Novel environment-friendly ecological pool

By installing a sloping bottom and an automated cleaning device in the ecological pond, the problem of inconvenient cleaning of the pond bottom and side walls is solved, achieving efficient and automated cleaning, and ensuring the purification function of the ecological pond and the health of the water.

CN223732174UActive Publication Date: 2025-12-30GUANGXI CONSTR VOCATIONAL & TECH COLLEGE
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Patent Information

Application Number
CN202520115804.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-17
Publication Date
2025-12-30
Estimated Expiration
2035-01-17

AI Technical Summary

Technical Problem

Existing ecological ponds are prone to accumulating silt, debris, and dirt on the bottom and side walls, making cleaning tedious and inconvenient, affecting purification function and aquatic ecology, and lacking an effective self-cleaning structure.

Method used

The bottom of the main body of the ecological pond is sloping and equipped with a sedimentation tank, a rotating frame and a bottom scraper. Combined with an automated retrieval device and side wall cleaning components, it achieves automated cleaning through a motor and gearbox.

Benefits of technology

The cleaning process has been greatly simplified, cleaning efficiency and cycle have been improved, water bodies have been kept clean, the purification function of the ecological pond has been ensured to operate normally, harmful bacteria have been prevented from growing, and the health of the water body has been maintained.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a novel environment-friendly ecological pool, and relates to the technical field of ecological pools. The bottom surface in the ecological pool main body is arranged to be a slope surface, a precipitation tank is fixed at the lower end of the ecological pool main body, a supporting column is fixed in the precipitation tank, and a rotating frame is mounted at the upper end of the supporting column through a bearing; according to the ecological pond, the bottom surface in the ecological pond main body is arranged to be the slope surface and is matched with the settling tank, the rotating frame and the bottom scraping plate, when the rotating frame rotates, the bottom scraping plate can be tightly attached to the pond bottom of the slope surface, accumulated sludge, sundries and settled dirt are scraped to the settling tank, and the pond bottom cleaning process is greatly simplified; the fixing plate, the rotating column and the side wall scraping plate are ingeniously combined, and an elastic adjusting structure formed by connecting arms at the upper end and the lower end of the rotating column, a guide rod, a spring and a nut is adopted, so that the side wall scraping plate is always tightly attached to the side wall, and stubborn dirt such as algae and microbial films can be effectively removed under the driving of the rotating frame.
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Description

Technical Field

[0001] This utility model relates to the field of ecological pond technology, and in particular to a novel environmentally friendly ecological pond. Background Technology

[0002] Ecological ponds, as a key facility for purifying water and restoring the ecosystem by simulating the natural ecosystem, have attracted much attention. This utility model is a new type of environmentally friendly ecological pond.

[0003] Existing ecological ponds are prone to accumulating large amounts of silt, debris, and sediment at the bottom. Due to the lack of an effective self-cleaning structure, cleaning is often extremely tedious, requiring a lot of manpower and resources, and the cleaning cycle is long. This not only affects the purification function of the ecological pond itself, but may also breed harmful bacteria and affect the aquatic ecology. Furthermore, algae, microbial films, and other dirt will adhere to the side walls of the ecological pond, making cleaning inconvenient. Utility Model Content

[0004] This disclosure relates to a novel environmentally friendly ecological pond to address the problems mentioned in the background section.

[0005] The first aspect of this disclosure provides a novel environmentally friendly ecological pond, specifically comprising: the main body of the ecological pond;

