A method for pre-releasing brown scorpionfish to reintroduce it to the wild

By setting up rewilding equipment in the fish breeding station and using wave-making and jet components to simulate the natural water environment, the rewilding problem before fish release was solved, the rewilding effect and water flow rate were improved, fish casualties were avoided, and the adaptability of fish was enhanced.

CN115669578BActive Publication Date: 2025-10-10MARINE FISHERIES RES INST OF ZHEJIANG
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Patent Information

Application Number
CN202211403000.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-11-10
Publication Date
2025-10-10
Estimated Expiration
2042-11-10

AI Technical Summary

Technical Problem

The existing fish breeding stations lack rewilding training pools, which makes the transitional cultivation of released seedlings difficult to manage, and the water wave simulation effect is poor, affecting the rewilding effect.

Method used

A rewilding device is used, including a pool body, wave-making components, auxiliary components and jet components. Water flow is generated through a driver to simulate vortices and waves in natural waters, increase water flow rate, avoid the formation of stagnant water, drive away fish, and enhance the rewilding effect.

Benefits of technology

It achieved good rewilding effects, increased water flow rate, avoided fish casualties, enhanced fish adaptability, simulated the natural water environment, and increased the success rate of fish rewilding.

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Abstract

The application discloses a pre-release brown rockfish wilding method and belongs to the technical field of wilding target biological wilding, in particular to the wilding of wilding target organisms in a wilding device, wherein the wilding device comprises a pool body, a mounting assembly arranged on a corner of the pool body, a wave-making assembly mounted on the mounting assembly, an auxiliary assembly arranged on a corner opposite to the mounting assembly of the pool body, jetting assemblies arranged on two sides of the auxiliary assembly, and a collecting body arranged at the center of the pool body; the wave-making assembly generates water flow to drive the wilding target organisms to swim around the collecting body, and the wilding target organisms are wilded. The pre-release brown rockfish wilding method has the advantages of good wilding effect, good wave-making effect, improved water flow speed, avoided formation of dead water, good decontamination effect, sound noise driven wilding target organisms, avoided biological casualties, formed water flow interference, simulated natural water area vortex, and realized gas and water body mixing.
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Description

Technical Field

[0001] The invention belongs to the technical field of rewilding target organisms, and particularly relates to a rewilding method for pre-releasing brown scorpionfish. Background Art

[0002] Existing fish breeding stations are mostly composed of reservoirs, parent fish rearing ponds, spawning ponds, fish seed rearing ponds, seedling rearing ponds, live bait rearing ponds, hatching equipment, quarantine and isolation ponds, rewilding training ponds, sewage treatment equipment, etc. Due to the limitations of site and drainage equipment, most fish breeding and release stations do not have rewilding training ponds. They are only placed in large water bodies, reservoir bays or slow-flowing river banks for over-cultivation before release. This method is time-consuming and labor-intensive, and because it is far away from the breeding and release station, the transitional cultivation of released seedlings is difficult to manage. In order to achieve good rewilding training, it is necessary to better simulate the natural water flow, and the focus is on the creation of water waves. In US15958683, a device and method for wave generation in a pool are disclosed. The wave maker is supported on the pool by mounting brackets and hanging brackets to create stable and controllable water waves.

[0003] The present invention aims to provide a method suitable for pre-releasing and rewilding target organisms, in particular for pre-releasing and rewilding brown scorpionfish. Summary of the Invention

[0004] The purpose of the present invention is to provide a rewilding method for brown scorpionfish, which has good rewilding effect, good wave-making effect, increases water flow rate, avoids the formation of stagnant water, has good pollution removal effect, drives away rewilding target organisms with noise, avoids biological casualties, can form water flow interference, can simulate natural water vortexes, and can achieve mixing of gas and water.

