An assembled two-way arc rib type super-rigid rainwater collection fire pool with unattended remote monitoring

By designing a driving component in the rainwater collection fire water pool to drive the scraper plate to rotate on the collection screen, the screen blockage problem caused by impurities accumulation is solved, and the normal collection of rainwater is achieved.

CN119531452BActive Publication Date: 2025-06-24JIANGSU FUYA WATER SUPPLY & DRAINAGE TECH CO LTD
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Patent Information

Application Number
CN202411700109.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-26
Publication Date
2025-06-24
Estimated Expiration
2044-11-26

AI Technical Summary

Technical Problem

As the use time increases, a large amount of impurities will accumulate on the screen and block it, causing rainwater to pass through the screen and enter the water storage tank, affecting the collection of rainwater.

Method used

A prefabricated bidirectional arc-rib ultra-rigid rainwater collection fire water tank is designed, including the pool body, a closed cover, through holes, a collection screen, a rotating shaft and a scraper. The drive assembly drives the rotation shaft to rotate, and drives the scraper plate to rotate on the surface of the collection screen to scrape away debris and avoid blockage.

Benefits of technology

It effectively avoids the congestion of the collection screen, ensures that rainwater can enter the pool normally, and improves the collection effect of rainwater.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention provides a prefabricated two-way arc-ribbed super-rigid rainwater collection fire pool with unattended remote monitoring, which relates to the technical field of rainwater collection. It includes a pool body, a closed cover is arranged at the upper end of the pool body, a through hole is arranged at the center of the closed cover, a collection screen is horizontally arranged in the through hole, a rotating shaft is rotatably arranged at the center of the collection screen, a scraping plate is arranged at the upper end of the rotating shaft, the lower surface of the scraping plate is in contact with the upper surface of the collection screen, the lower end of the rotating shaft extends into the pool body, and a driving component is arranged in the pool body. The driving component is used to drive the rotating shaft to rotate. In the present invention, the driving component can drive the rotating shaft to rotate, and the rotation of the rotating shaft drives the scraping plate to rotate on the surface of the collection screen, thereby scraping the sundries on the collection screen, avoiding the blockage of the collection screen, ensuring that rainwater can enter the pool body through the collection screen, and improving the rainwater collection effect.
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Description

Technical Field

[0001] The present invention relates to the technical field of rainwater collection, and particularly to a prefabricated two-way arc rib type super-rigid rainwater collection and fire fighting pool with unattended remote monitoring. Background Art

[0002] A rainwater collection and fire emergency pool can collect rainwater, and the collected rainwater can be used for various purposes, such as irrigation, toilet flushing, road cleaning, etc., so as to realize the effective utilization of rainwater resources. In addition, in case of a fire, the fire emergency pool can quickly provide sufficient water source for the fire fighting system, ensure the normal operation of fire fighting equipment, extinguish the fire in time, and protect the lives and property safety of people.

[0003] For example, a Chinese patent with the authorization announcement number CN118257323B discloses a rainwater collection and reuse integrated device and its use method, belonging to the field of water treatment equipment, including a water storage tank and a purification tank. A notch is provided on the side wall of the water storage tank, and the purification tank is arranged in the notch on the side wall of the water storage tank. The purification tank is communicated with the water storage tank. It also includes a limiting ring fixedly connected to the upper position of the inner cavity of the sleeve of the water storage tank, and a collection component arranged on the top of the water storage tank. In the present invention, by providing a purification tank and a screen, the screen is arranged in the purification tank. The collected rainwater is screened by the screen, and impurities in the water body can be removed. The purified rainwater passes through the screen and flows into the water storage tank for standby, which can effectively guarantee the quality of the water body in the water storage tank, reduce the situation that the outlet pipe of the water storage tank is blocked by impurities, and thus ensure the normal use of the collected rainwater.

[0004] However, with the increase of the service time, a large amount of impurities will accumulate on the screen, causing the screen to be blocked, so that rainwater cannot normally pass through the screen and enter the water storage tank, affecting the collection of rainwater. Summary of the Invention

[0005] The present invention provides a prefabricated two-way arc rib type super-rigid rainwater collection and fire fighting pool with unattended remote monitoring to solve the technical problem that with the increase of the service time, a large amount of impurities will accumulate on the screen, causing the screen to be blocked, so that rainwater cannot normally pass through the screen and enter the water storage tank, affecting the collection of rainwater.

[0006] To solve the above technical problem, the present invention discloses a prefabricated two-way arc rib type super-rigid rainwater collection and fire fighting pool with unattended remote monitoring, including: a pool body, a closed cover is arranged at the upper end of the pool body, a through hole is arranged at the center of the closed cover, a collection screen is horizontally arranged in the through hole, a rotating shaft is rotatably arranged at the center of the collection screen, a scraping plate is arranged at the upper end of the rotating shaft, the lower surface of the scraping plate is in contact with the upper surface of the collection screen, the lower end of the rotating shaft extends into the pool body, and a driving component is arranged in the pool body for driving the rotating shaft to rotate.

