Circulating water changing device for incubation of fairy shrimps
By introducing oxygenation and heating components into the Artemia hatching circulating water exchange device, the problem of damage to larvae during the oxygenation process was solved, achieving a stable and efficient hatching environment for Artemia.
Patent Information
- Application Number
- CN202520055033.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-10
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2035-01-10
AI Technical Summary
Existing Artemia hatching and circulating water exchange devices can easily damage larval Artemia due to the strong water flow and air bubble impact generated during the oxygenation process, resulting in a reduced hatching success rate.
An artichoke hatching and circulating water exchange device was designed, which includes an oxygenation component and a heating component. The oxygenation component releases microbubbles through fine oxygenation holes to provide sufficient dissolved oxygen, while the heating component precisely regulates the water temperature. Combined with the water circulation and heat dissipation components, the hatching environment is kept stable.
This method ensures sufficient dissolved oxygen and suitable temperature during the incubation process of Artemia, reduces damage to larvae, improves hatching success rate and environmental stability, and ensures the healthy growth of Artemia.
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Figure CN223653012U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of artemia cultivation, specifically to an artemia hatching circulating water changing device. BACKGROUND
[0002] The artemia hatching circulating water changing device is mainly used for improving the water quality and growth conditions of the artemia hatching environment, and can effectively remove waste, residual organic matter and waste gas in the water through automatic circulating water changing, so as to keep the water clean and promote the healthy growth of the artemia. The device can adjust the water temperature, oxygen content and pH value to ensure that the artemia hatches and breeds in the most suitable environment, thereby improving the hatching rate and yield, reducing manual intervention and improving the breeding efficiency.
[0003] In actual work, the structure and function of the existing circulating water changing device are relatively perfect, and can basically meet the daily use requirements, but there are still the following problems:
[0004] In actual use, when the artemia hatches, the water needs to be oxygenated, but if the oxygenation is directly carried out in the breeding pond, it will bring many disadvantages. The strong water flow and bubbles generated during the oxygenation process can easily injure the juvenile artemia, and even may drive them away from the suitable survival area, resulting in the growth and development of the artemia being hindered and the hatching success rate being greatly reduced.
[0005] Therefore, the utility model provides an artemia hatching circulating water changing device. SUMMARY
[0006] The utility model discloses a kind of artemia hatching circulating water changing devices to solve the shortcomings in prior art.
[0007] To achieve the above object, the utility model adopts the following technical scheme: an artemia hatching circulating water changing device, comprising: a hatching box and a treatment box placed at the bottom of the hatching box.
[0008] The oxygenation component is placed inside the treatment box, and the oxygenation component includes an oxygenation pipe fixed inside the treatment box. The top of the oxygenation pipe is fixed with a connecting pipeline, and the top of the connecting pipeline is provided with an oxygenation head. The oxygenation head is provided in the oxygenation box.
[0009] The warming component is placed on the side of the treatment box away from the oxygenation component, and the warming component includes a warming box fixed inside the treatment box away from the oxygenation component. The top of the warming box is fixed with a power supply, and the power supply is provided with a heating pipe on one side. The bottom of the heating pipe is fixed with a heat pipe.
[0010] As a preferred implementation, the heat dissipation assembly comprises a heat exhaust box, the inside of the heat exhaust box is provided with a wind guide block, and the side of the heat exhaust box away from the wind guide block is fixed with an exhaust fan.
[0011] The technical effect of the further scheme is that the heat dissipation assembly is used to maintain the temperature balance of the device.
[0012] As a preferred implementation, the incubation box is provided with a first connecting pipe on one side, the first connecting pipe is provided with a water pump, and the other end of the first connecting pipe is connected with the oxygen flushing box.
[0013] The technical effect of the further scheme is that in the mayfly incubation device, the first connecting pipe is arranged on one side of the incubation box, and the water pump can extract water in the incubation box and deliver the water to the oxygen flushing box through the first connecting pipe after being started, so that water circulation is realized.
[0014] As a preferred implementation, the incubation box is provided with a collecting assembly, the collecting assembly comprises a collecting plate, the side of the collecting plate is fixed with a connecting plate, the side of the connecting plate is provided with a second handle, and the inside of the incubation box is provided with a hole plate.