[0005] The technical solutions adopted by the present invention to achieve the above-mentioned purpose are:

[0006] A method for rewilding pre-released aquatic products includes: placing rewilding target organisms into a rewilding device for rewilding, the rewilding device including: a pool body 1; a mounting assembly 6 disposed at a corner of the pool body 1; a wave-making assembly 2 mounted on the mounting assembly 6; an auxiliary assembly 3 disposed at a corner of the pool body 1 opposite the mounting assembly 6; spray assemblies 4 disposed on both sides of the auxiliary assembly 3; and a collector 5 disposed at the center of the pool body 1; the wave-making assembly 2 generates water flow to drive the rewilding target organisms to swim around the collector 5, thereby rewilding the target organisms.

[0007] A first liquid inlet mesh port 24 is provided at the bottom of the wave-making component 2, second liquid inlet mesh ports 23 are provided on both sides of the wave-making component 2, a second guide plate group 25 is provided at the front of the wave-making component 2, a driver 22 and a first guide plate group 26 are provided inside the wave-making component 2, and the first guide plate group 26 is provided between the driver 22 and the second guide plate group 25;

[0008] A first guide plate body 261 is provided in the first guide plate group 26, and the first guide plate body 261 is curved;

[0009] The second deflector assembly 25 includes a second deflector body 251, with a swing connector 252 positioned non-centrally on the second deflector body 251. The first deflector assembly 26 comprises a first rectangular frame, with first deflector bodies 261 fixedly connected to the frame. The first deflector bodies 261 are arranged in an array. The second deflector assembly 25 includes a second rectangular frame with grooves formed therein. The swing connector 252 on the second deflector body 251 forms a rotational connection with the grooves on the second rectangular frame. The second deflector bodies 251 are arranged in an array. The present invention installs the wave-making component on the pool body through an installation component. The driver inside the wave-making component can drive the water flow. After the fan blades in the driver rotate, the external water body is introduced into the shell from the bottom and both sides of the shell and flows in the direction of the first guide plate group and the second guide plate group. The first guide plate body on the first guide plate group is curved. After the water flow moves from the direction of the driver, it forms a curved flow through the first guide plate. The second guide plate body on the second guide plate group can swing. A swing connecting piece is provided on the second guide plate body. The second guide plate body can swing up and down. The water flow passing through the first guide plate group can be discharged to form a wave shape that floats up and down after passing through the second guide plate group again, thereby forming waves, which is helpful to The sediment at the bottom of the pool body is driven to suspend up and down, which can also stimulate fish to swim and simulate the water quality in the natural environment. The collecting matrix is ​​located inside the pool body. The particulate matter in the water in the pool body and the sediment at the bottom can enter the collecting body through the through hole, thereby being removed. The use of the above-mentioned components of the present invention can also increase the probability of the sediment at the bottom of the pool body being collected into the collecting matrix in the middle; the collecting matrix in the present invention can form a runway state with the pool body, and under the action of the wave-making component, a water flow circulation is formed inside the first pool body to avoid the formation of "stagnant water" in the water body, and wave-making noise can also be generated to drive the wild target organisms close to the wave-making machine to avoid casualties of the wild target organisms. The wild target organisms are wilded in the above-mentioned way. The present invention arranges auxiliary components and injection components at the corners inside the pool body. These two components are used to accelerate the water flow. Because the water flow consumes a lot of energy after starting from the wave-making component side to the position of the auxiliary component, it will cause the water flow rate to decrease. The wild target organisms may stay and live in this place. By increasing the water flow rate through the auxiliary components and the injection components, the wild target organisms can be avoided from living there and the wilding effect of the wild target organisms can be improved.

[0010] Preferably, the collecting body 5 is an annular cylindrical structure, a first through hole group 51 and a second through hole group 52 are provided on the side of the collecting body 5, and a sewage pipe 53 is provided at the bottom of the collecting body 5;

[0011] The first through hole group 51 and the second through hole group 52 are both composed of two upper and lower rows of through holes.

[0012] Preferably, the first and second mesh plates 55 and 54 are arranged inside the collection body 5, the first mesh plate 55 is arranged between the second through-hole groups 52, and the second mesh plate 54 is arranged between the first through-hole groups 51.