[0007] Preferably, a remote monitoring system is provided on the water tank body. The remote monitoring system includes a control module, a detection module, a drainage module, a communication module, a monitoring server, a monitoring terminal and a power supply device. The control module, the detection module, the drainage module and the communication module are respectively electrically connected to the power supply device. The power supply device is used to supply power to the control module, the detection module, the drainage module and the communication module. The control module is respectively connected to the detection module, the drainage module and the communication module. The communication module is communicatively connected to the monitoring server, and the monitoring server is connected to the monitoring terminal.

[0008] Preferably, the detection module includes a liquid level sensor and a camera. The liquid level sensor is arranged inside the water tank body and is used to detect the water level inside the water tank body. The camera is arranged outside the water tank body and is used to collect images of the surrounding environment of the water tank body.

[0009] Preferably, the drainage module includes a water pump. The input end of the water pump is communicated with the inside of the water tank body, and the output end of the water pump is communicated with the outside of the water tank body.

[0010] Preferably, the driving assembly includes a diversion pipe. The diversion pipe includes a collection section and a driving section arranged in sequence from top to bottom. The collection section is funnel-shaped. The upper end of the collection section is communicated with the through hole. The diameter of the upper end of the collection section is larger than the diameter of the through hole, and the diameter of the lower end of the collection section is smaller than the diameter of the through hole. The driving section is cylindrical. The upper end of the driving section is communicated with the lower end of the collection section. An installation box is arranged on the side wall of the driving section. One side of the installation box is communicated with the inside of the driving section. A worm is horizontally arranged in the installation box. Both ends of the worm are rotatably connected to the inner wall of the installation box. A worm gear is arranged on the rotating shaft. The worm gear meshes with the worm. A plurality of blades are arranged on the outer wall of the worm. The plurality of blades are annularly arrayed about the central axis of the worm. The end of the blade close to the rotating shaft extends into the inside of the driving section.

[0011] Preferably, a filter screen is arranged inside the water tank body. The filter screen is conical, and the outer periphery of the filter screen is connected to the inner wall of the water tank body.

[0012] Preferably, a plurality of water discharge holes are arranged on the outer wall of the water tank body. One end of the water discharge hole is communicated with the space above the filter screen, and the other end of the water discharge hole is communicated with the outside of the water tank body.

[0013] Preferably, a connecting sleeve is arranged at the center of the filter screen. The outer wall of the connecting sleeve is rotatably connected to the center of the filter screen. A moving rod is slidably arranged in the connecting sleeve. Guide bars are vertically arranged on the outer wall of the moving rod. Guide grooves adapted to the guide bars are arranged on the inner wall of the connecting sleeve. The guide bars are slidably connected to the guide grooves up and down. A limiting block is arranged on the outer wall of the moving rod near the upper end. The limiting block is located above the connecting sleeve. A floating block is arranged at the lower end of the moving rod. The moving rod is rotatably connected to the floating block. A plurality of support frames are arranged on the outer wall of the moving rod. The support frames are located below the filter screen. The plurality of support frames are distributed in a circular array about the central axis of the moving rod. One end of the support frame is hingedly connected to the outer wall of the lower end of the connecting sleeve. A water-blocking cloth is arranged between the support frame and the filter screen. The upper side wall of the support frame is connected to the water-blocking cloth. A connecting rod is arranged between the support frame and the moving rod. One end of the connecting rod is hingedly connected to the middle position of the support frame near the connecting rod, and the other end of the connecting rod is hingedly connected to the side wall of the moving rod.

[0014] Preferably, a connecting hole is arranged at the bottom of the rotating shaft. The upper end of the moving rod is connected to the connecting hole through a connecting mechanism. The connecting mechanism includes a mounting hole. The mounting hole is arranged at the center of the top end of the moving rod. A top block is slidably arranged in the mounting hole. A moving platform is arranged at the lower end of the top block. The moving platform is frustum-shaped. The diameter of the upper end of the moving platform is larger than the diameter of the lower end of the moving platform. The lower end of the moving platform is connected to the bottom wall of the mounting hole through a connecting spring. Sliding holes are symmetrically arranged on the left and right sides of the moving rod. Friction rods are slidably arranged in the sliding holes. One end of the friction rod extends into the mounting hole and is provided with a roller. The roller contacts the outer wall of the moving platform. A compression spring is sleeved outside the friction rod. One end of the compression spring is connected to the inner wall of the mounting hole, and the other end of the compression spring is connected to the outer wall of the friction rod.

[0015] Preferably, fixing strips are arranged on the inner wall of the connecting hole. The fixing strips are arranged vertically.

