Cave fish living body transport case
By introducing equipment such as oxygen pumps, aeration components, and compressors into the live fish transport box, a stable oxygen supply and temperature control for cave fish were achieved, solving the problem of low survival rate of cave fish during transportation and meeting their physiological needs.
Patent Information
- Application Number
- CN202520024473.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-06
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2035-01-06
AI Technical Summary
Existing live fish transport boxes lack feeding devices, resulting in low survival rates for cave fish during long-distance transport and making it difficult to meet the cave fish's specific environmental control requirements.
A live transport box for cave fish was designed, which includes an oxygenation pump, an aeration assembly, a compressor, a temperature sensor, and a dissolved oxygen sensor. The oxygenation pump generates uniform and fine bubbles, monitors and adjusts the oxygen concentration in real time, uses the compressor to maintain a constant water temperature, and uses a circulation pump and a filter box for water circulation and waste treatment.
It improves the survival rate of cave fish, ensures stable oxygen and temperature, reduces stress response, provides fresh water and removes waste, and meets the physiological needs of cave fish.
Smart Images

Figure CN223626750U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the related technical field of live fish transportation, especially relates to a cave fish live body transportation box belongs to the transportation box technical field. BACKGROUND
[0002] Cave fish inhabits in completely no light or little light underground underground stream or cave, these caves usually locate in the mountain belly of karst landform. These environments provide stable and few natural enemy living space for cave fish, but also mean that they must adapt to no light, low oxygen, low temperature and food scarcity extreme conditions. Because living in the dark environment for a long time;
[0003] In the related art, to solve the problem that the existing transportation box does not set up a feeding device, which reduces the survival rate of live fish during long-distance transportation, the patent with publication number CN220734061U provides a live fish transportation box, the front end of the driving structure mounting block is provided with a first mounting groove, a second mounting groove and a third mounting groove, a motor is installed in the first mounting groove, the output shaft of the motor is fixedly connected with the rotating shaft and the adjacent rotating shaft through the shaft coupling and the connecting rod, a mobile power supply is installed in the second mounting groove, and a time delay relay is installed in the third mounting groove, which can automatically feed the box body in a timed and quantitative manner, and improve the survival rate of live fish during long-distance transportation;
[0004] Because they have evolved unique physiological characteristics and survival habits, such as sensitivity to water temperature, water quality and oxygen concentration, which is much higher than that of ordinary fish. They often require more precise and stable environmental control to ensure the survival rate of cave fish;
[0005] Therefore, a cave fish live body transportation box is provided. UTILITY MODEL CONTENTS
[0006] Therefore, the utility model provides a cave fish live body transportation box to solve or alleviate the technical problems existing in the prior art, at least to provide a beneficial choice.
[0007] The technical scheme of the utility model is implemented as a cave fish live body transportation box, comprising: a transportation box body, an oxygenation pump and a water tank, a partition plate is fixedly installed on the inner side of the transportation box body, the partition plate divides the transportation box body into a live fish storage area and a device area, an oxygenation pump is arranged in the device area, a shunt pipe is communicated with the output end of the oxygenation pump, an aeration assembly is arranged on the top of the shunt pipe, an induction assembly is arranged in the live fish storage area, a compressor is fixedly installed in the device area, the output end of the compressor extends to the inside of the live fish storage area through a lead-in pipe, the water tank is fixedly installed at the bottom of the transportation box body, and a circulating pump is arranged on one side of the water tank.
[0008] Further preferably, the output end of the oxygenation pump is connected to the shunt pipe through a communication pipe, and a mounting plate is fixedly installed on the top of the partition plate, and the mounting plate is fixedly installed between the shunt pipe through a limiting sleeve.
[0009] Further preferably, an insulating layer is arranged on the inner side of the transport box body, and the insulating layer is filled with an insulating material, which can be polystyrene foam plastic or polyurethane foam.
[0010] Further preferably, the sensing assembly is a temperature sensor and a dissolved oxygen sensor, and the transport box body is provided with a fish inlet on the top and a fish outlet on one side.
[0011] Further preferably, a separation net is fixedly installed in the live fish storage area, and the aeration assembly and the sensing assembly are located at the bottom of the separation net.