[0006] The bottom surface of the main body of the ecological pond is sloped. A sedimentation tank is fixed to the lower end of the main body of the ecological pond. A support column is fixed inside the sedimentation tank. A rotating frame is mounted on the upper end of the support column via bearings. A disc is fixed to the lower end of the rotating frame. Six sets of contact seats are arranged in a ring on the disc. Each of the six sets of contact seats has a ball bearing at its lower end. A cylindrical seat is bolted to the upper end of the support column. The ball bearings at the lower end of the six sets of contact seats make rolling contact with the upper end of the cylindrical seat. A base frame is fixed to the lower end of the rotating frame. A welded component is located at the lower end of the base frame. The mounting frame has a bottom scraper fixed at its lower end, and the lower end of the bottom scraper contacts the bottom surface inside the main body of the ecological pond. Two sets of support arms are welded on the base frame, and side wall cleaning components are fixed on the two sets of support arms. The side wall cleaning components include a fixed plate, a rotating column, and a side wall scraper. There are two sets of fixed plates, which are welded to the two sets of support arms respectively. The rotating column is installed between the two sets of fixed plates through bearings. The side wall scraper is installed on the rotating column through bolts and contacts the side wall inside the main body of the ecological pond.

[0007] In at least some embodiments,

[0008] The upper and lower ends of the rotating column are bolted with connecting arms. Both sets of connecting arms are provided with waist-shaped through grooves. Both sets of fixing plates are equipped with rotatable guide rods. The waist-shaped through grooves on the two sets of connecting arms are respectively fitted onto the two sets of guide rods. Both sets of guide rods are movably sleeved with springs. Both sets of guide rods are threaded with nuts. The springs are located between the nuts and the connecting arms.

[0009] In at least some embodiments,

[0010] The rotating frame is bolted to a roller seat, and the roller seat is mounted with two sets of rotating wheels via bearings. Both sets of rotating wheels roll on the upper end of the main body of the ecological pond. The roller seat is hinged to a hinge seat, and bolts connect the hinge seat to the roller seat.

[0011] In at least some embodiments,

[0012] A gearbox is bolted to the hinge seat, and a motor is bolted to the gearbox. A sprocket is fixed to the output shaft of the gearbox, and a sprocket is fixed to the shaft of the rotating wheel near the motor. The two sets of sprockets are connected by a chain.

[0013] In at least some embodiments,

[0014] The main body of the ecological pool is equipped with a water purification outlet trough. A debris interception plate is fixed on the inner wall of the main body of the ecological pool. A retaining ring is installed on the inner wall of the main body of the ecological pool by bolts. The upper end of the retaining ring is higher than the upper end of the debris interception plate, and the lower end of the retaining ring is located between the upper and lower ends of the debris interception plate.

[0015] In at least some embodiments,

[0016] A base plate is bolted to the rotating frame, and two sets of supports are bolted to the base plate. A top frame is bolted between the two sets of supports, and a second gearbox is bolted to the top frame. A second motor is bolted to the second gearbox, and two sets of sprockets are fixed to the output shaft of the second gearbox. Lifting transmission seats are bolted to both sets of supports, and sprockets are fixed to the input shafts of both sets of lifting transmission seats. The sprockets on the input shafts of the two sets of lifting transmission seats are connected to the two sets of sprockets on the output shaft of the second gearbox via chains.

[0017] In at least some embodiments,

[0018] Both sets of lifting transmission seats have movable threaded rods inside, and worm gear rings are threadedly fitted on the threaded rods. The worm gear rings are located inside the lifting transmission seats, and worms are fixed on the input shafts of both sets of lifting transmission seats, with the worms meshing with the worm gear rings.

[0019] In at least some embodiments,

[0020] Both sets of threaded rods have a connecting seat fixed at their lower ends. Two sets of round rods are fixed on the connecting seats. Two sets of linear bearings are fixed on both sets of supports. Inside the linear bearings of the moving round rods, mounting seats are installed at the lower ends of the two sets of connecting seats by bolts. A retrieval frame is installed on the mounting seats by bolts.

[0021] In at least some embodiments,

[0022] A valve body is bolted to the sedimentation tank. A sealing plate slides on the valve body and has threaded holes. A lead screw is mounted on the valve body via a bearing. The lead screw is threaded into the threaded holes on the sealing plate. A mounting plate is fixed to the valve body. A No. 3 gearbox is bolted to the mounting plate. The output shaft of the No. 3 gearbox is connected to the lead screw. A No. 3 motor is bolted to the No. 3 gearbox.