[0016] The technical solution of the present invention has the following advantages: The present invention provides an assembled two-way arc rib type super-rigid rainwater collection fire pool with unattended remote monitoring, which relates to the technical field of rainwater collection. It includes a pool body. A closed cover is arranged at the upper end of the pool body. A through hole is arranged at the center of the closed cover. A collection screen is horizontally arranged in the through hole. A rotating shaft is rotatably arranged at the center of the collection screen. A scraping plate is arranged at the upper end of the rotating shaft. The lower surface of the scraping plate contacts the upper surface of the collection screen. The lower end of the rotating shaft extends into the pool body. A driving component is arranged in the pool body. The driving component is used to drive the rotating shaft to rotate. In the present invention, the driving component can drive the rotating shaft to rotate. The rotation of the rotating shaft drives the scraping plate to rotate on the surface of the collection screen, thereby scraping the sundries on the collection screen, avoiding the blockage of the collection screen, ensuring that rainwater can enter the pool body through the collection screen, and improving the rainwater collection effect.

[0017] Other features and advantages of the present invention will be set forth in the following description, and in part will be obvious from the description, or may be learned by practice of the present invention. The objectives and other advantages of the present invention may be realized and attained by the means particularly pointed out in the written description and the drawings thereof.

[0018] The technical solutions of the present invention will be further described in detail below with reference to the drawings and embodiments. Description of the Drawings

[0019] The drawings are used to provide a further understanding of the present invention, and constitute a part of the description. Together with the embodiments of the present invention, they are used to explain the present invention, but do not constitute a limitation to the present invention. In the drawings:

[0020] Figure 1 It is a schematic diagram of the overall structure of a prefabricated two-way arc rib type super-rigid rainwater collection and fire fighting pool with unattended remote monitoring according to the present invention;

[0021] Figure 2 It is a schematic diagram of the super-rigid two-way arc rib type plate structure according to the present invention;

[0022] Figure 3 It is a schematic diagram of the mobile rod and the rotating shaft not connected according to the present invention;

[0023] Figure 4 According to the present invention Figure 3 The enlarged view of the structure at A in;

[0024] Figure 5 According to the present invention Figure 4 The enlarged view of the structure at B in;

[0025] Figure 6 It is a schematic diagram of the connection between the mobile rod and the rotating shaft according to the present invention;

[0026] Figure 7 According to the present invention Figure 6 The enlarged view of the structure at C in;

[0027] Figure 8 It is a top view of the water retaining cloth according to the present invention.

[0028] In the figure: 1, pool body; 101, plate; 2, closing cover; 3, collecting screen; 4, rotating shaft; 5, scraper plate; 6, guide tube; 7, installation box; 8, worm; 9, worm wheel; 10, blade; 11, filter screen; 12, drain hole; 13, connecting sleeve; 14, moving rod; 15, limit block; 16, floating block; 17, supporting frame; 18, water retaining cloth; 19, connecting rod; 20, connecting hole; 21, installation hole; 22, top block; 23, moving platform; 24, sliding hole; 25, friction rod; 26, roller; 27, compression spring; 28, fixing bar; 29, toggle bar; 30, scraper; 31, connecting spring. DETAILED DESCRIPTION

[0029] The preferred embodiments of the present invention are described below in conjunction with the accompanying drawings. It should be understood that the preferred embodiments described herein are only used to illustrate and explain the present invention, and are not used to limit the present invention.

[0030] In addition, in the present invention, the descriptions of "first", "second", etc. are only used for descriptive purposes, and do not specifically refer to the order or sequence, nor are they used to limit the present invention. They are only used to distinguish components or operations described with the same technical terms, and cannot be understood as indicating or implying their relative importance or implicitly indicating the number of technical features indicated. Therefore, the features defined as "first" and "second" may explicitly or implicitly include at least one of the features. In addition, the technical solutions and technical features between the various embodiments can be combined with each other, but they must be based on the ability of ordinary technicians in the field to implement them. When the combination of technical solutions is contradictory or cannot be implemented, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection required by the present invention.

[0031] Example 1

[0032] The embodiment of the present invention provides an assembled bidirectional arc-rib type ultra-rigid rainwater collection fire water pool with unattended remote monitoring, such as Figures 1 - 8 As shown, it includes: a pool body 1, a closing cover 2 is arranged on the upper end of the pool body 1, a through hole is arranged in the center of the closing cover 2, a collecting screen 3 is horizontally arranged in the through hole, a rotating shaft 4 is rotatably arranged in the center of the collecting screen 3, a scraping plate 5 is arranged on the upper end of the rotating shaft 4, the lower surface of the scraping plate 5 is in contact with the upper surface of the collecting screen 3, the lower end of the rotating shaft 4 extends into the pool body 1, and a driving component is arranged in the pool body 1, and the driving component is used to drive the rotating shaft 4 to rotate.

