Bionic domestication breeding pond for mystus guttatus
By designing a combination of a dual-chamber breeding pool and a connecting shallow pool, the damage problem of spotted birds during delivery and fishing is solved, convenient and safe operation is achieved, and the bionic domestication effect of spotted birds is improved.
Patent Information
- Application Number
- CN202510396858.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-01
- Publication Date
- 2025-06-03
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing bionic domestication and breeding pool of spotted birds is prone to external damage to spotted birds during delivery and fishing, and is easily attacked by spotted dorsal fin spines and pectoral fin spines when improperly operated.
A double-chamber raising pool is designed, including two raising chambers and a communication shallow pool. Through the installation of components such as grooves, shallow pool bodies, side plates, communication holes, sealing rings, etc., the spotted birds are temporarily stored in the shallow pool body during delivery and fishing, adapting to the water environment, and controlling the opening and closing of the communication holes through electric push rods to achieve convenient delivery and fishing.
Through this design, the operation is convenient, the damage to the spotted birds and operators is reduced, and the safety of release and fishing is ensured. At the same time, the bionic domestication effect of the spotted birds is improved through the design of the blocking net and habitat block.
Smart Images

Figure CN120077986A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of Mystus guttatus breeding, and specifically to a bionic domestication breeding pond for Mystus guttatus. Background Art
[0002] Mystus guttatus is a fish of the genus Mystus in the family Bagridae, order Siluriformes, class Osteichthyes. Its common names are fish and sesame catfish. The body of Mystus guttatus is elongated, laterally compressed at the posterior part, with a wide and slightly flattened head. The upper jaw protrudes slightly beyond the lower jaw. The body is smooth and scaleless, grayish-brown in color, lighter on the abdomen, with scattered circular black spots of varying sizes on the body sides. There are black dots of varying sizes on the dorsal fin, adipose fin, and caudal fin. However, Mystus guttatus is poisonous, and its venom apparatus is composed of the dorsal fin spines, pectoral fin spines, and venom gland tissue in the outer wrapping membrane. Mystus guttatus prefers to inhabit deep rock caves in natural waters, goes out for foraging mostly at dusk and night, has a wide range of food, and is dominated by benthic crustaceans and various aquatic insects. However, in the current breeding ponds used for the bionic domestication of Mystus guttatus, when releasing and fishing Mystus guttatus, improper operation can cause external injuries to Mystus guttatus, and it is also easily attacked by the dorsal fin spines and pectoral fin spines of Mystus guttatus. Summary of the Invention
[0003] The present invention provides a bionic domestication breeding pond for Mystus guttatus, which can effectively solve the problems mentioned in the above background art that improper operation during the release and fishing of Mystus guttatus can cause external injuries to Mystus guttatus and it is also easily attacked by the dorsal fin spines and pectoral fin spines of Mystus guttatus.
[0004] To achieve the above object, the present invention provides the following technical solution: A bionic domestication breeding pond for Mystus guttatus, including a double-chamber breeding pond. The double-chamber breeding pond has two chambers for breeding Mystus guttatus, and a communicating shallow pond is provided between the two chambers of the double-chamber breeding pond. The communicating shallow pond includes an installation groove, a shallow pond body, side plates, communicating holes, sealing rubber rings, clamping grooves, movable sealing plates, connecting frames, rubber pads, electric push rods, arc-shaped seats, drain holes, a first drain pipe, one-way valves, a main drain pipe, a three-way valve, a second drain pipe, a third drain pipe, and a filter cylinder. An installation groove is reserved between the two chambers of the double-chamber rearing pond. A shallow pond body is installed at the top of the installation groove. Side plates are installed on both sides of the shallow pond body. Communication holes are provided in the middle of the side plates. Sealing rubber rings are installed on the inner sides of the side plates. Clamping grooves are provided at the tops of the side plates. A movable sealing plate is clamped in the clamping grooves. A connecting frame is installed outside the movable sealing plate. A rubber pad is installed on the inner side of the connecting frame. An electric push rod is installed at the bottom end of the shallow pond body. An arc-shaped seat is installed on the inner side of the shallow pond body. Drainage holes are provided at the bottoms of the arc-shaped seat, the bottom of the shallow pond body, and the bottom of the double-chamber rearing pond. A first drain pipe is connected to the bottom of the shallow pond body. A one-way valve is connected to the top of the first drain pipe. The bottom end of the first drain pipe is connected to a main drain pipe. One end of the main drain pipe is connected to a three-way valve. One end of the three-way valve is connected to a second drain pipe. The other end of the three-way valve is connected to a third drain pipe. Filter cylinders are connected to one ends of the second drain pipe and the third drain pipe respectively; According to the above technical solution, the clamping groove communicates with the communication hole, and the top of the connecting frame is connected to the movable sealing plate; According to the above technical solution, the bottom of the connecting frame is connected to the power output end of the electric push rod, and the rubber pad is installed at the connection position between the connecting frame and the electric push rod; The input end of the electric push rod is electrically connected to the output end of an external power source.