[0023] This utility model provides a novel environmentally friendly ecological pond, which has the following beneficial effects:

[0024] In this invention, the bottom surface of the main body of the ecological pond is designed as a slope. Combined with a sedimentation tank, a rotating frame, and a bottom scraper, when the rotating frame rotates, the bottom scraper can closely adhere to the slope of the pond bottom, scraping the accumulated silt, debris, and sediment into the sedimentation tank. This greatly simplifies the pond bottom cleaning process and reduces the input of manpower and resources. Compared with traditional ecological ponds that require long-term and arduous manual cleaning of the pond bottom, this design not only significantly improves cleaning efficiency but also greatly shortens the cleaning cycle, effectively ensuring the cleanliness of the ecological pond bottom. This allows the roots of aquatic plants to breathe freely, promotes the normal metabolism of beneficial microorganisms, fully utilizes the self-purification function of the ecological pond, and prevents the growth of harmful bacteria, thus maintaining the ecological health of the water body.

[0025] Secondly, the sidewall cleaning component plays a crucial role in addressing the challenge of cleaning the sidewalls of the ecological pond. The ingenious combination of the fixed plate, rotating column, and sidewall scraper, along with the elastic adjustment structure consisting of connecting arms, guide rods, springs, and nuts at the upper and lower ends of the rotating column, ensures that the sidewall scraper always fits tightly against the sidewall. Stubborn dirt such as algae and microbial film can be effectively removed by the rotating frame. This efficient and convenient sidewall cleaning method not only keeps the ecological pond clean and beautiful, but more importantly, it creates a stable and suitable habitat for aquatic organisms, contributing to the long-term stable operation of the ecosystem within the pond and solving the dilemma that traditional cleaning methods cannot thoroughly clean the sidewall dirt.

[0026] Furthermore, for the removal of floating debris from the water surface, this ecological pond has introduced an automated retrieval device. Through the coordinated operation of components such as the base plate, support, top frame, No. 2 gearbox, No. 2 motor, as well as the lifting transmission seat, threaded rod, connecting seat, and retrieval frame, the lifting and lowering of the retrieval frame can be flexibly controlled according to actual needs, achieving precise and timely retrieval of floating debris. Compared with the traditional method of relying on manual periodic inspections and retrieval, this greatly improves retrieval efficiency. Even during special periods when the amount of debris increases dramatically, it can be quickly cleared, preventing debris from accumulating and obstructing water circulation, ensuring smooth water flow in the ecological pond, and maintaining a stable and high level of water treatment efficiency.

[0027] Furthermore, the sedimentation tank sludge discharge process in this application achieves automated and precise control. The combination of valve body, sealing plate, lead screw, and No. 3 gearbox and No. 3 motor allows operators to precisely adjust the opening and closing degree of the sealing plate by controlling the No. 3 motor, thus grasping the optimal time for sludge discharge. This prevents insufficiently settled impurities from flowing out prematurely and avoids saturation and backflow in the sedimentation tank due to untimely sludge discharge. It optimizes the sludge discharge process, reduces the maintenance burden, and changes the situation of cumbersome and inaccurate operation of traditional ecological pond sedimentation tank sludge discharge. Attached Figure Description

[0028] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings of the embodiments will be briefly described below.

[0029] The accompanying drawings described below are only related to some embodiments of the present invention and are not intended to limit the scope of the present invention.

[0030] In the attached diagram:

[0031] Figure 1 A schematic diagram of the overall structure of this application is shown;

[0032] Figure 2 This application shows Figure 1 A magnified structural diagram of part A in the middle;

[0033] Figure 3 This application shows Figure 1 A magnified structural diagram of part B in the middle section;

[0034] Figure 4 This application shows a schematic diagram of the internal structure of the ecological pool.