[0033] The working principle and beneficial effects of the above technical solution are as follows: The water tank body 1 is assembled by super-rigid double-arc ribbed plates 101, which can improve the stability and service life of the water tank body 1. A closed cover 2 is arranged at the upper end of the water tank body 1, and a collection screen 3 is arranged at the center of the closed cover 2. When it rains, rainwater can flow into the interior of the water tank body 1 through the collection screen 3, thus completing the collection of rainwater. The collected rainwater can be used for irrigation, flushing toilets, road cleaning, and can also be connected to the fire protection system to provide water source for the fire protection system, realizing the recycling of rainwater resources and saving water resources. The collection screen 3 can block sundries in rainwater or the external environment, thereby improving the cleanliness of the rainwater in the water tank body 1, ensuring the water quality in the water tank body 1, and preventing the pipeline from being blocked by sundries during later use. During the rainwater collection process, the driving assembly can drive the rotating shaft 4 to rotate, and the rotation of the rotating shaft 4 drives the scraping plate 5 to rotate on the surface of the collection screen 3, thereby scraping the sundries on the collection screen 3, preventing the collection screen 3 from being blocked, and ensuring that rainwater can smoothly enter the water tank body 1 through the collection screen 3, improving the rainwater collection effect.

[0034] Embodiment 2

[0035] Based on the above Embodiment 1, a remote monitoring system is arranged on the water tank body 1. The remote monitoring system includes a control module, a detection module, a drainage module, a communication module, a monitoring server, a monitoring terminal and a power supply device. The control module, the detection module, the drainage module and the communication module are respectively electrically connected to the power supply device. The power supply device is used to supply power to the control module, the detection module, the drainage module and the communication module. The control module is respectively connected to the detection module, the drainage module and the communication module. The communication module is communicatively connected to the monitoring server, and the monitoring server is connected to the monitoring terminal;

[0036] The detection module includes a liquid level sensor and a camera. The liquid level sensor is arranged inside the water tank body 1 and is used to detect the water level in the water tank body 1. The camera is arranged outside the water tank body 1 and is used to collect the image of the surrounding environment of the water tank body 1;

[0037] The drainage module includes a water pump. The input end of the water pump is communicated with the inside of the water tank body 1, and the output end of the water pump is communicated with the outside of the water tank body 1;

[0038] The control module includes a PLC programmable controller.

[0039] The working principle and beneficial effects of the above technical solution are as follows: The liquid level sensor can detect the real-time liquid level of the rainwater collected in the water tank body 1, the camera can obtain the images of the surrounding environment of the water tank body 1, the control module processes the real-time liquid level and the images of the surrounding environment of the water tank body 1 and then sends them to the communication module, and through the communication module, the real-time liquid level and the images of the surrounding environment of the water tank body 1 are sent to the monitoring server, and then the real-time liquid level and the images of the surrounding environment of the water tank body 1 can be viewed through the monitoring terminal. Preferably, the control module is arranged in the control cabinet, the control cabinet is arranged on the closed cover 2, the camera is arranged on the closed cover 2, and a fire protection system is also arranged on the closed cover 2. The fire protection system includes a fire hydrant and can be connected to the fire water pipe; when the real-time liquid level of the rainwater collected in the water tank body 1 detected by the liquid level sensor is greater than the preset liquid level, the control module can control the water pump to start, so as to drain the rainwater in the water tank body 1 until the real-time liquid level does not exceed the preset liquid level. By setting up a remote monitoring system, remote monitoring and unattended operation of the water tank body 1 can be realized, and the labor intensity of the staff is reduced.

[0040] Embodiment 3

[0041] On the basis of Embodiment 1 or 2, as Figure 3 、 Figure 4 shown, the driving component includes a diversion pipe 6. The diversion pipe 6 includes a collection section and a driving section arranged in sequence from top to bottom. The collection section is funnel-shaped. The upper end of the collection section is communicated with the through hole. The diameter of the upper end of the collection section is larger than the diameter of the through hole, and the diameter of the lower end of the collection section is smaller than the diameter of the through hole. The driving section is cylindrical. The upper end of the driving section is communicated with the lower end of the collection section. An installation box 7 is arranged on the side wall of the driving section. One side of the installation box 7 is communicated with the inside of the driving section. A worm 8 is horizontally arranged in the installation box 7. The two ends of the worm 8 are rotatably connected to the inner wall of the installation box 7. A worm gear 9 is arranged on the rotating shaft 4. The worm gear 9 meshes with the worm 8. A plurality of blades 10 are arranged on the outer wall of the worm 8. The plurality of blades 10 are annularly arrayed about the central axis of the worm 8. The end of the blade 10 close to the rotating shaft 4 extends into the inside of the driving section.