[0015] The technical effect of the further scheme is that the hole plate arranged in the incubation box plays a key intercepting role, can accurately intercept mayflies, and prevent the mayflies from being lost with water flow; the collecting plate is used to recycle waste generated in the incubation process, the connecting plate fixed on one side of the collecting plate guarantees the stability of the structure, and the second handle on one side of the connecting plate can be pulled to easily complete waste collection, so that the incubation environment is kept clean and orderly.
[0016] As a preferred implementation, the top of the processing box is fixed with a supporting leg, and the top of the supporting leg is fixedly connected with the incubation box.
[0017] The technical effect of the further scheme is that in the mayfly incubation device, the supporting leg at the top of the processing box plays a key supporting role, is stably fixed, is fixedly connected with the incubation box at the top, and guarantees the stability of the whole device.
[0018] The mayfly incubation and water circulation device has the following beneficial effects:
[0019] 1, the oxygen assembly is placed in the processing box, the oxygen process starts from the oxygen pipe fixed in the processing box, it serves as the gas source conveying channel, the top is connected with the connecting pipeline, the connecting pipeline disperses the gas to each oxygen head, the fine oxygen hole on the oxygen head can let the oxygen escape in the form of small bubbles, and the oxygen box is fixed on the top of the oxygen pipe, the oxygen head is covered therein, plays the role of gathering bubbles and slowing down the rising speed of bubbles, so that the oxygen can be more fully mixed into the water body, and provides sufficient dissolved oxygen environment for the hatching of the Daphnia.
[0020] The warming assembly is located on the side of the processing box away from the oxygen assembly, when operating, the warming box fixed in the processing box plays the role of heat insulation and heat gathering, the power supply on the top is connected to supply power to the heating pipe on one side, the heating pipe is rapidly heated, and the heat is uniformly transmitted to the surrounding water body through the heat conduction pipe fixed at the bottom, so that the water temperature is accurately controlled, and the Daphnia is hatched and grown under the most suitable temperature condition. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 A structure schematic view of the Daphnia hatching circulating water changing device is provided.
[0022] Figure 2 A sectional view of the Daphnia hatching circulating water changing device is provided.
[0023] Figure 3 A structure schematic view of the collecting assembly of the Daphnia hatching circulating water changing device is provided.
[0024] Figure 4 A structure schematic view of the oxygen assembly of the Daphnia hatching circulating water changing device is provided.
[0025] LEGEND:
[0026] 1, the hatching box; 2, the processing box; 3, the water pump; 4, the first connecting pipe; 5, the supporting leg;
[0027] 6, the heat dissipation assembly; 61, the heat dissipation box; 62, the air guide block; 63, the exhaust fan;
[0028] 7, the filtering assembly; 71, the clamping plate; 72, the first handle; 73, the filter screen;
[0029] 8, the oxygen assembly; 81, the oxygen pipe; 82, the oxygen box; 83, the connecting pipeline; 84, the oxygen head; 85, the oxygen hole;
[0030] 9, the warming assembly; 91, the warming box; 92, the power supply; 93, the heating pipe; 94, the heat conduction pipe;
[0031] 10, collecting assembly; 101, material receiving plate; 102, connecting plate; 103, second handle; 104, hole plate;
[0032] 11, air outlet. DETAILED DESCRIPTION
[0033] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application.
[0034] As shown in the drawings, Figures 1-4 The present embodiment provides a technical solution: a brine shrimp hatching circulating water changing device, comprising a hatching box 1 and a treatment box 2 placed at the bottom of the hatching box 1;
[0035] The oxygen flushing assembly 8 is placed inside the treatment box 2, and the oxygen flushing assembly 8 comprises an oxygen flushing pipe 81 fixed inside the treatment box 2, a connecting pipe 83 fixed at the top of the oxygen flushing pipe 81, oxygen flushing heads 84 provided at the top of the connecting pipe 83, oxygen flushing holes 85 formed in the oxygen flushing heads 84, and an oxygen flushing box 82 fixed at the top of the oxygen flushing pipe 81, wherein the oxygen flushing heads 84 are arranged in the oxygen flushing box 82. The oxygen flushing assembly 8 is placed inside the treatment box 2, and the oxygen flushing process starts from the oxygen flushing pipe 81 fixed inside the treatment box 2, which serves as a gas source delivery channel and is connected to the connecting pipe 83 at the top. The connecting pipe 83 disperses the gas to each oxygen flushing head 84. The fine oxygen flushing holes 85 on the oxygen flushing heads 84 allow the oxygen to escape in the form of tiny bubbles. The oxygen flushing box 82 is fixed at the top of the oxygen flushing pipe 81 and covers the oxygen flushing heads 84, which has the effect of gathering bubbles and slowing down the rising speed of the bubbles, so that the oxygen can be more fully dissolved into the water body, providing an adequate dissolved oxygen environment for the hatching of brine shrimp.