[0035] Figure 5 This application shows Figure 4 A magnified structural diagram of section C;

[0036] Figure 6 This application shows Figure 4 A magnified structural diagram of section D in the middle;

[0037] Figure 7 A schematic diagram of the sidewall cleaning component of this application is shown;

[0038] Figure 8 A structural schematic diagram of the base plate portion of this application is shown;

[0039] Figure 9 This application shows Figure 8 A magnified structural diagram of section E in the middle;

[0040] Figure 10 A schematic diagram of the valve body portion of this application is shown.

[0041] List of reference numerals

[0042] 1. Ecological pool main body; 11. Sedimentation tank; 111. Valve body; 112. Sealing plate; 113. Screw rod; 114. Mounting plate; 115. No. 3 gearbox; 1151. No. 3 motor; 12. Support column; 121. Cylinder seat; 13. Rotating frame; 131. Disc; 1311. Contact seat; 14. Roller seat; 141. Hinge seat; 142. No. 1 gearbox; 1421. No. 1 motor; 143. Rotating wheel; 15. Clean water outlet tank; 151. Debris interception plate; 152. Retaining ring; 16. Base frame; 161. Mounting frame; 162. Bottom scraper; 163. Support arm; 17. Side wall cleaning components; 171. Fixing plate; 1711. Guide rod; 1712. Spring; 172. Rotating column; 1721. Connecting arm; 173. Side wall scraper;

[0043] 2. Seat plate; 21. Support; 211. Lifting transmission seat; 212. Threaded rod; 213. Connecting seat; 214. Linear bearing; 215. Round rod; 22. Top frame; 221. No. 2 gearbox; 222. No. 2 motor; 23. Mounting seat; 231. Salvage frame. Detailed Implementation

[0044] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. Based on the described embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.

[0045] Example 1: Please refer to Figures 1 to 10 :

[0046] This utility model proposes a novel environmentally friendly ecological pond, comprising: ecological pond body 1;

[0047] The bottom surface of the main body 1 of the ecological pond is sloped. A sedimentation tank 11 is fixed to the lower end of the main body 1. A support column 12 is fixed inside the sedimentation tank 11. A rotating frame 13 is mounted on the upper end of the support column 12 via bearings. A disc 131 is fixed to the lower end of the rotating frame 13. Six sets of contact seats 1311 are arranged in a ring on the disc 131. Each of the six sets of contact seats 1311 has a ball bearing at its lower end. A cylindrical seat 121 is bolted to the upper end of the support column 12. The ball bearings at the lower end of the six sets of contact seats 1311 are in rolling contact with the upper end of the cylindrical seat 121. A base frame 16 is fixed to the lower end of the rotating frame 13. A mounting bracket 161 is welded to the lower end of the base frame 16. A bottom scraper 162 is fixed to the lower end of the mounting frame 161. The lower end of the bottom scraper 162 contacts the bottom surface inside the main body 1 of the ecological pond. Two sets of support arms 163 are welded on the base frame 16. Side wall cleaning components 17 are fixed on the two sets of support arms 163. The side wall cleaning components 17 include a fixing plate 171, a rotating column 172 and a side wall scraper 173. Two sets of fixing plates 171 are provided. The two sets of fixing plates 171 are welded to the two sets of support arms 163 respectively. The rotating column 172 is installed between the two sets of fixing plates 171 through bearings. The side wall scraper 173 is installed on the rotating column 172 through bolts. The side wall scraper 173 contacts the side wall inside the main body 1 of the ecological pond.