[0042] The working principle and beneficial effects of the above technical solution are as follows: When the rainwater flows through the collection screen 3 and into the diversion pipe 6, the rainwater first gathers in the collection section of the diversion pipe 6, then flows downward along the collection section, and flows out through the lower end of the driving section. When the rainwater passes through the driving section, the flowing rainwater can flow through the blades 10 located outside the installation box 7, thereby driving the worm 8 to rotate through the blades 10. The rotation of the worm 8 can drive the worm gear 9 to rotate, and the rotation of the worm gear 9 drives the rotating shaft 4 to rotate, so as to drive the scraping plate 5 at the upper end of the rotating shaft 4 to slide on the surface of the collection screen 3 and scrape the sundries on the surface of the collection screen 3, preventing the collection screen 3 from being blocked and ensuring that the rainwater can smoothly pass through the collection screen 3 and enter the water tank body 1.

[0043] Embodiment 4

[0044] Based on Embodiment 3, as Figure 3 shown, a filter screen 11 is arranged inside the water tank body 1. The filter screen 11 is conical, and the outer periphery of the filter screen 11 is connected to the inner wall of the water tank body 1.

[0045] The working principle and beneficial effects of the above technical solution are as follows: A conical filter screen 11 is also arranged in the water tank body 1. Rainwater flows onto the filter screen 11 after passing through the diversion pipe 6, and then flows through the filter screen 11 and into the space below the filter screen 11 for storage in the water tank body 1 for standby. The filter screen 11 can remove impurities such as suspended particles carried in the rainwater, improve the quality of the rainwater in the water tank body 1, and thus ensure the safety of rainwater collection and reuse.

[0046] Embodiment 5

[0047] Based on Embodiment 4, as Figure 3 shown, a plurality of drain holes 12 are arranged on the outer wall of the water tank body 1. One end of each drain hole 12 is communicated with the space above the filter screen 11, and the other end of each drain hole 12 is communicated with the outside of the water tank body 1.

[0048] The working principle and beneficial effects of the above technical solution are as follows: When the liquid level of the rainwater collected in the water tank body 1 exceeds the edge height of the filter screen 11, the excess rainwater can flow out of the water tank body 1 through the drain holes 12, preventing excessive rainwater collection in the water tank body 1, relieving the internal pressure of the water tank body 1, and extending the service life of the water tank body 1.

[0049] Embodiment 6

[0050] Based on Embodiment 5, as Figure 3 、 Figure 6 shown, a connecting sleeve 13 is arranged at the center of the filter screen 11. The outer wall of the connecting sleeve 13 is rotatably connected to the center of the filter screen 11. A moving rod 14 is slidably arranged inside the connecting sleeve 13. Guide bars are vertically arranged on the outer wall of the moving rod 14, and guide grooves adapted to the guide bars are arranged on the inner wall of the connecting sleeve 13. The guide bars and the guide grooves are slidably connected up and down. A limiting block 15 is arranged on the outer wall of the moving rod 14 near the upper end, and the limiting block 15 is located above the connecting sleeve 13. A floating block 16 is arranged at the lower end of the moving rod 14, and the moving rod 14 is rotatably connected to the floating block 16. A plurality of support frames 17 are arranged on the outer wall of the moving rod 14, and the support frames 17 are located below the filter screen 11. The plurality of support frames 17 are distributed in a circular array about the central axis of the moving rod 14. One end of each support frame 17 is hingedly connected to the lower outer wall of the connecting sleeve 13. A water blocking cloth 18 is arranged between the support frames 17 and the filter screen 11, and the upper side wall of the support frames 17 is connected to the water blocking cloth 18. A connecting rod 19 is arranged between the support frames 17 and the moving rod 14. One end of the connecting rod 19 is hingedly connected to the middle position of the support frame 17, and the other end of the connecting rod 19 is hingedly connected to the side wall of the moving rod 14.

[0051] The working principle and beneficial effects of the above technical solution are as follows: Initially, the limiting block 15 is in contact with the upper end of the connecting sleeve 13, there is a gap between the end of the support frame 17 and the inner wall of the pool body 1, the water blocking cloth 18 is folded and stored, and the rainwater can flow along the gap to the space below the water blocking cloth 18 after being filtered by the filter net 11. As the collected rainwater increases, the rainwater level gradually rises, and the collected rainwater gradually contacts the floating block 16 and drives the floating block 16 to float upward under the action of buoyancy. The floating block 16 drives the moving rod 14 to slide upward along the inner wall of the connecting sleeve 13. At the same time, the moving rod 14 drives the support frame 17 to swing towards the filter net 11 through the connecting rod 19, and the water blocking cloth 18 is gradually unfolded until the upper surface of the water blocking cloth 18 contacts the lower surface of the filter net 11. The water blocking cloth 18 can block the rainwater, prevent too much rainwater from flowing into the lower part of the filter net 11, prevent the rainwater level from exceeding the preset level of the pool body 1, relieve the internal pressure of the pool body 1, and extend the service life of the pool body 1. Moreover, the unfolded water blocking cloth 18 can also support the filter net 11 under the action of the support frame 17, improve the reliability of the filter net 11, and enable the filter net 11 to withstand more rainwater. As the rainwater in the pool body 1 is used, the level of the rainwater collected below the filter net 11 gradually decreases, and the floating block 16 drives the moving rod 14 to slide downward. The moving rod 14 drives the support frame 17 to swing towards the floating block 16 through the connecting rod 19, so that a gap between the end of the support frame 17 and the pool body 1 reappears, facilitating the replenishment of new rainwater into the pool body 1, ensuring sufficient rainwater collection in the pool body 1, and providing a reliable guarantee for the fire protection system.