[0013] Preferably, the installation assembly 6 comprises an installation clamping plate 61 hung on the pool body 1, a support rod 63 is connected to the installation clamping plate 61 through a side of the installation clamping plate 61, and an installation baffle 64 is connected to the support rod 63. The upper part of the installation clamping plate 61 is concave, the lower part is a column arranged on both sides, the column is provided with a through groove, the support rod 63 is in the shape of an H, one side of the support rod 63 is rotatably connected to the installation baffle 64, so that the installation baffle 64 can better fit the pool body and adjust the angle according to the structure of the pool body, the other side of the support rod 63 is connected to the through groove of the column of the installation clamping plate 61, and can move up and down along the through groove, so that the support rod and the auxiliary support rod form triangular support structures of different sizes, the middle part of the support rod is rotatably connected to the bottom of the column of the installation clamping plate 61 through the auxiliary support rod, the column of the installation clamping plate 61 is provided with a hollow groove for accommodating the auxiliary support rod, and the space on the column or the middle part of the installation clamping plate 61 can be used to install a fixed component for installing the wave-making assembly, so that the wave-making assembly is connected to the installation assembly.

[0014] Preferably, the drive 22 comprises a drive rotating sleeve 225 in the shape of a cylinder, a drive fan blade 224 rotatably connected to the inside of the drive rotating sleeve 225, the drive fan blade 224 being symmetrically arranged, the outside of the drive fan blade 224 being provided with a toothed structure, the drive rotating sleeve 225 being provided with an opening at the rotatable connection position of the drive fan blade 224, the outside of the drive rotating sleeve 225 being provided with a drive motor 221, a drive gear 222, and a drive rotating shaft 223, the drive rotating shaft 223 being meshed with the outside toothed structure of the drive fan blade 224.

[0015] Preferably, the auxiliary assembly 3 is provided with a connecting plate 31, the connecting plate 31 is connected to a sliding rod 36, the sliding rod 36 is connected to a connecting rod 32, the end of the connecting rod 32 is provided with a fan blade 33, the connecting rod 32 is provided with a protective baffle 34, and the protective baffle 34 is provided with a spherical mesh cover 35 on both sides. After the auxiliary assembly is arranged on the pool body, the protective baffle on the connecting rod can rotate relative to the connecting rod under the water flow impact state, and the connecting rod can also rotate relative to the sliding rod, the rotation or rotation is connected through a bearing, and the fan blade on the connecting rod can also rotate. Therefore, when the side spray assembly sprays water flow / gas, the fan blade of the auxiliary assembly can rotate to form water flow disturbance, simulate vortex and other conditions in natural water areas, and avoid that the water in the first pool body is too stable.

[0016] Preferably, the spray assembly 4 includes a spray housing 48, which is a cylindrical structure. One side of the spray housing 48 is divided by a partition plate 42. The center of the partition plate 42 is connected to a connecting ball head 41 through a first liquid inlet pipe 43. The connecting ball head 41 is connected to the external pump body. The other side of the spray housing 48 is provided with a rotating body 44, a connecting steel rod 46 and a guide body 45. The guide body 45 is connected to the spray housing 48 through the connecting steel rod 46. The guide body 45 is connected to the rotating body 44. An auxiliary inlet slot 47 is provided on the inner wall of the spray housing 48 between the partition plate 42 and the rotating body 44. After the spray assembly is set on the pool body of the present invention, the spray assembly can spray air or water. The sprayed air or water enters the first liquid inlet pipe from the connecting ball head and is discharged after the rotation of the connecting ball head. Since there is water flowing inside the pool body under the action of the wave-making assembly, these water flows can drive the spray assembly to turn in the direction of the water flow. The spray assembly then replenishes gas or water, thereby improving the rewilding effect of the target organisms. The present invention can increase the water flow rate by setting auxiliary components and injection components, and can add gas or water to the pool body, and can form vortexes to simulate the water flow state in natural waters, which can interfere with the aggregation or residence of wild target organisms in local areas of the pool body. The combination of the auxiliary components and the injection components can improve the lifting effect of the bottom sediment in the pool body to simulate the bottom state of natural waters and promote the collection of sediments in the collection matrix. When the injection component sprays gas, the auxiliary component can achieve the mixing effect of the auxiliary injected gas and water, and reduce the speed at which the bubbles float upward, thereby improving the wilding effect of the wild target organisms.