[0005] According to the above technical solution, the top end of the first drain pipe is embedded in the drainage holes at the bottom of the arc-shaped seat and the bottom of the shallow pond body, and one ends of the second drain pipe and the third drain pipe are respectively embedded in the drainage holes at the bottom of the double-chamber rearing pond.
[0006] According to the above technical solution, a dual-purpose blocking member is installed on the top of the double-chamber rearing pond; The dual-purpose blocking member includes a fixing plate, mounting ear plates, rotating support rods, clamping holes, pressing rods, clamping rods, fixing nuts, connecting long rods, driving wheels, driven wheels, driving motors, driving wheels, transmission belts, clamping frames, side fixing rods, clamping grooves, blocking nets, embedding grooves, and motor seats; A fixing plate is installed at the top of the double-chamber breeding pond. An installation ear plate is installed in the middle of the fixing plate. A rotating support rod is rotatably connected to the inner side of the installation ear plate. Clamping holes are provided at the top and middle of the rotating support rod. A pressing rod is clamped on one side of the rotating support rod. Clamping rods are installed at the top and bottom of the pressing rod. Fixing nuts are screwed on the outside of the clamping rods. A connecting long rod is connected to the middle of the clamping rod. A transmission wheel is installed at the end of the connecting long rod located at the front end of the double-chamber breeding pond. Driven wheels are installed at the ends of the remaining connecting long rods. A motor base is installed at the top of the double-chamber breeding pond. A driving motor is installed on the top of the motor base. The power output end of the driving motor is connected to a driving wheel. A transmission belt is sleeved between the driving wheel and the transmission wheel. An embedding groove is provided at the top end of the double-chamber breeding pond. A clamping frame is clamped inside the embedding groove. A side fixing rod is installed at the top of the clamping frame. A clamping groove is provided at the bottom of the side fixing rod. A blocking net is clamped inside the clamping groove.
[0007] According to the above technical solution, the clamping rod is clamped with the clamping hole, and the connecting long rod passes through the middle of the installation ear plate for connection.
[0008] According to the above technical solution, the bottom of the blocking net is embedded and clamped inside the embedding groove; The blocking net is clamped between the rotating support rod and the pressing rod.
[0009] According to the above technical solution, the input end of the driving motor is electrically connected to the output end of an external power supply; Teeth are provided on the outside of the driving wheel and the inside of the driven wheel, and the outside of the driving wheel is meshed and connected with the driven wheel.
[0010] According to the above technical solution, a water inlet and inhabiting member is installed inside the double-chamber breeding pond; The water inlet and inhabiting member includes a water inlet pipe, a delivery pipe, a spreading pipe, a filter net, an inhabiting block, an installation bending hole, an inhabiting groove and a visual hole; The water inlet pipe is embedded at the top of the double-chamber breeding pond. The delivery pipe is connected to the bottom of the water inlet pipe. Spreading pipes are installed at both ends of the delivery pipe. A filter net is installed at one end of the spreading pipe. Inhabiting blocks are installed at the bottom corners of the double-chamber breeding pond. An installation bending hole is installed at the bottom of the inhabiting block. A number of inhabiting grooves are provided in the middle of the inhabiting block. A visual hole is provided at the top of the inhabiting block.
[0011] According to the above technical solution, both ends of the delivery pipe are bent, and both ends of the delivery pipe are clamped inside the installation bending hole.