[0052] Embodiment 7

[0053] On the basis of Embodiment 6, as Figures 3 - 8 shown, a connection hole 20 is provided at the bottom of the rotating shaft 4, and the upper end of the moving rod 14 is connected to the connection hole 20 through a connection mechanism. The connection mechanism includes an installation hole 21, the installation hole 21 is provided at the center of the top end of the moving rod 14, a top block 22 is slidably arranged in the installation hole 21, a moving table 23 is arranged at the lower end of the top block 22, the moving table 23 is frustum-shaped, the diameter of the upper end of the moving table 23 is larger than the diameter of the lower end of the moving table 23, the lower end of the moving table 23 is connected to the bottom wall of the installation hole 21 through a connection spring 31, sliding holes 24 are symmetrically arranged on the left and right sides of the moving rod 14, a friction rod 25 is slidably arranged in the sliding holes 24, one end of the friction rod 25 extends into the installation hole 21 and a roller 26 is arranged, the roller 26 contacts the outer wall of the moving table 23, a compression spring 27 is sleeved outside the friction rod 25, one end of the compression spring 27 is connected to the inner wall of the installation hole 21, and the other end of the compression spring 27 is connected to the outer wall of the friction rod 25;

[0054] Fixing strips 28 are arranged on the inner wall of the connection hole 20, and the fixing strips 28 are arranged vertically.

[0055] The working principle and beneficial effects of the above technical solution are as follows: when the moving rod 14 slides upward under the action of the floating block 16, the upper end of the moving rod 14 is gradually inserted into the connecting hole 20 at the lower end of the rotating shaft 4, and then the top block 22 contacts the top wall of the connecting hole 20. As the moving rod 14 continues to slide upward, the top block 22 slides into the mounting hole 21, and the top block 22 drives the moving platform 23 to move synchronously. Since the diameter of the moving platform 23 gradually increases from bottom to top, when the moving platform 23 moves, the roller 26 rolls along the outer wall of the moving platform 23 and drives the friction rod 25 to slide outward along the sliding hole 24 until the friction rod 2 5, the end portion contacts the inner wall of the connecting hole 20, and the connecting hole 20 drives the moving rod 14 to rotate synchronously through the friction of the friction rod 25, thereby driving the connecting sleeve 13, the support frame 17 and the water retaining cloth 18 to rotate synchronously. At this time, the rotation load of the rotating shaft 4 is relatively large, the rotation speed of the blade 10 slows down, and the rainwater in the driving section of the guide pipe 6 slows down under the obstruction of the blade 10, resulting in that the rainwater in the collection section cannot flow downward in time. After the collection section is filled, the rainwater will not flow into the guide pipe 6 in large quantities, thereby reducing the collection of rainwater, relieving the pressure inside the pool body 1, and causing the actual liquid level in the pool body 1 to slowly reach When the rotating shaft 4 rotates, the fixing bar 28 in the connecting hole 20 can be driven to rotate synchronously. When the friction rod 25 extends to the outside of the sliding hole 24, the fixing bar 28 can contact the end of the friction rod 25 and drive the moving rod 14 to rotate through the friction rod 25, thereby preventing the moving rod 14 from slipping in the connecting hole 20. When the rainwater level in the pool body 1 is reduced, the floating block 16 drives the moving rod 14 to rotate. The movable rod 14 slides downward, and under the action of the connecting spring 31, the movable platform 23 moves away from the bottom wall of the mounting hole 21. Under the action of the compression spring 27, the roller 26 slides along the outer wall of the movable platform 23 and drives the friction rod 25 to slide in the sliding hole 24 toward the mounting hole 21. After the movable rod 14 is separated from the connecting hole 20, the movable rod 14 stops rotating, reducing the rotational load of the rotating shaft 4. When the amount of rainwater is the same, due to the reduction in the load of the rotating shaft 4, the rotation speed of the blade 10 is accelerated, and the flow velocity in the guide pipe 6 is faster, which can quickly collect rainwater, thereby replenishing rainwater in the pool body 1.

[0056] Example 8

[0057] On the basis of Example 7, Figure 6 , Figure 8 As shown, a plurality of toggle bars 29 are provided on the upper surface of the water retaining cloth 18 . The toggle bars 29 are located above the support frame 17 , and the toggle bars 29 correspond to the support frame 17 one by one.