[0017] Preferably, the outside of the connecting ball head 41 is a second sphere 414, a second liquid inlet pipe 413 is provided on the second sphere 414, the second sphere 414 is connected to the elastic seal 412, the elastic seal 412 is connected to the first sphere 411 inside the connecting ball head 41, a first liquid inlet pipe 43 is provided on the first sphere, and the first liquid inlet pipe 43 is connected to the partition plate 42.

[0018] Preferably, the target organism for rewilding is brown scorpionfish.

[0019] The present invention places the target organisms for rewilding into a rewilding device for rewilding. The rewilding device includes: a pool body, a mounting assembly provided on the corner of the pool body, a wave-making assembly provided on the mounting assembly, an auxiliary assembly provided on the corner of the pool body opposite to the mounting assembly, a jet assembly provided on both sides of the auxiliary assembly, and a collecting body provided in the center of the pool body; the wave-making assembly creates a water flow to drive the target organisms for rewilding to swim around the collecting body, and rewilds the target organisms. The present invention uses a rewilding device to simulate the surface water flow state and bottom water quality state of natural waters, forming waves and increasing the flow rate of the water body, thereby avoiding the habitat of the target organisms for rewilding and improving the rewilding effect of the target organisms for rewilding. Therefore, the present invention is a pre-release brown scorpionfish rewilding method with good rewilding effect, good wave-making effect, increased water flow rate, avoidance of stagnant water, good decontamination effect, noise expulsion of target organisms for rewilding, avoidance of biological casualties, ability to form water flow interference, ability to simulate vortexes in natural waters, and ability to achieve mixing of gas and water. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 This is a schematic diagram of the rewilding method;

[0021] Figure 2 Schematic diagram of the cross section of the wave-making component;

[0022] Figure 3 This is a schematic diagram of mounting wave-making components on the pool body;

[0023] Figure 4 Schematic diagram of the installation components;

[0024] Figure 5 Schematic diagram of the first guide plate group and the first guide plate body;

[0025] Figure 6 is a schematic diagram of the guide and second guide plate body;

[0026] Figure 7 This is a schematic diagram of the wave-making component;

[0027] Figure 8 is a schematic diagram of auxiliary components;

[0028] Figure 9 Schematic diagram of the driver;

[0029] Figure 10 is a schematic diagram of the injection assembly;

[0030] Figure 11 Schematic diagram of the cross section of the connecting ball head;

[0031] Figure 12 Schematic diagram of the collector;

[0032] Figure 13 Schematic diagram of the collector cross section.

[0033] REFERENCE NUMERALS Figure 1 In the figure, pool body 1, wave making assembly 2, auxiliary assembly 3, jet assembly 4, collecting body 5, mounting assembly 6;

[0034] Figure 2 In the figure, wave making assembly, shell 21, driver 22, second liquid inlet mesh 23, first liquid inlet mesh 24, second guide plate group 25, first guide plate group 26;

[0035] Figure 3 In the figure, pool body 1, wave making assembly 2, mounting assembly 6;

[0036] Figure 4 In the figure, mounting clamping plate 61, adjusting piece 62, support rod 63, mounting baffle 64;

[0037] Figure 5 In the figure, first guide plate group 26, first guide plate body 261;

[0038] Figure 6 In the figure, driver 22, first guide plate group 26, second guide plate body 251, swing connecting piece 252;

[0039] Figure 7 In the figure, shell 21, second liquid inlet mesh 23, second guide plate group 25;

[0040] Figure 8 In the figure, pool body 1, connecting bottom plate 31, connecting rod 32, fan blade 33, protective baffle ring 34, mesh cover 35, sliding rod 36;

[0041] Figure 9 In the figure, drive motor 221, drive gear 222, drive rotating shaft 223, drive fan blade 224, drive rotating sleeve 225;

[0042] Figure 10 In the figure, connecting ball head 41, partition plate 42, first liquid inlet pipe 43, rotating body 44, guide body 45, connecting steel rod 46, auxiliary flow inlet slot hole 47, jet shell 48;

