Crocodile breeding water body circulating device

By designing a water circulation device for crocodile farming, multi-stage filtration, disinfection, and dissolved oxygen treatment were achieved, solving the problem of insufficient water treatment, saving water resources, and improving the practicality of crocodile farming equipment.

CN224539183UActive Publication Date: 2026-07-24HAINAN CROCODILE CROCODILE IND TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HAINAN CROCODILE CROCODILE IND TECH CO LTD
Filing Date
2025-09-08
Publication Date
2026-07-24

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Abstract

The utility model relates to crocodile breeding technical field, and disclose a kind of crocodile breeding water body circulating device, including water storage pool, the one end of water storage pool is connected with breeding pond, and the one end of breeding pond is connected with filter structure, and the inside communication of filter structure has disinfection structure, the inside communication of disinfection structure has dissolved oxygen structure.The utility model is by water storage pool and is arranged into the inside of breeding pond with water for breeding, after using a period of time, the water in the inside of breeding pond is connected into filter structure and is filtered by filter structure, then disinfecting and depositing in disinfection structure, then carrying out dissolved oxygen in the inside of dissolved oxygen structure, it can be re-arranged into water storage pool and repeatedly used, whereby the recycling use of breeding water body can be realized, not only save water resource, while cost is lower, the practicability of equipment is improved to a certain extent.
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Description

Technical Field

[0001] This utility model relates to the field of crocodile farming technology; more specifically, it relates to a water circulation device for crocodile farming. Background Technology

[0002] Currently, crocodile farming typically selects suitable species such as Nile crocodiles and Siamese crocodiles, creating simulated natural ecological ponds and controlling the water temperature at around 30 degrees Celsius. Young crocodiles are fed fish, shrimp, snails, and clams, while adult crocodiles are fed high-protein feeds such as poultry and rodents. Regular quarantine is conducted to prevent parasites and skin rot diseases. The farming cycle is three to five years, and the economic value can be realized through leather, meat, and medicinal uses. Strict adherence to wildlife protection regulations is required.

[0003] The water used for crocodile farming must be clean and injected into the simulated natural ecological pond. It should be purified regularly, and the water level should be dynamically adjusted by combining the shallow water level for juvenile crocodiles and the deep water level for adult crocodiles. The water quality should be monitored daily to avoid pollution from excrement and uneaten feed, which could lead to skin rot or parasites, thus ensuring the health of the farmed crocodiles.

[0004] Currently, in existing crocodile farming technologies, crocodiles have a low tolerance for water quality deterioration. Most crocodile farming relies on regular water changes to maintain water quality, which wastes water resources and is costly, reducing the practicality of the equipment. Furthermore, some crocodile farming processes reuse water repeatedly without adequate water treatment, impacting crocodile growth and potentially causing illness, further reducing the equipment's usability. Therefore, there is an urgent need for a crocodile farming water circulation device to solve these problems. Utility Model Content

[0005] In order to overcome the above-mentioned defects of the prior art, the present invention provides a water circulation device for crocodile farming to solve the problems existing in the background art.

[0006] This utility model provides the following technical solution: a water circulation device for crocodile farming, comprising:

[0007] A water storage tank, one end of which is connected to an aquaculture pond, and the other end of the aquaculture pond is connected to a filtration structure, the interior of which is connected to a disinfection structure, and the interior of the disinfection structure is connected to a dissolved oxygen structure; the filtration structure includes a first connecting pipe, a first water pump, a connecting pool, a filter tank, a slot, and a filter plate, and the first connecting pipe is connected to the interior of the aquaculture pond; the disinfection structure includes a second water pump, a second connecting pipe, a sedimentation tank, a sewage pipe, a valve, and a third connecting pipe, and the second water pump is installed on the outer surface of one end of the filter tank, and the suction end of the second water pump is connected to the interior of the filter tank; the dissolved oxygen structure includes a dissolved oxygen pool, an air pump, an air pipe, a dissolved oxygen pipe, an exhaust port, a third water pump, and a fourth connecting pipe, and the interior of the lower end of one end of the dissolved oxygen pool is connected to the interior of the third connecting pipe.

[0008] Preferably, the first water pump is installed on the outer surface of the upper end of the first connecting pipe, and the suction end of the first water pump is connected to the inside of the first connecting pipe, and the output end of the first water pump is connected to a connecting pool. A filter tank is connected to one side of the connecting pool, and a slot is opened on the inner wall surface of the filter tank, and a filter plate is inserted into the slot. This design allows the water inside the filter tank to be filtered through the filter plate.

[0009] Preferably, the slots are provided in multiple sets, and the multiple sets of slots are evenly opened inside the filter tank. The size of the filter mesh pores inside the filter plate decreases sequentially from the direction of the connecting pool to the filter tank. This design allows the multiple sets of filter plates to avoid clogging when filtering water, and at the same time, the filtration efficiency is higher.