[0012] Compared with the prior art, the beneficial effects of the present invention: 1. By setting up an installation groove, a shallow pool body, side plates, communication holes, sealing rubber rings, clamping grooves, movable sealing plates, connecting frames, rubber pads, electric push rods and arc seats, when releasing the spotted maigre, the spotted maigre is temporarily stored in the shallow pool body to adapt to the water environment for a period of time, and then the communication holes are opened to release the spotted maigre into the double-chamber rearing pond. When fishing for the spotted maigre, the spotted maigre is temporarily stored in the shallow pool body and then fished from the shallow pool body. This is not only convenient to operate, but also not easy to damage the spotted maigre, and the operator is not easily injured by the spotted maigre, which is more convenient and safe.
[0013] By setting up a fixed plate, a rotating support rod, a pressing rod, a connecting long rod, a driving wheel, a driven wheel, a driving motor, a driving pulley, a transmission belt, a clamping frame, a side fixing rod and a blocking net, during normal use, the blocking net can block the top to prevent the spotted maigre from swimming out of the double-chamber rearing pond. When sunshade is needed, the rotating support rod is driven to rotate, driving the blocking net to move towards the middle of the double-chamber rearing pond to shade the water surface, making the blocking net more efficient in use.
[0014] By setting up a water inlet pipe, a conveying pipe, a spreading pipe, a filter screen, a habitat block, an installation bending hole, a habitat groove and a visible hole, the conveying pipe is embedded in the habitat block for use, saving space. Moreover, the habitat block and the habitat groove can simulate a rock cave to provide a habitat position for the spotted maigre, making the bionic domestication effect of the spotted maigre better.
[0015] In summary, by setting up a shallow pool body in the middle of the double-chamber rearing pond, the spotted maigre can be stored, which is convenient for temporary storage during release and fishing, can help the spotted maigre adapt to the environment in the double-chamber rearing pond, and is also convenient for fishing for the spotted maigre. The operation is convenient, reducing damage to the spotted maigre and the operator. And by setting up the blocking net, it can not only prevent the spotted maigre from swimming out, but also rotate to cover the top of the double-chamber rearing pond for sunshade, with high use efficiency. The habitat block and the habitat groove act as rock caves to provide a habitat for the spotted maigre. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] The drawings are used to provide a further understanding of the present invention and form a part of the specification. They are used together with the embodiments of the present invention to explain the present invention and do not constitute a limitation to the present invention.
[0017] In the drawings: Figure 1 is a schematic structural diagram of the present invention; Figure 2 is a schematic structural diagram of the movable sealing plate of the present invention; Figure 3 is a schematic structural diagram of the first drain pipe of the present invention; Figure 4 is a schematic structural diagram of the blocking net of the present invention; Figure 5 is the present invention Figure 4 an enlarged structural schematic diagram of area A in; Figure 6 It is a schematic structural view of the rotating support rod of the present invention; Figure 7 It is a schematic structural view of the clamping frame of the present invention; Figure 8 It is a schematic structural view of the conveying pipe of the present invention; Figure 9 It is a schematic structural view of the perching block of the present invention; Reference numerals in the figure: 1. Double-chamber breeding pond; 2. Connecting shallow pond; 201. Installation groove; 202. Shallow pond body; 203. Side plate; 204. Connecting hole; 205. Sealing rubber ring; 206. Clamping groove; 207. Movable sealing plate; 208. Connecting frame; 209. Rubber pad; 210. Electric push rod; 211. Arc seat; 212. Drain hole; 213. First drain pipe; 214. Check valve; 215. Main drain pipe; 216. Three-way valve; 217. Second drain pipe; 218. Third drain pipe; 219. Filter cylinder; 3. Dual-purpose blocking member; 301. Fixed plate; 302. Installation ear plate; 303. Rotating support rod; 304. Clamping hole; 305. Pressure rod; 306. Clamping rod; 307. Fixed nut; 308. Connecting long rod; 309. Driving wheel; 310. Driven wheel; 311. Driving motor; 312. Driving wheel; 313. Transmission belt; 314. Clamping frame; 315. Side fixing rod; 316. Clamping groove; 317. Blocking net; 318. Embedding groove; 319. Motor base; 4. Water inlet perching member; 401. Water inlet pipe; 402. Conveying pipe; 403. Expanding pipe; 404. Filter net; 405. Perching block; 406. Installation bending hole; 407. Perching groove; 408. Visual hole. Detailed implementation manners
[0018] The following is a description of the preferred embodiments of the present invention with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are only for the purpose of illustrating and explaining the present invention, and are not used to limit the present invention.