[0043] Figure 11 In the figure, first ball body 411, first liquid inlet pipe 43, elastic sealing piece 412, second liquid inlet pipe 413, second ball body 414;

[0044] Figure 12 In the figure, collecting body 5, first through hole group 51, second through hole group 52, blowdown pipe 53;

[0045] Figure 13 In the figure, collecting body 5, first through hole group 51, second through hole group 52, blowdown pipe 53, second mesh plate 54, first mesh plate 55. DETAILED DESCRIPTION

[0046] The technical solutions of the present application will be further described in detail in combination with the specific embodiments and the drawings:

[0047] Embodiment 1:

[0048] A pre-release brown rockfish wild method,

[0049] The brown rockfish is placed in the wild device for wild, and the wild device comprises a pool body 1, an installation assembly 6 is arranged on the corner of the pool body 1, a wave making assembly 2 is installed on the installation assembly 6, an auxiliary assembly 3 is arranged on the corner of the pool body 1 opposite to the installation assembly 6, spray assemblies 4 are arranged on both sides of the auxiliary assembly 3, and a collection body 5 is arranged at the center of the pool body 1; the wave making assembly 2 generates water flow to drive the brown rockfish to swim around the collection body 5, so that the brown rockfish is wild;

[0050] The bottom of the wave making assembly 2 is provided with a first liquid inlet net 24, the two sides of the wave making assembly 2 are provided with second liquid inlet nets 23, the front of the wave making assembly 2 is provided with a second flow guide plate group 25, the inside of the wave making assembly 2 is provided with a driver 22 and a first flow guide plate group 26, and the first flow guide plate group 26 is arranged between the driver 22 and the second flow guide plate group 25;

[0051] The first flow guide plate group 26 is provided with a first flow guide plate body 261, and the first flow guide plate body 261 is of a curved type;

[0052] The second flow guide plate group 25 is provided with a second flow guide plate body 251, and a swing connecting piece 252 is arranged on a non-central position of the second flow guide plate body 251. The first flow guide plate group 26 has a first rectangular frame, the first flow guide plate body 261 is fixedly connected with the rectangular frame, and the first flow guide plate body 261 is arranged in an array. The second flow guide plate group 25 has a second rectangular frame, a groove is arranged on the second rectangular frame, the swing connecting piece 252 on the second flow guide plate body 251 is rotationally connected with the groove on the second rectangular frame, and the second flow guide plate body 251 is arranged in an array.

[0053] Embodiment 2:

[0054] A pre-release brown rockfish wild method, compared with embodiment 1, the difference lies in that the collection body 5 is a ring-shaped cylindrical structure, a first through hole group 51 and a second through hole group 52 are arranged on the side of the collection body 5, and a sewage pipe 53 is arranged at the bottom of the collection body 5;

[0055] The first through hole group 51 and the second through hole group 52 each comprise two rows of through holes.

[0056] Embodiment 3:

[0057] A method for pre-releasing brown scorpionfish for wilding. Compared with Example 1, this embodiment is different in that a first mesh plate 55 and a second mesh plate 54 are built into the collecting body 5, the first mesh plate 55 is arranged between the second through hole group 52, and the second mesh plate 54 is arranged between the first through hole group 51.

[0058] Example 4:

[0059] A method for pre-releasing brown scorpionfish for wilding. Compared with Example 1, the difference between this embodiment and Example 1 is that the mounting assembly 6 includes a mounting card 61 hung on the pool body 1, and the side of the mounting card 61 is connected to a mounting baffle 64 through a support rod 63, and the mounting baffle 64 is used to connect the wave-making assembly 2. The upper part of the mounting card plate 61 is a concave structure, and the lower part is a column on both sides. The columns are provided with through grooves, and the support rod 63 is an H-shaped rod structure. The connection between one side of the support rod 63 and the mounting baffle 64 is set to a rotatable structure so that the mounting baffle 64 can better fit the pool body and adjust the angle according to the structure of the pool body. The other side of the support rod 63 is connected to the through groove of the column at the lower part of the mounting card plate 61, and can move up and down along the through groove so that the support rod and the auxiliary support rod form a triangular support structure of different sizes. The middle part of the support rod and the bottom of the column of the mounting card plate 61 are rotatably connected through the auxiliary support rod. An empty slot is provided at the column of the mounting card plate 61 to accommodate the auxiliary support rod. The space on or in the middle of the column of the mounting card plate 61 can be used to install fixed components for installing wave-making components to connect the wave-making components to the mounting components.