[0010] Preferably, the second connecting pipe is connected to the output end of the second water pump, the sedimentation tank is connected to the other end of the second connecting pipe, and the lower end of the sedimentation tank is connected to a sewage pipe, and a valve is installed inside the sewage pipe. The sedimentation tank is connected to a third connecting pipe. This design can disinfect and settle the water inside the sedimentation tank.

[0011] Preferably, the sedimentation tank is in the shape of an inverted cone. This design allows for the centralized treatment of sediments during water sedimentation.

[0012] Preferably, the air pump is installed on the outer surface of one end of the dissolved oxygen pool, and the output end of the air pump is connected to an air pipe, and the lower end of the air pipe is connected to a dissolved oxygen pipe. An exhaust hole is opened inside the outer surface of the dissolved oxygen pipe. A third water pump is installed on the outer surface of the dissolved oxygen pool, and the suction end of the third water pump is connected to the interior of the dissolved oxygen pool. The output end of the third water pump is connected to a fourth connecting pipe, and the other end of the fourth connecting pipe is connected to the interior of the water storage tank. This design allows air to enter the interior of the dissolved oxygen pipe by starting the air pump.

[0013] Preferably, the vent holes are provided in multiple sets, and the multiple sets of vent holes are evenly distributed and opened inside the outer surface of the dissolved oxygen pipe. This design can improve the efficiency of dissolved oxygen in the dissolved oxygen pool by venting air through multiple sets of vent holes.

[0014] The technical effects and advantages of this utility model are as follows: This utility model discharges aquaculture water into the aquaculture pond through a water storage tank. After a period of use, the water inside the aquaculture pond is passed through a filtration structure and filtered. Then, it is disinfected and precipitated in a disinfection structure. After that, it is dissolved in oxygen in the oxygenation structure and can be discharged back into the water storage tank for reuse. This can realize the recycling of aquaculture water, which not only saves water resources but also has a low cost and improves the practicality of the equipment to a certain extent.

[0015] By starting the first water pump, water from the breeding pond is introduced into the connecting pond and then into the filter tank. Through multiple filter plates, impurities in the water are filtered out. Then, by starting the second water pump, the water from the filter tank is carried into the sedimentation tank through the second connecting pipe, and disinfectant is added for disinfection. After that, it can be left to stand for a period of time to settle. This process completes the filtration and disinfection of the breeding water, preventing substandard water quality from affecting the crocodile's growth environment during water circulation. This improves the practicality of the equipment to a certain extent. Moreover, its overall structure is simple and reasonable in design, highly practical, and easy to promote and apply. Attached Figure Description

[0016] Figure 1 This is a three-dimensional structural diagram of the present invention.

[0017] Figure 2 This is an exploded three-dimensional structural diagram of the filter structure of this utility model.

[0018] Figure 3 This is a three-dimensional exploded view of the disinfection structure of this utility model.

[0019] Figure 4 This is a three-dimensional exploded view of the dissolved oxygen structure of this utility model.

[0020] The attached diagram is labeled as follows: 1. Water storage tank; 2. Aquaculture pond; 3. Filtration structure; 31. First connecting pipe; 32. First water pump; 33. Connecting pool; 34. Filter tank; 35. Slot; 36. Filter plate; 4. Disinfection structure; 41. Second water pump; 42. Second connecting pipe; 43. Sedimentation tank; 44. Sewage pipe; 45. Valve; 46. Third connecting pipe; 5. Oxygenation structure; 51. Oxygenation pool; 52. Air pump; 53. Air pipe; 54. Oxygenation pipe; 55. Exhaust vent; 56. Third water pump; 57. Fourth connecting pipe. Detailed Implementation

[0021] The technical solution of this utility model will be clearly and completely described below with reference to the accompanying drawings. In addition, the forms of the various structures described in the following embodiments are merely illustrative. The crocodile farming involved in this utility model is not limited to the structures described in the following embodiments. All other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.

[0022] Example 1, as Figure 1 As shown in the figure, this embodiment proposes a water circulation device for crocodile farming, comprising:

[0023] A water storage tank 1 is connected to a breeding pond 2 at one end, and a filter structure 3 is connected to a filter structure 3 at one end. A disinfection structure 4 is connected inside the filter structure 3, and a dissolved oxygen structure 5 is connected inside the disinfection structure 4.

[0024] In this embodiment, the aquaculture water is discharged into the aquaculture pond 2 through the water storage tank 1. The water inside the aquaculture pond 2 can pass into the filter structure 3 and be filtered by the filter structure 3. Then, it is disinfected and precipitated in the disinfection structure 4, and then dissolved in oxygen in the oxygenation structure 5. It can then be discharged back into the water storage tank 1 for reuse, thereby realizing the recycling of aquaculture water.