[0019] Embodiment: As Figures 1 - 3 shown, the present invention provides a technical solution, a bionic domestication breeding pond for Mystus guttatus, including a double-chamber breeding pond 1, the double-chamber breeding pond 1 has two chambers for breeding Mystus guttatus, and a connecting shallow pond 2 is arranged between the two chambers of the double-chamber breeding pond 1; The connected shallow pool 2 includes an installation groove 201, a shallow pool body 202, side plates 203, a communication hole 204, a sealing rubber ring 205, a clamping groove 206, a movable sealing plate 207, a connecting frame 208, a rubber pad 209, an electric push rod 210, an arc-shaped seat 211, a drain hole 212, a first drain pipe 213, a check valve 214, a main drain pipe 215, a three-way valve 216, a second drain pipe 217, a third drain pipe 218, and a filter cartridge 219; An installation groove 201 is reserved between the two chambers of the double-chamber breeding pool 1. The top of the installation groove 201 is provided with a shallow pool body 202. Side plates 203 are installed on both sides of the shallow pool body 202. A communication hole 204 is opened in the middle of the side plates 203. A sealing rubber ring 205 is installed on the inner side of the side plates 203. A clamping groove 206 is opened at the top of the side plates 203. The clamping groove 206 is clamped with a movable sealing plate 207. A connecting frame 208 is installed outside the movable sealing plate 207. The clamping groove 206 communicates with the communication hole 204 to facilitate sealing the communication hole 204. The top of the connecting frame 208 is connected to the movable sealing plate 207 to facilitate driving the movable sealing plate 207 to move. A rubber pad 209 is installed inside the connecting frame 208. An electric push rod 210 is installed at the bottom end of the shallow pool body 202. The bottom of the connecting frame 208 is connected to the power output end of the electric push rod 210. The rubber pad 209 is installed at the connection position between the connecting frame 208 and the electric push rod 210 to facilitate driving the connecting frame 208 to move. The input end of the electric push rod 210 is electrically connected to the output end of an external power source. An arc-shaped seat 211 is installed inside the shallow pool body 202. Drain holes 212 are opened at the bottom of the arc-shaped seat 211, the bottom of the shallow pool body 202, and the bottom of the double-chamber breeding pool 1. The bottom of the shallow pool body 202 is connected to a first drain pipe 213. A check valve 214 is connected to the top of the first drain pipe 213. The bottom end of the first drain pipe 213 is connected to a main drain pipe 215. One end of the main drain pipe 215 is connected to a three-way valve 216. One end of the three-way valve 216 is connected to a second drain pipe 217. The other end of the three-way valve 216 is connected to a third drain pipe 218. The top end of the first drain pipe 213 is embedded in the drain holes 212 at the bottom of the arc-shaped seat 211 and the bottom of the shallow pool body 202. One end of the second drain pipe 217 and one end of the third drain pipe 218 are respectively embedded in the drain holes 212 at the bottom of the double-chamber breeding pool 1 to facilitate draining water in the breeding pool. Filter cartridges 219 are connected to one ends of the second drain pipe 217 and the third drain pipe 218; As Figures 4 - 7 shown, a dual-purpose blocking member 3 is installed on the top of the double-chamber breeding pool 1; The dual-purpose stopper 3 includes a fixing plate 301, a mounting ear plate 302, a rotating support rod 303, a clamping hole 304, a pressure rod 305, a clamping rod 306, a fixing nut 307, a connecting rod 308, a transmission wheel 309, a driven wheel 310, a driving motor 311, a driving wheel 312, a driving belt 313, a clamping frame 314, a side fixing rod 315, a clamping groove 316, a blocking net 317, an embedding groove 318 and a motor seat 319; A fixing plate 301 is installed on the top of the double-chamber culture pool 1, and a mounting ear plate 302 is installed in the middle of the fixing plate 301. The inner side of the mounting ear plate 302 is rotatably connected to a rotating support rod 303. The top and middle of the rotating support rod 303 are provided with a clamping hole 304. A pressure rod 305 is clamped on one side of the rotating support rod 303. A clamping rod 306 is installed on the top and bottom of the pressure rod 305. The clamping rod 306 is clamped with the clamping hole 304, which is convenient for fixing the blocking net 317. A fixing nut 307 is screwed on the outside of the clamping rod 306, a connecting long rod 308 is connected to the middle of the clamping rod 306, and the connecting long rod 308 passes through the middle of the mounting ear plate 302 for connection, which is convenient for connecting the connecting long rod 308. A transmission wheel 309 is installed at the end of the connecting long rod 308 at the front end of the double-chamber culture tank 1, and a driven wheel 310 is installed at the remaining end of the connecting long rod 308. A motor seat 319 is installed on the top of the double-chamber culture tank 1. A driving motor 311 is installed, the input end of the driving motor 311 is electrically connected to the output end of the external power supply, the power output end of the driving motor 311 is connected to a driving wheel 312, the outer side of the driving wheel 312 and the inner side of the driven wheel 310 are provided with gear teeth, the outer side of the driving wheel 312 and the driven wheel 310 are meshed and connected, so as to drive the driven wheel 310 to rotate and rotate the rotating support rod 303, and a transmission belt 313 is sleeved between the driving wheel 312 and the transmission wheel 309, An embedding groove 318 is provided at the top of the double-chamber culture pool 1, and a snap-on frame 314 is clamped inside the embedding groove 318. A side fixing rod 315 is installed on the top of the snap-on frame 314. A clamping groove 316 is provided at the bottom of the side fixing rod 315. A blocking net 317 is clamped inside the clamping groove 316. The bottom of the blocking net 317 is embedded and clamped inside the embedding groove 318. The blocking net 317 is clamped between the rotating support rod 303 and the pressure rod 305 to facilitate the fixation of the blocking net 317.