[0060] Example 5:

[0061] A method for pre-releasing brown scorpionfish into the wild. Compared with Example 1, the difference between this embodiment and Example 1 is that the driver 22 includes a driving sleeve 225, which is a cylindrical structure. The driving sleeve 225 is rotatably connected to the driving blades 224. The driving blades 224 are symmetrically arranged. A tooth structure is arranged on the outside of the driving blades 224. An opening is provided at the rotating connection between the driving sleeve 225 and the driving blades 224. A driving motor 221, a driving gear 222 and a driving shaft 223 are arranged on the outside of the driving sleeve 225. The driving shaft 223 is engaged with the external teeth of the driving blades 224.

[0062] Example 6:

[0063] A method for pre-releasing brown scorpionfish for rewilding. Compared with Example 1, this embodiment differs in that a connecting base plate 31 is provided on the auxiliary component 3, the connecting base plate 31 is connected to a sliding rod 36, the sliding rod 36 is connected to a connecting rod 32, a fan blade 33 is provided at the end of the connecting rod 32, a protective retaining ring 34 is provided on the connecting rod 32, and a spherical mesh cover 35 is provided on both sides of the protective retaining ring 34.

[0064] Example 7:

[0065] A pre-release method for wilding brown scorpionfish. Compared with Example 1, the difference between this embodiment and Example 1 is that the injection assembly 4 includes an injection shell 48, and the injection shell 48 is a cylindrical structure. One side of the injection shell 48 is separated by a partition plate 42. The center position of the partition plate 42 is connected to a connecting ball head 41 through a first liquid inlet pipe 43. The connecting ball head 41 is connected to the external pump body. A rotating body 44, a connecting steel rod 46 and a flow guide 45 are provided on the other side of the injection shell 48. The flow guide 45 is connected to the injection shell 48 through the connecting steel rod 46. The flow guide 45 is connected to the rotating body 44. An auxiliary inlet slot 47 is opened on the inner wall of the injection shell 48 between the partition plate 42 and the rotating body 44.

[0066] Example 8:

[0067] A method for pre-releasing brown scorpionfish for rewilding. Compared with Example 7, the difference between this embodiment and Example 7 is that the outside of the connecting ball head 41 is a second sphere 414, a second liquid inlet pipe 413 is provided on the second sphere 414, the second sphere 414 is connected to the elastic seal 412, the elastic seal 412 is connected to the first sphere 411 inside the connecting ball head 41, a first liquid inlet pipe 43 is provided on the first sphere, and the first liquid inlet pipe 43 is connected to the partition plate 42.

[0068] The different components and implementations of the various methods in Examples 1-8 of the present invention can be freely combined to form new technical solutions. For example, the implementations of Examples 2 and 3 can be combined with Example 1 to form a new technical solution, or the implementations of Examples 2 and 4 can be combined with Example 1 to form a new technical solution. These will not be elaborated here.

[0069] The above embodiments are intended to illustrate the present invention only and are not intended to limit the present invention. Persons skilled in the art may make various changes and modifications without departing from the spirit and scope of the present invention. Therefore, all equivalent technical solutions also fall within the scope of the present invention, and the scope of patent protection of the present invention shall be defined by the claims.