[0048] In this embodiment of the disclosure,

[0049] The upper and lower ends of the rotating column 172 are bolted with connecting arms 1721. Both sets of connecting arms 1721 are provided with waist-shaped through grooves. Both sets of fixed plates 171 are equipped with rotatable guide rods 1711. The waist-shaped through grooves on the two sets of connecting arms 1721 respectively fit onto the two sets of guide rods 1711. Both sets of guide rods 1711 are movably sleeved with springs 1712. Nuts are threaded onto both sets of guide rods 1711. The springs 1712 are located between the nuts and the connecting arms 1721. Their function is to provide a flexible adjustment mechanism for the side wall scraper 173 by cooperating with the connecting arms 1721 at the upper and lower ends of the rotating column 172 and the waist-shaped through grooves thereon, and the rotatable guide rods 1711 installed on the fixed plates 171. When the surface of the ecological pool sidewall is uneven, with protrusions, depressions, or local deformation due to long-term use, the connecting arm 1721 can slide along the guide rod 1711 to a certain extent, ensuring that the sidewall scraper 173 can always fit against the sidewall to the maximum extent. Under normal conditions, the spring 1712 applies pressure to the connecting arm 1721 with its own elasticity, so that the sidewall scraper 173 is pressed tightly against the sidewall, ensuring the removal effect of dirt such as algae and microbial film. Even when the scraper encounters greater resistance, such as when encountering particularly stubborn dirt clumps, the spring 1712 can play a buffering role to prevent the scraper from being damaged due to excessive force. At the same time, it allows the scraper to retract within a certain range. After the resistance decreases, it returns to its original position by relying on elasticity to continue effective cleaning. The initial compression degree of the spring 1712 can be adjusted to change the pressure of the scraper on the sidewall, so as to adapt to the sidewall cleaning needs of different materials and different degrees of pollution.

[0050] In this embodiment of the disclosure,

[0051] A roller seat 14 is bolted onto the rotating frame 13. Two sets of rotating wheels 143 are mounted on the roller seat 14 via bearings. Both sets of rotating wheels 143 roll on the upper end of the ecological pond body 1. A hinge seat 141 is hinged to the roller seat 14, and bolts connect the hinge seat 141 and the roller seat 14. A gearbox 142 is bolted onto the hinge seat 141, and a motor 1421 is bolted onto the gearbox 142. A sprocket is fixed on the output shaft of the gearbox 142, and a sprocket is fixed on the shaft of the rotating wheel 143 near the motor 1421. The two sets of sprockets are connected by a chain. The function of the two sets of rotating wheels 143 on the roller seat 14 is to provide stable support and guidance for the rotating frame 13 as they roll on the upper end of the ecological pond body 1.

[0052] In this embodiment of the disclosure,

[0053] The main body 1 of the ecological pond is equipped with a purified water outlet trough 15. A debris interception plate 151 is fixed on the inner wall of the main body 1 of the ecological pond, and a baffle ring 152 is installed on the inner wall of the main body 1 of the ecological pond by bolts. The upper end of the baffle ring 152 is higher than the upper end of the debris interception plate 151, and the lower end of the baffle ring 152 is between the upper and lower ends of the debris interception plate 151. Its function is as follows: There are often debris such as leaves, plastic waste, and algae foam on the surface of the ecological pond. If these debris directly enter the purified water outlet trough 15 with the water flow, it will not only block the return channel and hinder the normal circulation of the water, but may also accumulate and rot in the purified water outlet trough 15, breed bacteria, and pollute the return water, thus affecting the water quality of the entire ecological pond. With its reasonable installation position, the debris interception plate 151 can intercept most of the floating debris outside the purified water outlet trough 15, keeping the purified water outlet trough 15 unobstructed. The ingenious design of the baffle ring 152 further optimizes the debris interception effect.