[0025] Example 2, as Figures 2 to 4 As shown, based on the same concept as the above embodiments, this embodiment also proposes:

[0026] The filtration structure 3 includes a first connecting pipe 31, a first water pump 32, a connecting pool 33, a filter tank 34, a slot 35, and a filter plate 36. The first connecting pipe 31 is connected to the interior of one end of the aquaculture tank 2. The first water pump 32 is installed on the outer surface of the upper end of the first connecting pipe 31, and the suction end of the first water pump 32 is connected to the interior of the first connecting pipe 31. The output end of the first water pump 32 is connected to the connecting pool 33. The interior of one side of the connecting pool 33 is connected to the filter tank 34, and a slot 35 is formed on the inner wall surface of the filter tank 34. The filter plate 36 is inserted inside the filter tank 34. Multiple sets of slots 35 are provided and are evenly distributed inside the filter tank 34. The size of the filter mesh pores inside the filter plate 36 decreases sequentially from the connecting pool 33 to the filter tank 34. This design can perform multi-stage filtration of the water discharged into the filter tank 34 through multiple sets of filter plates 36 with gradually smaller filter mesh pores. This can fully filter the water while avoiding clogging during the filtration process. Furthermore, the filter plate 36 can be quickly cleaned by pulling it out of the slot 35.

[0027] The disinfection structure 4 includes a second water pump 41, a second connecting pipe 42, a sedimentation tank 43, a sewage pipe 44, a valve 45, and a third connecting pipe 46. The second water pump 41 is installed on the outer surface of one end of the filter tank 34, and the suction end of the second water pump 41 is connected to the inside of the filter tank 34. The second connecting pipe 42 is connected to the output end of the second water pump 41. The sedimentation tank 43 is connected to the other end of the second connecting pipe 42, and the lower end of the sedimentation tank 43 is connected to the sewage pipe 44. The valve 45 is installed inside the sewage pipe 44. The third connecting pipe 46 is connected inside the sedimentation tank 43. The sedimentation tank 43 is in the shape of an inverted cone. This design allows the sediment to be concentrated inside the sewage pipe 44 and discharged through the sewage pipe 44 when the water inside the sedimentation tank 43 is being settled.

[0028] The dissolved oxygen structure 5 includes a dissolved oxygen tank 51, an air pump 52, an air pipe 53, a dissolved oxygen pipe 54, an exhaust port 55, a third water pump 56, and a fourth connecting pipe 57. The lower end of one end of the dissolved oxygen tank 51 is connected to the interior of the third connecting pipe 56. The air pump 52 is installed on the outer surface of the upper end of the dissolved oxygen tank 51, and its output end is connected to the air pipe 53. The lower end of the air pipe 53 is connected to the dissolved oxygen pipe 54. An exhaust port 55 is provided inside the outer surface of the dissolved oxygen pipe 54. The third water pump 56 is installed on the outer surface of the dissolved oxygen tank 51. The suction end of the third water pump 56 is connected to the interior of the dissolved oxygen tank 51, and the output end of the third water pump 56 is connected to the fourth connecting pipe 57. The other end of the fourth connecting pipe 57 is connected to the interior of the water storage tank 1. Multiple sets of exhaust holes 55 are provided, and the multiple sets of exhaust holes 55 are evenly distributed inside the outer surface of the dissolved oxygen pipe 54. This design, through the even arrangement of multiple sets of exhaust holes 55, can increase the contact area between the water and air inside the dissolved oxygen tank 51 when the air pump 52 is started to drive air into the interior of the dissolved oxygen pipe 54, thereby improving the dissolved oxygen efficiency of the water inside the dissolved oxygen tank 51.

[0029] The first water pump 32, the second water pump 41, the air pump 52 and the third water pump 56 in this application are all commonly used electromechanical equipment, and they are products that can be purchased directly on the market. Their principles, connection methods and control methods are all existing technologies well known to those skilled in the art, so they will not be described in detail here.

[0030] The filter plate 36 and valve 45 in this application, as well as all movable parts, require regular cleaning and maintenance, including but not limited to dust removal and lubrication.

[0031] Working Principle: When using the equipment, the aquaculture water in the storage tank 1 is first discharged into the aquaculture tank 2 for use. When water treatment is required, the first water pump 32 is started, which drives the water in the aquaculture tank 2 into the connecting tank 33 through the first connecting pipe 31 and then into the filter tank 34. The water is filtered through multiple sets of filter plates 36. After filtration, the second water pump 41 is started, which draws the water in the filter tank 34 into the sedimentation tank 43 through the second connecting pipe 42. After disinfection with disinfectant, the water settles for a period of time. Then, the valve 45 is opened to discharge the sediment through the drain pipe 44. Next, the water is discharged into the dissolved oxygen tank 51 through the third connecting pipe 46. The air pump 52 is then started, which fully discharges the air from the dissolved oxygen pipe 54 through multiple exhaust holes 55, which facilitates oxygenation of the water in the dissolved oxygen tank 51. Finally, the third water pump 56 is started, which discharges the oxygenated water back into the storage tank 1 through the fourth connecting pipe 57 for recycling. This is the complete working principle of this practical system.