Claims

1. A method for rewilding aquatic products by pre-release, comprising: The rewilding target organisms are placed in a rewilding device for rewilding, the rewilding device comprising: a pool body (1), a mounting assembly (6) provided at a corner of the pool body (1), a wave-making assembly (2) provided on the mounting assembly (6), an auxiliary assembly (3) provided at an end corner of the pool body (1) opposite to the mounting assembly (6), spray assemblies (4) provided on both sides of the auxiliary assembly (3), and a collecting body (5) provided at the center of the pool body (1); the wave-making assembly (2) generates water flow to drive the rewilding target organisms to swim around the collecting body (5), thereby rewilding the rewilding target organisms; A first liquid inlet mesh port (24) is provided at the bottom of the wave-making component (2), second liquid inlet mesh ports (23) are provided on both sides of the wave-making component (2), a second guide plate group (25) is provided at the front of the wave-making component (2), a driver (22) and a first guide plate group (26) are provided inside the wave-making component (2), and the first guide plate group (26) is provided between the driver (22) and the second guide plate group (25); A first guide plate body (261) is provided in the first guide plate group (26), and the first guide plate body (261) is curved; a second guide plate body (251) is provided in the second guide plate group (25), and a swing connection member (252) is provided at a non-central position of the second guide plate body (251); The auxiliary component (3) is provided with a connecting base plate (31), the connecting base plate (31) is connected to a sliding rod (36), the sliding rod (36) is connected to a connecting rod (32), a fan blade (33) is provided at the end of the connecting rod (32), a protective retaining ring (34) is provided on the connecting rod (32), and spherical mesh covers (35) are provided on both sides of the protective retaining ring (34); The injection assembly (4) includes an injection housing (48), which is a cylindrical structure. One side of the injection housing (48) is separated by a partition plate (42). A connecting ball head (41) is connected to the center of the partition plate (42) through a first liquid inlet pipe (43). The connecting ball head (41) is connected to an external pump body. A rotating body (44), a connecting steel rod (46) and a guide body (45) are provided on the other side of the injection housing (48). The guide body (45) is connected to the injection housing (48) through the connecting steel rod (46). The guide body (45) is connected to the rotating body (44). An auxiliary inlet slot (47) is provided on the inner wall of the injection housing (48) between the partition plate (42) and the rotating body (44). The outside of the connecting ball head (41) is a second sphere (414), a second liquid inlet pipe (413) is provided on the second sphere (414), the second sphere (414) is connected to the elastic sealing member (412), the elastic sealing member (412) is connected to the first sphere (411) inside the connecting ball head (41), a first liquid inlet pipe (43) is provided on the first sphere, and the first liquid inlet pipe (43) is connected to the partition plate (42).

2. A method for rewilding aquatic products according to claim 1, characterized in that: The collecting body (5) is an annular cylindrical structure, a first through hole group (51) and a second through hole group (52) are provided on the side of the collecting body (5), and a sewage discharge pipe (53) is provided at the bottom of the collecting body (5); The first through hole group (51) and the second through hole group (52) are both composed of two upper and lower rows of through holes.

3. A method for rewilding aquatic products according to claim 2, characterized in that: The collecting body (5) has a first mesh plate (55) and a second mesh plate (54) built in. The first mesh plate (55) is arranged between the second through hole groups (52), and the second mesh plate (54) is arranged between the first through hole groups (51).

4. The method for rewilding aquatic products according to claim 1, wherein: The mounting assembly (6) comprises a mounting card plate (61) hung on the pool body (1); a mounting baffle plate (64) is connected to the side of the mounting card plate (61) via a support rod (63); and the mounting baffle plate (64) is used to connect to the wave-making assembly (2).

5. The method for rewilding aquatic products according to claim 1, characterized in that: The driver (22) comprises a driving sleeve (225), the driving sleeve (225) being a cylindrical structure, the driving sleeve (225) being rotatably connected to the driving blades (224), the driving blades (224) being symmetrically arranged, the driving blades (224) being provided with a toothed structure on the outside, an opening being provided at the rotational connection between the driving sleeve (225) and the driving blades (224), a driving motor (221), a driving gear (222) and a driving shaft (223) being provided on the outside of the driving sleeve (225), and the driving shaft (223) being meshed with the external teeth of the driving blades (224).

6. The method for rewilding aquatic products according to claim 1, characterized in that: The target organism for rewilding is the brown scorpionfish.

Citation Information

Patent Citations

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