[0036] The warming assembly 9 is placed on the side of the treatment box 2 away from the oxygen flushing assembly 8, and the warming assembly 9 comprises a warming box 91 fixed inside the treatment box 2 away from the oxygen flushing assembly 8, a power supply 92 fixed at the top of the warming box 91, a heating pipe 93 provided on one side of the power supply 92, and heat conducting pipes 94 fixed at the bottom of the heating pipe 93. The warming assembly 9 is located on the side of the treatment box 2 away from the oxygen flushing assembly 8. When in operation, the warming box 91 fixed inside the treatment box 2 has the effect of heat insulation and heat gathering. The power supply 92 at the top is connected to the heating pipe 93 on one side to supply power. The heating pipe 93 rapidly heats up, and the heat is evenly transferred to the surrounding water body through the heat conducting pipes 94 fixed at the bottom, accurately regulating the water temperature and ensuring that the brine shrimp hatches and grows in the most suitable temperature conditions.
[0037] Further, asFigures 1-2 As shown: the heat dissipation assembly 6 includes a heat exhaust box 61, the inside of the heat exhaust box 61 is provided with a wind guide block 62, and the side of the heat exhaust box 61 away from the wind guide block 62 is fixed with an exhaust fan 63. The heat dissipation assembly 6 is used to maintain the temperature balance of the device. The heat exhaust box 61 is installed on the top of the processing box 2. When in operation, the wind guide block 62 guides the heat flow, and the exhaust fan 63 exhausts the hot air to prevent the temperature from being too high to affect the incubation of the daphnia.
[0038] The above scheme also has the problem of water circulation, such as Figure 2 As shown: the incubator 1 is provided with a first connecting pipe 4, the first connecting pipe 4 is provided with a water pump 3, and the other end of the first connecting pipe 4 is connected with an oxygen flushing box 82. In the daphnia incubator, the first connecting pipe 4 is provided on one side of the incubator 1, and the water pump 3 can extract water in the incubator 1 after starting, and then send it to the oxygen flushing box 82 through the first connecting pipe 4, so as to realize water circulation.
[0039] Working principle:
[0040] As shown: Figures 1-4 As shown:
[0041] In use: the oxygen flushing assembly 8 is placed inside the processing box 2. The oxygen flushing pipe 81 serves as the starting channel for the gas source to be delivered and is stably fixed. The top connecting pipe 83 is responsible for shunting and uniformly dispersing the gas to the oxygen flushing head 84. The fine and dense oxygen flushing holes 85 on the oxygen flushing head 84 allow the oxygen gas to escape in the form of small bubbles. The oxygen flushing box 82 covers the oxygen flushing head 84, gathers the bubbles, and slows down the rising, so that the oxygen gas is fully mixed into the water body, providing sufficient dissolved oxygen for the daphnia.
[0042] The warming assembly 9 is on the other side of the processing box 2. The warming box 91 gathers and retains heat. When started, the power supply 92 supplies power to the heating pipe 93, which quickly heats up. The heat pipe 94 uniformly transmits heat to the water body, accurately controls the water temperature, and helps the daphnia grow appropriately.
[0043] The heat dissipation assembly 6 maintains temperature balance. The heat exhaust box 61 is installed on the top of the processing box 2. When in operation, the wind guide block 62 skillfully guides the heat flow, and the exhaust fan 63 strongly exhausts the hot air through the exhaust port 11 to prevent overheating from affecting incubation.
[0044] Water circulation relies on the first connecting pipe 4 and the water pump 3 on one side of the incubator 1. The water pump 3 starts to extract water in the incubator 1 and sends it to the oxygen flushing box 82 through the first connecting pipe 4, ensuring the circulation of water flow.