[0054] Example 2, based on Example 1,

[0055] A base plate 2 is bolted to the rotating frame 13. Two sets of supports 21 are bolted to the base plate 2. A top frame 22 is bolted between the two sets of supports 21. A second gearbox 221 is bolted to the top frame 22. A second motor 222 is bolted to the second gearbox 221. Two sets of sprockets are fixed to the output shaft of the second gearbox 221. Lifting transmission seats 211 are bolted to both sets of supports 21. Each input shaft is fixed with a sprocket. The sprockets on the input shafts of the two sets of lifting transmission seats 211 are connected to two sets of sprockets on the output shaft of the second gearbox 221 via chains. Each set of lifting transmission seats 211 has a movable threaded rod 212, with a worm gear ring threaded onto the threaded rod 212. The worm gear ring is located inside the lifting transmission seat 211, and a worm is fixed on the input shaft of each set of lifting transmission seats 211, meshing with the worm gear ring. The lower ends of both sets of threaded rods 212 are fixed. A connecting seat 213 is fixed, on which two sets of round rods 215 are fixed. Two sets of linear bearings 214 are fixed on each of the two sets of supports 21. The round rods 215 move within the linear bearings 214. Mounting seats 23 are bolted to the lower ends of the two sets of connecting seats 213. A retrieval frame 231 is bolted to the mounting seats 23. Its function is to connect the base plate 2 to the rotating frame 13, providing support for the two sets of supports 21, allowing the retrieval device to move with the rotating frame 13 and adapt to different... The salvage area; two sets of supports 21 support the top frame 22, ensuring the smooth operation of the second gearbox 221 and the second motor 222 to provide power, and the speed and torque can be flexibly adjusted according to the debris situation through the gearbox; its output shaft sprocket is connected to the input shaft sprocket of the lifting transmission seat 211 via a chain to achieve synchronous drive; inside the lifting transmission seat 211, the threaded rod 212 cooperates with the worm gear ring and the worm meshes, with self-locking characteristics, which can accurately control the lifting of the salvage frame 231, ensuring safety and meeting the requirements of fine salvage.

[0056] Example 3, based on Examples 1 and 2,

[0057] A valve body 111 is bolted to the sedimentation tank 11. A sealing plate 112 slides on the valve body 111. The sealing plate 112 has a threaded hole. A lead screw 113 is mounted on the valve body 111 via a bearing. The lead screw 113 is threadedly engaged with the threaded hole on the sealing plate 112. A mounting plate 114 is fixed to the valve body 111. A third gearbox 115 is bolted to the mounting plate 114. The output shaft of the third gearbox 115 is connected to the lead screw 113. A third motor 1151 is bolted to the third gearbox 115. Its function is to precisely adjust the opening and closing degree of the sealing plate 112 by controlling the rotation of the lead screw 113 by the third motor 1151, so as to grasp the best time for sewage discharge, which can prevent the premature flow of impurities that have not settled sufficiently, and avoid the sedimentation tank 11 from becoming saturated and backflowing due to untimely sewage discharge.

[0058] The working principle of this embodiment is as follows: When the ecological pond starts to operate, the water flows in the main body 1 of the ecological pond. The heavier impurities such as mud, sand and biological excrement in the pond settle to the bottom of the pond due to gravity. Since the bottom surface inside the main body 1 of the ecological pond is set as a slope, the settled impurities will slide down the slope to the sedimentation tank 11.

[0059] In the cleaning process, the first motor 1421 is started. After the power is adjusted by the first gearbox 142, it drives the two sets of rotating wheels 143 on the roller seat 14 to rotate through the sprocket and chain drive. This drives the rotating frame 13 to move smoothly along the upper end of the main body of the ecological pond 1. During the movement of the rotating frame 13, the bottom scraper 162, through the connection between the base frame 16 and the rotating frame 13, closely fits the bottom of the sloping pond and continuously scrapes and sends the remaining sludge and debris that have not slid down to the sedimentation tank 11 to the sedimentation tank 11. At the same time, the side wall cleaning component 17 also moves. Its side wall scraper 173, driven by the rotating column 172, always presses against the side wall of the main body of the ecological pond 1. Relying on the elastic adjustment structure composed of the spring 1712, the connecting arm 1721 and the guide rod 1711, it adapts to the unevenness of the side wall and effectively removes stubborn dirt such as algae and microbial film.