[0058] The working principle and beneficial effects of the above technical solution are as follows: when the moving rod 14 rotates with the rotating shaft 4, the moving rod 14 drives the support frame 17 to rotate through the connecting sleeve 13, and the support frame 17 drives the water retaining cloth 18 to rotate, and the toggle bar 29 on the water retaining cloth 18 is toggled under the filter screen 11, and the toggle rainwater can flush the filter screen 11 upward, and flush the impurities attached to the filter screen 11 out of the filter screen 11, thereby achieving the flushing of the filter screen 11 and avoiding the clogging of the filter screen 11, ensuring the filtering effect of the filter screen 11 on rainwater, improving the water quality of the collected rainwater, and facilitating the use of users. The toggle bar 29 corresponds to the support frame 17, and the toggle bar 29 can be supported by the support frame 17, so that the toggle bar 29 has enough force to toggle the rainwater, thereby improving the reliability of the toggle bar 29.

[0059] Example 9

[0060] On the basis of Example 7 or 8, Figure 3 As shown, a scraper 30 is disposed on the outer wall of the upper end of the connecting sleeve 13 . The scraper 30 is disposed obliquely, and the outer wall of the scraper 30 contacts the upper surface of the filter screen 11 .

[0061] The working principle and beneficial effects of the above technical solution are as follows: a scraper 30 is arranged on the outer wall of the connecting sleeve 13, and the connecting sleeve 13 can drive the scraper 30 to rotate when rotating with the moving rod 14. The scraper 30 can scrape off impurities on the surface of the filter screen 11, further clean the filter screen 11, and ensure the filtering performance of the filter screen 11. When cleaning in conjunction with the toggle bar 29, not only can the inside of the filter screen 11 be flushed, but also the flushed impurities can be scraped off by the scraper 30, thereby improving the cleaning effect of the filter screen 11 and extending the service life of the filter screen 11. No manual participation is required during cleaning, thereby reducing the labor intensity of the staff.

[0062] In the description of the present invention, it is to be understood that the terms “center”, “longitudinal”, “lateral”, “length”, “width”, “thickness”, “up”, “down”, “front”, “back”, “left”, “right”, “vertical”, “horizontal”, “top”, “bottom”, “inside”, “outside”, “clockwise”, “counterclockwise”, “axial”, “radial”, “circumferential”, etc., indicating orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the referred device or element must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as limiting the present invention.

[0063] In the present invention, unless otherwise clearly defined or limited, terms such as "installed", "connected", "joined", "fixed", etc. shall be understood in a broad sense. For example, it may be a fixed connection, a detachable connection, or integrated; it may be a mechanical connection, an electrical connection, or capable of communicating with each other; it may be directly connected, or indirectly connected through an intermediate medium, and it may be the communication inside two components or the interaction relationship between two components, unless otherwise clearly defined. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0064] Although the embodiments of the present invention have been disclosed as above, it is not limited to only the applications listed in the specification and embodiments. It can be fully applied to various fields suitable for the present invention. For those familiar with the field, additional modifications can be easily made. Therefore, without departing from the general concept defined by the claims and the equivalent scope, the present invention is not limited to the specific details and the examples shown and described herein.

Claims

1. An assembled bidirectional arc-rib type ultra-rigid rainwater collection fire water pool with unattended remote monitoring, characterized in that: include: A pool body (1), a closed cover (2) is arranged at the upper end of the pool body (1), a through hole is arranged at the center of the closed cover (2), a collecting screen (3) is arranged horizontally in the through hole, a rotating shaft (4) is arranged at the center of the collecting screen (3) for rotation, a scraping plate (5) is arranged at the upper end of the rotating shaft (4), the lower surface of the scraping plate (5) is in contact with the upper surface of the collecting screen (3), the lower end of the rotating shaft (4) extends into the pool body (1), and a driving component is arranged in the pool body (1), the driving component is used to drive the rotating shaft (4) to rotate; A filter screen (11) is arranged inside the pool body (1), the filter screen (11) is conical, and the outer periphery of the filter screen (11) is connected to the inner wall of the pool body (1); A plurality of drainage holes (12) are provided on the outer wall of the pool body (1), one end of the drainage hole (12) is connected to the space above the filter screen (11), and the other end of the drainage hole (12) is connected to the outside of the pool body (1); A connecting sleeve (13) is provided at the center of the filter screen (11), the outer wall of the connecting sleeve (13) is rotatably connected to the center of the filter screen (11), a moving rod (14) is slidably provided in the connecting sleeve (13), a guide bar is vertically provided on the outer wall of the moving rod (14), a guide groove matched with the guide bar is provided on the inner wall of the connecting sleeve (13), the guide bar and the guide groove are slidably connected up and down, a limit block (15) is provided near the outer wall of the upper end of the moving rod (14), the limit block (15) is located above the connecting sleeve (13), a floating block (16) is provided at the lower end of the moving rod (14), the moving rod (14) is rotatably connected to the floating block (16), and the outer wall of the moving rod (14) is provided with A dry support frame (17) is provided, the support frame (17) being located below the filter screen (11), a plurality of support frames (17) being distributed in a ring array about the central axis of the moving rod (14), one end of the support frame (17) being hingedly connected to the outer wall of the lower end of the connecting sleeve (13), a water retaining cloth (18) being arranged between the support frame (17) and the filter screen (11), an upper side wall of the support frame (17) being connected to the water retaining cloth (18), a connecting rod (19) being arranged between the support frame (17) and the moving rod (14), one end of the connecting rod (19) being hingedly connected to the support frame (17) near the middle position, and the other end of the connecting rod (19) being hingedly connected to the side wall of the moving rod (14).