[0045] The collection assembly 10 has clear division of labor. The hole plate 104 is uniformly distributed inside the incubator 1 to accurately trap the daphnia. The material collection plate 101 is dedicated to recycling waste materials. The connecting plate 102 is stable in structure. The second handle 103 is pulled to easily complete the collection, keeping the environment clean.
[0046] The support legs 5 on the top of the processing box 2 are firmly rooted, the top is firmly connected with the incubator 1, bears the overall weight, ensures that the device is stable and does not shake, and builds a solid foundation for stable operation of each component.
[0047] The incubator 1 is provided with a filtering assembly 7 away from the collecting assembly 10, a clamping plate 71 is clamped on the top of the incubator 1, a first handle 72 on the clamping plate 71 can be conveniently operated, and a filtering screen 73 can intercept impurities, so that the water quality is clean and the incubation of the fathead minnows is facilitated.
[0048] The basic principle and main features of the utility model and the advantages of the utility model are shown and described above, and it is obvious for those skilled in the art that the utility model is not limited to the details of the above exemplary embodiments, and the utility model can be realized in other specific forms without departing from the spirit or basic features of the utility model. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting, the scope of the utility model is defined by the appended claims rather than the above description, and therefore all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the utility model. Any reference signs in the claims should not be regarded as limiting the claims.
[0049] In addition, it should be understood that, although the present specification is described in terms of embodiments, not every embodiment contains only one independent technical solution, and the description of the specification is only for the sake of clarity, those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that those skilled in the art can understand.
Claims
1. A circulating water exchange device for Artemia hatching, characterized in that, include: Incubator (1) and processing box (2) placed at the bottom of incubator (1); Oxygenation assembly (8) is placed inside the processing box (2). The oxygenation assembly (8) includes an oxygenation pipe (81) fixed inside the processing box (2). A connecting pipe (83) is fixed to the top of the oxygenation pipe (81). An oxygenation head (84) is provided on the top of each connecting pipe (83). An oxygenation hole (85) is opened on each oxygenation head (84). An oxygenation box (82) is fixed to the top of the oxygenation pipe (81). The oxygenation head (84) is located inside the oxygenation box (82). Heating component (9), the heating component (9) is placed on the side of the processing box (2) away from the oxygenation component (8), the heating component (9) includes a heating box (91) fixed inside the processing box (2) away from the oxygenation component (8), a power supply (92) is fixed on the top of the heating box (91), a heating tube (93) is provided on one side of the power supply (92), and a heat conduction tube (94) is fixed at the bottom of each heating tube (93).
2. The brine shrimp hatching and circulating water exchange device according to claim 1, characterized in that, The top of the processing box (2) is provided with an exhaust vent (11), and a heat dissipation component (6) is provided on the top of the processing box (2) near the exhaust vent (11).
3. The Artemia hatching and circulating water exchange device according to claim 2, characterized in that, The heat dissipation assembly (6) includes a heat dissipation box (61), and an air guide block (62) is provided inside the heat dissipation box (61). An exhaust fan (63) is fixed on the side of the heat dissipation box (61) away from the air guide block (62).
4. The brine shrimp hatching and circulating water exchange device according to claim 1, characterized in that, The incubator (1) has a first connecting pipe (4) on one side, a water pump (3) on the first connecting pipe (4), and the other end of the first connecting pipe (4) is connected to the oxygenation box (82).
5. The brine shrimp hatching and circulating water exchange device according to claim 1, characterized in that, The incubator (1) is provided with a collection component (10), which includes a receiving plate (101), a connecting plate (102) is fixed on one side of the receiving plate (101), a second handle (103) is provided on one side of the connecting plate (102), and a perforated plate (104) is provided inside the incubator (1).
6. The Artemia hatching and circulating water exchange device according to claim 1, characterized in that, The top of the processing box (2) is fixed with a support leg (5), and the top of the support leg (5) is fixedly connected to the incubation box (1).
7. The Artemia hatching and circulating water exchange device according to claim 1, characterized in that, A filter assembly (7) is provided on the side of the incubator (1) away from the collection assembly (10). The filter assembly (7) is snapped onto the snap plate (71) on the top of the incubator (1). A first handle (72) is fixed on the top of the snap plate (71). A filter screen (73) is provided on the snap plate (71).