[0060] When cleaning floating debris on the water surface, the No. 2 motor 222 operates, and the power is distributed through the No. 2 gearbox 221. Through the sprocket and chain transmission, it is transmitted to the two sets of lifting transmission seats 211, driving the internal worm gear to rotate. The worm gear drives the worm wheel ring that meshes with it to rotate, thereby causing the threaded rod 212 to rise and fall within the lifting transmission seat 211. The round rod 215 on the connecting seat 213 at the lower end of the threaded rod 212 cooperates with the linear bearing 214 on the support 21 to ensure that the retrieval frame 231 on the connecting seat 213 and the mounting seat 23 can only move stably in the vertical direction. By controlling the forward and reverse rotation and speed of the No. 2 motor 222, the lifting position and speed of the retrieval frame 231 can be precisely adjusted to achieve efficient and timely retrieval of floating debris on the water surface. After retrieval, the debris leaves the water surface with the retrieval frame 231.

[0061] The sewage discharge of sedimentation tank 11 is controlled by motor No. 3 1151. After motor No. 3 1151 is started, the power is transmitted to lead screw 113 through gearbox No. 3 115. The lead screw 113 and the sealing plate 112 sliding on valve body 111 are connected by threads, which converts the rotational motion of lead screw 113 into the linear motion of sealing plate 112. According to the accumulation of impurities in sedimentation tank 11, the operator controls the operation of motor No. 3 1151 to precisely adjust the opening and closing degree of sealing plate 112, grasp the best time for sewage discharge, and prevent impurities that have not settled sufficiently from flowing out too early, and avoid sedimentation tank 11 from becoming saturated and backflowing due to untimely sewage discharge.

[0062] In addition, the water purification outlet 15 on the main body of the ecological pond 1 plays a continuous role throughout the entire operation process, and the water flows out through the water purification outlet 15 after preliminary purification.

[0063] The following points should be noted in this article:

[0064] 1. The accompanying drawings of the embodiments disclosed herein only relate to the structures involved in the embodiments disclosed herein; other structures can be referred to in general design.

[0065] 2. Where there is no conflict, the embodiments of this disclosure and the features in the embodiments can be combined with each other to obtain new embodiments.

[0066] The above are merely specific embodiments of this disclosure, but the scope of protection of this disclosure is not limited thereto. Any changes or substitutions that can be easily conceived by those skilled in the art within the scope of the technology disclosed in this disclosure should be included within the scope of protection of this disclosure.

Claims

1. A new eco-friendly and environment-friendly pond comprising: The ecological pool main body (1); characterized in that, The bottom surface of the inside of the ecological pool main body (1) is provided as a slope, the lower end of the ecological pool main body (1) is fixed with a sediment tank (11), the inside of the sediment tank (11) is fixed with a support column (12), the upper end of the support column (12) is installed with a rotating frame (13) through a bearing, the lower end of the rotating frame (13) is fixed with a disc (131), there are six groups of contact seats (1311) annularly arranged on the disc (131), the lower end of each of the six groups of contact seats (1311) is provided with a ball, the upper end of the support column (12) is installed with a cylinder seat (121) through bolts, the balls at the lower end of the six groups of contact seats (1311) are in rolling contact with the upper end of the cylinder seat (121), the lower end of the rotating frame (13) is fixed with a chassis (16), the lower end of the chassis (16) is welded with a mounting frame (161), the lower end of the mounting frame (161) is fixed with a bottom scraper (162), the lower end of the bottom scraper (162) is in contact with the bottom surface of the inside of the ecological pool main body (1), two groups of supporting arms (163) are welded on the chassis (16), side wall cleaning components (17) are fixed on the two groups of supporting arms (163), the side wall cleaning components (17) include fixed plates (171), rotating columns (172) and side wall scrapers (173), the fixed plates (171) are provided in two groups, the two groups of fixed plates (171) are respectively welded on the two groups of supporting arms (163), the rotating columns (172) are installed between the two groups of fixed plates (171) through a bearing, the side wall scrapers (173) are installed on the rotating columns (172) through bolts, and the side wall scrapers (173) are in contact with the side walls of the inside of the ecological pool main body (1).