[0032] Finally, the following points should be noted: First, in the description of this application, it should be noted that, unless otherwise specified and limited, the terms "installation", "connection", and "linkage" should be interpreted broadly, and can be mechanical or electrical connections, or internal connections between two components, or direct connections. "Up", "down", "left", "right", etc. are only used to indicate relative positional relationships. When the absolute position of the described object changes, the relative positional relationship may change.

[0033] Secondly: The accompanying drawings of the embodiments disclosed in this utility model only involve the structures involved in the embodiments disclosed in this utility model. Other structures can refer to the general design. In the absence of conflict, the same embodiment and different embodiments of this utility model can be combined with each other.

[0034] In conclusion, the above are merely preferred embodiments of this utility model and are not intended to limit this utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. A water circulation device for crocodile farming, characterized in that, include: A water storage tank (1) is connected to a breeding pond (2) at one end, and a filter structure (3) is connected to one end of the breeding pond (2), and a disinfection structure (4) is connected inside the filter structure (3), and a dissolved oxygen structure (5) is connected inside the disinfection structure (4). The filter structure (3) includes a first connecting pipe (31), a first water pump (32), a connecting pool (33), a filter tank (34), a slot (35) and a filter plate (36), and the first connecting pipe (31) is connected to the interior of one end of the aquaculture pool (2); The disinfection structure (4) includes a second water pump (41), a second connecting pipe (42), a sedimentation tank (43), a sewage pipe (44), a valve (45) and a third connecting pipe (46), and the second water pump (41) is installed on the outer surface of one end of the filter tank (34), and the suction end of the second water pump (41) is connected to the inside of the filter tank (34); The dissolved oxygen structure (5) includes a dissolved oxygen pool (51), an air pump (52), an air pipe (53), a dissolved oxygen pipe (54), an exhaust port (55), a third water pump (56), and a fourth connecting pipe (57), and the interior of the lower end of one end of the dissolved oxygen pool (51) is connected to the interior of the third connecting pipe (46).

2. The crocodile farming water circulation device according to claim 1, characterized in that: The first water pump (32) is installed on the outer surface of the upper end of the first connecting pipe (31), and the suction end of the first water pump (32) is connected to the inside of the first connecting pipe (31), and the output end of the first water pump (32) is connected to the connecting pool (33). The inside of one side of the connecting pool (33) is connected to the filter tank (34), and the inner wall surface of the filter tank (34) is provided with a slot (35), and a filter plate (36) is inserted into the slot (35).

3. The crocodile farming water circulation device according to claim 1, characterized in that: The slots (35) are provided in multiple sets, and the multiple sets of slots (35) are evenly opened inside the filter tank (34). The size of the filter mesh inside the filter plate (36) decreases sequentially from the direction of the connecting pool (33) to the filter tank (34).

4. The crocodile farming water circulation device according to claim 1, characterized in that: The second connecting pipe (42) is connected to the output end of the second water pump (41), the sedimentation tank (43) is connected to the other end of the second connecting pipe (42), and the lower end of the sedimentation tank (43) is connected to a sewage pipe (44), and a valve (45) is installed inside the sewage pipe (44). The sedimentation tank (43) is connected to a third connecting pipe (46).

5. The crocodile farming water circulation device according to claim 1, characterized in that: The sedimentation tank (43) is in the shape of an inverted cone.

6. The crocodile farming water circulation device according to claim 1, characterized in that: The air pump (52) is installed on the outer surface of one end of the dissolved oxygen pool (51), and the output end of the air pump (52) is connected to the air pipe (53), and the lower end of the air pipe (53) is connected to the dissolved oxygen pipe (54). The interior of the outer surface of the dissolved oxygen pipe (54) is provided with an exhaust hole (55). The outer surface of the dissolved oxygen pool (51) is equipped with a third water pump (56), and the suction end of the third water pump (56) is connected to the interior of the dissolved oxygen pool (51). The output end of the third water pump (56) is connected to a fourth connecting pipe (57), and the other end of the fourth connecting pipe (57) is connected to the interior of the water storage tank (1).

7. The crocodile farming water circulation device according to claim 1, characterized in that: The exhaust holes (55) are provided in multiple sets, and the multiple sets of exhaust holes (55) are evenly distributed and opened inside the outer surface of the dissolved oxygen tube (54).