[0020] like Figures 8 - 9 As shown, a water inlet habitat 4 is installed inside the double-chamber breeding pool 1; The water inlet habitat 4 includes a water inlet pipe 401, a delivery pipe 402, a support pipe 403, a filter screen 404, a habitat block 405, a mounting bent hole 406, a habitat groove 407 and a viewing hole 408; A water inlet pipe 401 is embedded at the top of the double-chamber breeding pond 1. The water inlet pipe 401 is connected to the output end of an external water source. A delivery pipe 402 is connected to the bottom of the water inlet pipe 401. Expanding pipes 403 are installed at both ends of the delivery pipe 402. A filter screen 404 is installed at one end of the expanding pipe 403. Habitat blocks 405 are installed at the bottom corners of the double-chamber breeding pond 1. An installation bending hole 406 is installed at the bottom of the habitat block 405. Both ends of the delivery pipe 402 are bent. Both ends of the delivery pipe 402 are clamped inside the installation bending hole 406 to reduce the space occupied by the delivery pipe 402. A number of habitat grooves 407 are provided in the middle of the habitat block 405, and a viewing hole 408 is provided at the top of the habitat block 405.
[0021] The working principle and usage process of the present invention: When carrying out the bionic domestication and breeding of Mystus guttatus, first add water to the double-chamber breeding pond 1 through the water inlet pipe 401. The water enters the delivery pipe 402 through the water inlet pipe 401 and finally is discharged from the filter screen 404 through the expanding pipe 403 into the double-chamber breeding pond 1. The water continuously increases until the water level reaches the position of the communication hole 204. The electric push rod 210 drives the connecting frame 208 to move upward, so that the movable sealing plate 207 moves upward, thereby opening the communication hole 204. The water in the double-chamber breeding pond 1 flows into the shallow pool body 202. After accumulating a certain amount of water, the electric push rod 210 is driven to drive the connecting frame 208 to move downward, so that the movable sealing plate 207 moves downward to seal the communication hole 204. At this time, the Mystus guttatus to be put in is first placed in the shallow pool body 202, adapts to the water environment and is bred for a period of time, and then the movable sealing plate 207 is pushed upward to open the communication hole 204, so that the Mystus guttatus swims from the position of the communication hole 204 into the double-chamber breeding pond 1 for breeding; When fishing Mystus guttatus from the double-chamber breeding pond 1, first push the movable sealing plate 207 upward to open the communication hole 204, so that the water flows into the shallow pool body 202. Then drive the Mystus guttatus to be fished to the position of the communication hole 204, so that it swims through and into the shallow pool body 202. Then move the movable sealing plate 207 downward to close the communication hole 204. Finally, fish the Mystus guttatus from the inside of the shallow pool body 202. The operation is more convenient, the damage to the Mystus guttatus is smaller, and the Mystus guttatus is not likely to harm the fishing personnel; First, the blocking net 317 is clamped inside the side fixing rod 315 from the bottom, then the bottom of the clamping frame 314 and the blocking net 317 are both clamped in the embedding groove 318 for fixation. Then the clamping rod 306 of the pressing rod 305 passes through the clamping hole 304 to clamp the blocking net 317. Finally, the fixing nut 307 is screwed on. When there is more rainfall, the accumulated water in the double-chamber breeding pond 1 overflows the top edge, and the blocking net 317 is used for protection, and the Mystus guttatus is not likely to swim out; When the light is strong, the driving motor 311 drives the driving wheel 312 to rotate, drives the driven wheel 309 to rotate through the transmission belt 313, and the driving wheel 312 drives the driven wheel 310 to rotate, thereby driving the rotating support rod 303 to rotate towards the middle of the double-chamber breeding pond 1, and further driving the blocking net 317 to rotate and cover the top of the double-chamber breeding pond 1, partially blocking the light, so as to achieve the shading effect, reduce the light irradiation in the water, create a good water environment for the growth of Mystus guttatus, and make the use effect of the double-chamber breeding pond 1 better; When Mystus guttatus is resting, it can swim to the bottom of the water and enter the resting groove 407 of the resting block 405 to rest. The resting block 405 acts as a bottom rock, and the resting groove 407 provides the favorite rock cave for Mystus guttatus, and the effect of bionic domestication of Mystus guttatus is better.
