar engineering tank based on Wi-Fi Internet of Things technology according to claim 2, characterized in that: The fixing piece (19) and box (1) are closely attached.

8. The solar engineering tank based on Wi-Fi Internet of Things technology according to claim 2, characterized in that: The first connecting piece (16) and support (13) are slidingly connected.