2. According to claim 1, an assembled bidirectional arc-rib type ultra-rigid rainwater collection fire water pool with unattended remote monitoring, characterized in that: A remote monitoring system is arranged on the pool body (1), and the remote monitoring system comprises a control module, a detection module, a drainage module, a communication module, a monitoring server, a monitoring terminal and a power supply device. The control module, the detection module, the drainage module and the communication module are respectively electrically connected to the power supply device, and the power supply device is used to supply power to the control module, the detection module, the drainage module and the communication module. The control module is respectively connected to the detection module, the drainage module and the communication module. The communication module is connected to the monitoring server for communication, and the monitoring server is connected to the monitoring terminal.

3. According to claim 2, an assembled bidirectional arc-rib type ultra-rigid rainwater collection fire water pool with unattended remote monitoring, characterized in that: The detection module comprises a liquid level sensor and a camera, wherein the liquid level sensor is arranged inside the pool body (1) and is used to detect the water level inside the pool body (1), and the camera is arranged outside the pool body (1) and is used to collect images of the surrounding environment of the pool body (1).

4. According to claim 2, an assembled bidirectional arc-rib type ultra-rigid rainwater collection fire water pool with unattended remote monitoring, characterized in that: The drainage module comprises a water pump, wherein an input end of the water pump is connected to the inside of the pool body (1), and an output end of the water pump is connected to the outside of the pool body (1).

5. According to claim 1, the assembled bidirectional arc-rib type ultra-rigid rainwater collection fire water pool with unattended remote monitoring is characterized in that: The driving assembly comprises a flow guide tube (6), the flow guide tube (6) comprising a collecting section and a driving section which are arranged in sequence from top to bottom, the collecting section being funnel-shaped, the upper end of the collecting section being connected to the through hole, the upper end of the collecting section having a diameter greater than the diameter of the through hole, and the lower end of the collecting section having a diameter less than the diameter of the through hole, the driving section being cylindrical, the upper end of the driving section being connected to the lower end of the collecting section, a mounting box (7) being arranged on the side wall of the driving section, one side of the mounting box (7) being connected to the interior of the driving section, a worm (8) being arranged horizontally in the mounting box (7), the two ends of the worm (8) being rotatably connected to the inner wall of the mounting box (7), a worm wheel (9) being arranged on the rotating shaft (4), the worm wheel (9) being meshed with the worm (8), a plurality of blades (10) being arranged on the outer wall of the worm (8), the plurality of blades (10) being distributed in a ring array about the central axis of the worm (8), and the ends of the blades (10) close to the rotating shaft (4) extending into the interior of the driving section.

6. The assembled bidirectional arc-rib type ultra-rigid rainwater collection fire water pool with unattended remote monitoring according to claim 5 is characterized in that: A connecting hole (20) is provided at the bottom of the rotating shaft (4), and the upper end of the moving rod (14) is connected to the connecting hole (20) through a connecting mechanism. The connecting mechanism includes a mounting hole (21), and the mounting hole (21) is provided at the center of the top end of the moving rod (14). A top block (22) is slidably provided in the mounting hole (21), and a moving platform (23) is provided at the lower end of the top block (22). The moving platform (23) is in a truncated cone shape, and the diameter of the upper end of the moving platform (23) is larger than the diameter of the lower end of the moving platform (23). The lower end of the moving platform (23) is connected by a connecting spring (31 ) is connected to the bottom wall of the mounting hole (21), sliding holes (24) are symmetrically arranged on the left and right sides of the moving rod (14), a friction rod (25) is slidably arranged in the sliding hole (24), one end of the friction rod (25) extends into the mounting hole (21) and is provided with a roller (26), the roller (26) contacts the outer wall of the moving platform (23), a compression spring (27) is sleeved on the outside of the friction rod (25), one end of the compression spring (27) is connected to the inner wall of the mounting hole (21), and the other end of the compression spring (27) is connected to the outer wall of the friction rod (25).

7. The assembled bidirectional arc-rib type ultra-rigid rainwater collection fire water pool with unattended remote monitoring according to claim 6 is characterized in that: A fixing strip (28) is disposed on the inner wall of the connection hole (20), and the fixing strip (28) is disposed vertically.

Citation Information

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