[0022] Finally, it should be noted that the above are only preferred examples of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.
Claims
1. A bionic domestication and rearing pond for spotted finches, characterized in that: The invention comprises a double-chamber rearing pool (1), wherein the double-chamber rearing pool (1) has two chambers for rearing spotted finches, and a connecting shallow pool (2) is arranged between the two chambers of the double-chamber rearing pool (1); The connecting shallow pool (2) comprises a mounting groove (201), a shallow pool body (202), a side plate (203), a connecting hole (204), a sealing rubber ring (205), a clamping groove (206), a movable sealing plate (207), a connecting frame (208), a rubber pad (209), an electric push rod (210), an arc seat (211), a drainage hole (212), a first drainage pipe (213), a one-way valve (214), a main drainage pipe (215), a three-way valve (216), a second drainage pipe (217), a third drainage pipe (218) and a filter cartridge (219); An installation groove (201) is reserved between the two chambers of the double-chamber culture tank (1); a shallow tank body (202) is installed on the top of the installation groove (201); side panels (203) are installed on both sides of the shallow tank body (202); a connecting hole (204) is provided in the middle of the side panel (203); a sealing rubber ring (205) is installed on the inner side of the side panel (203); a clamping groove (206) is provided on the top of the side panel (203); a movable sealing plate (207) is clamped in the clamping groove (206); a connecting frame (208) is installed on the outside of the movable sealing plate (207); a rubber pad (209) is installed on the inner side of the connecting frame (208); an electric push rod (210) is installed on the bottom end of the shallow tank body (202); and the shallow tank body (202) is provided with a connecting hole (204). ) is installed on the inner side of the arc seat (211); the bottom of the arc seat (211), the bottom of the shallow pool body (202) and the bottom of the double-chamber culture pool (1) are all provided with drainage holes (212); the bottom of the shallow pool body (202) is connected to a first drainage pipe (213); the top of the first drainage pipe (213) is connected to a one-way valve (214); the bottom of the first drainage pipe (213) is connected to a main drainage pipe (215); one end of the main drainage pipe (215) is connected to a three-way valve (216); one end of the three-way valve (216) is connected to a second drainage pipe (217); the other end of the three-way valve (216) is connected to a third drainage pipe (218); one end of each of the second drainage pipe (217) and the third drainage pipe (218) is connected to a filter cartridge (219).
2. A bionic acclimation and rearing pond for spotted finches according to claim 1, characterized in that: The clamping groove (206) is connected to the communication hole (204), and the top of the connection frame (208) is connected to the movable sealing plate (207).
3. The bionic acclimation and rearing pond for spotted finches according to claim 1, characterized in that: The bottom of the connection frame (208) is connected to the power output end of the electric push rod (210), and the rubber pad (209) is installed at the connection position between the connection frame (208) and the electric push rod (210); The input end of the electric push rod (210) is electrically connected to the output end of the external power supply.