2. The novel environment-friendly ecological pool according to claim 1, characterized in that, The upper and lower ends of the rotating column (172) are both installed with a connecting arm (1721) through bolts, the two groups of connecting arms (1721) are both provided with a waist-shaped through slot, the two groups of fixed plates (171) are both installed with a rotatable guide rod (1711), the waist-shaped through slots on the two groups of connecting arms (1721) are respectively sleeved on the two groups of guide rods (1711), the two groups of guide rods (1711) are both movably sleeved with springs (1712), the two groups of guide rods (1711) are both screwed with nuts, and the springs (1712) are located between the nuts and the connecting arms (1721).

3. The novel environment-friendly ecological pool according to claim 1, characterized in that, The rotating frame (13) is installed with a roller seat (14) through bolts, the roller seat (14) is installed with two groups of rotating wheels (143) through a bearing, the two groups of rotating wheels (143) are both rolled on the upper end of the ecological pool main body (1), the roller seat (14) is hinged with a hinge seat (141), and the hinge seat (141) is connected with the roller seat (14) through a bolt.

4. The novel environment-friendly ecological pool according to claim 3, characterized in that, Said hinge seat (141) is bolted with a first gearbox (142), the first gearbox (142) is bolted with a first motor (1421), the output shaft of the first gearbox (142) is fixed with a chain wheel, and the rotating shaft of the rotating wheel (143) near the first motor (1421) is fixed with a chain wheel, and the two chain wheels are connected by a chain.

5. The novel environment-friendly ecological pool according to claim 3, characterized in that, Said ecological pool body (1) is provided with a clean water outlet groove (15), the inner wall of the ecological pool body (1) is fixed with a sundry intercepting plate (151), and the inner wall of the ecological pool body (1) is bolted with a retaining ring (152), the upper end of the retaining ring (152) is higher than the upper end of the sundry intercepting plate (151), and the lower end of the retaining ring (152) is located between the upper and lower ends of the sundry intercepting plate (151).

6. The novel environment-friendly ecological pool according to claim 3, characterized in that, Said rotating frame (13) is bolted with a seat plate (2), the seat plate (2) is bolted with two groups of supports (21), the two groups of supports (21) are bolted with a top frame (22), the top frame (22) is bolted with a second gearbox (221), the second gearbox (221) is bolted with a second motor (222), the output shaft of the second gearbox (221) is fixed with two groups of chain wheels, the two groups of supports (21) are both bolted with lifting transmission seats (211), the input shafts of the two groups of lifting transmission seats (211) are both fixed with chain wheels, and the chain wheels on the input shafts of the two groups of lifting transmission seats (211) are connected with the two groups of chain wheels on the output shaft of the second gearbox (221) through chains respectively.

7. The novel environment-friendly ecological pool according to claim 6, characterized in that, Said lifting transmission seats (211) are both movably provided with threaded rods (212), the threaded rods (212) are threadedly matched with worm wheel rings, the worm wheel rings are located in the lifting transmission seats (211), the input shafts of the two groups of lifting transmission seats (211) are both fixed with worms, and the worms are engaged with the worm wheel rings.

8. The novel environment-friendly ecological pool according to claim 7, characterized in that, The lower ends of the threaded rods (212) are both fixed with connecting seats (213), the connecting seats (213) are fixed with two groups of round rods (215), the two groups of supports (21) are both fixed with two groups of linear bearings (214), the round rods (215) are movably arranged in the linear bearings (214), the lower ends of the two groups of connecting seats (213) are bolted with a mounting seat (23), and the mounting seat (23) is bolted with a fishing frame (231).

9. The novel environment-friendly ecological pool according to claim 1, characterized in that, The valve body (111) is bolted on the sedimentation tank (11), the sealing plate (112) slides on the valve body (111), the screw hole is arranged on the sealing plate (112), the screw rod (113) is installed on the valve body (111) through the bearing, the screw rod (113) is screwed with the screw hole on the sealing plate (112), and the mounting plate (114) is fixed on the valve body (111), the No. 3 gearbox (115) is bolted on the mounting plate (114), the output shaft of the No. 3 gearbox (115) is connected with the screw rod (113), and the No. 3 motor (1151) is bolted on the No. 3 gearbox (115).