4. The bionic acclimation and rearing pond for spotted finches according to claim 1, characterized in that: The top end of the first drainage pipe (213) is embedded in the drainage hole (212) at the bottom of the arc-shaped seat (211) and the bottom of the shallow pool body (202), and one end of the second drainage pipe (217) and one end of the third drainage pipe (218) are respectively embedded in the drainage hole (212) at the bottom of the double-chamber culture pool (1).
5. The bionic acclimation and rearing pond for spotted finches according to claim 1, characterized in that: A dual-purpose baffle (3) is installed on the top of the double-chamber culture tank (1); The dual-purpose blocking member (3) comprises a fixing plate (301), a mounting ear plate (302), a rotating support rod (303), a snap-fit hole (304), a pressure rod (305), a snap-fit rod (306), a fixing nut (307), a connecting long rod (308), a transmission wheel (309), a driven wheel (310), a driving motor (311), a driving wheel (312), a driving belt (313), a snap-fit frame (314), a side fixing rod (315), a clamping groove (316), a blocking net (317), an embedding groove (318) and a motor seat (319); The top of the double-chamber culture tank (1) is provided with a fixing plate (301), the middle of the fixing plate (301) is provided with a mounting ear plate (302), the inner side of the mounting ear plate (302) is rotatably connected to a rotating support rod (303), the top and the middle of the rotating support rod (303) are provided with clamping holes (304), one side of the rotating support rod (303) is clamped with a pressure rod (305), the top and the bottom of the pressure rod (305) are provided with a clamping rod (306), the outside of the clamping rod (306) is screwed with a fixing nut (307), the middle of the clamping rod (306) is connected to a connecting rod (308), the end of the connecting rod (308) located at the front end of the double-chamber culture tank (1) is provided with a transmission wheel (309), and the remaining connecting rods (308) are connected to the connecting rod (308). A driven wheel (310) is mounted on the end of the extension rod (308); a motor seat (319) is mounted on the top of the double-chamber culture tank (1); a driving motor (311) is mounted on the top of the motor seat (319); a driving wheel (312) is connected to the power output end of the driving motor (311); a driving belt (313) is sleeved between the driving wheel (312) and the transmission wheel (309); an embedding groove (318) is provided on the top of the double-chamber culture tank (1); a clamping frame (314) is clamped inside the embedding groove (318); a side fixing rod (315) is mounted on the top of the clamping frame (314); a clamping groove (316) is provided on the bottom of the side fixing rod (315); a blocking net (317) is clamped inside the clamping groove (316).
6. The bionic acclimation and rearing pond for spotted finches according to claim 5, characterized in that: The clamping rod (306) is clamped with the clamping hole (304), and the long connecting rod (308) passes through the middle of the mounting ear plate (302) for connection.
7. The bionic acclimation and rearing pond for spotted finches according to claim 5, characterized in that: The bottom of the blocking net (317) is embedded and clamped inside the embedding groove (318); The blocking net (317) is clamped between the rotating support rod (303) and the pressure rod (305).
8. The bionic acclimation and rearing pond for spotted finches according to claim 5, characterized in that: The input end of the driving motor (311) is electrically connected to the output end of the external power supply; The outer side of the driving wheel (312) and the inner side of the driven wheel (310) are both provided with gear teeth, and the outer side of the driving wheel (312) and the driven wheel (310) are meshingly connected.
9. The bionic acclimation and rearing pond for spotted finches according to claim 1, characterized in that: A water inlet habitat (4) is installed inside the double-chamber breeding pond (1); The water inlet habitat (4) comprises a water inlet pipe (401), a delivery pipe (402), a support pipe (403), a filter screen (404), a habitat block (405), a mounting bent hole (406), a habitat groove (407) and a viewing hole (408); A water inlet pipe (401) is embedded in the top of the double-chamber culture pool (1); a delivery pipe (402) is connected to the bottom of the water inlet pipe (401); both ends of the delivery pipe (402) are installed with expansion pipes (403); one end of the expansion pipe (403) is installed with a filter screen (404); habitat blocks (405) are installed at the bottom corners of the double-chamber culture pool (1); installation bent holes (406) are installed at the bottom of the habitat blocks (405); a plurality of habitat grooves (407) are opened in the middle of the habitat blocks (405); and a visual hole (408) is opened at the top of the habitat blocks (405).
10. The bionic acclimation and rearing pond for spotted finches according to claim 9, characterized in that: Both ends of the delivery pipe (402) are bent, and both ends of the delivery pipe (402) are clamped inside the installation bent hole (406).