[0012] Further preferably, the input end of the circulating pump is connected to the water tank through a water inlet pipe, the output end of the water tank extends into the live fish storage area, the transport box body is connected to the water tank through a backflow pipe, and a filter box is arranged on the backflow pipe.
[0013] The embodiment of the utility model has the following advantages due to the adoption of the above technical scheme.
[0014] Firstly, the oxygenation pump, the aeration assembly, the compressor and the inlet pipe are matched with each other, the oxygenation pump can guide water into the shunt pipe through the communication pipe, the aeration assembly can generate uniform and fine bubbles, the dissolution efficiency of oxygen in water is improved, the stable oxygen delivery is ensured, the stress influence on fish is reduced, the dissolved oxygen sensor can monitor the dissolved oxygen concentration in water in real time, the oxygenation intensity is automatically adjusted through feedback control, the compressor can keep the water in the live fish storage area at a constant temperature, the water temperature is kept constant through the insulating layer, and the influence of temperature change on fish is prevented.
[0015] Secondly, the water tank, the circulating pump, the water inlet pipe, the filter box and the backflow pipe are matched with each other, the circulating pump can guide the water in the water tank into the live fish storage area through the water inlet pipe, the backflow pipe can guide the water in the live fish storage area into the water tank, the water in the water tank and the live fish storage area is circulated, fresh water source is provided for fish, waste and carbon dioxide generated by fish are removed, and the filter box can filter the waste in water.
[0016] The above summary is intended to illustrate the application and is not intended to be limiting thereof. In addition to the illustrative aspects, embodiments and features described above, further aspects, embodiments and features will become apparent to those skilled in the art from the drawings and the following detailed description. BRIEF DESCRIPTION OF DRAWINGS
[0017] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed to be used in the embodiments or the prior art description will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor on the basis of these drawings.
[0018] Figure 1 It is a perspective view of the appearance of the present application;
[0019] Figure 2 It is an internal structure view of the main body of the transport box of the present application;
[0020] Figure 3 It is an installation structure view of the live fish storage area and the equipment area of the present application;
[0021] Figure 4 It is a structure view of the aeration assembly of the present application.
[0022] Reference signs: 1, transport box main body; 101, fish inlet; 102, fish outlet; 103, heat preservation layer; 104, partition; 105, live fish storage area; 106, equipment area; 107, separation net; 108, induction assembly; 2, oxygenation pump; 201, communication pipe; 202, shunt pipe; 203, aeration assembly; 204, mounting plate; 205, limiting sleeve; 206, compressor; 207, import pipe; 3, water tank; 301, circulating pump; 302, water inlet pipe; 303, backflow pipe; 304, filter box. DETAILED DESCRIPTION
[0023] In the following, only some exemplary embodiments are simply described. As those skilled in the art can recognize, the described embodiments can be modified in various different ways without departing from the spirit or scope of the present application. Therefore, the drawings and the description are considered to be essentially exemplary rather than limiting.
[0024] The embodiments of the present application will be described in detail below with reference to the drawings.
[0025] As Figures 1-4The utility model discloses a kind of cave fish live transport cases, comprising: transport case main body 1, oxygenation pump 2 and water tank 3, the inner side of transport case main body 1 is fixedly installed with baffle 104, baffle 104 divides transport case main body 1 into live fish storage area 105 and equipment area 106 two parts, the inside oxygenation pump 2 of equipment area 106, the output of oxygenation pump 2 is communicated with shunt pipe 202, shunt pipe 202 is provided with aeration assembly 203 at top, the inside of live fish storage area 105 is provided with induction assembly 108, the inside equipment area 106 is fixedly installed with compressor 206, the output of compressor 206 extends to the inside of live fish storage area 105 by import pipe 207, the bottom of transport case main body 1 is fixedly installed with water tank 3, one side of water tank 3 is provided with circulating pump 301, the output of oxygenation pump 2 and shunt pipe 202 are connected by communicating pipe 201, the top of baffle 104 is fixedly installed with mounting plate 204, mounting plate 204 and shunt pipe 202 are fixedly installed by limiting sleeve 205.
[0026] Through oxygenation pump 2 can be guided into the inside of shunt pipe 202 by communicating pipe 201, by installing aeration assembly 203, can produce uniform fine bubble, promote the dissolution efficiency of oxygen in water, ensure that oxygen delivery is stable and reduce the stress influence to fish, by dissolved oxygen sensor, real-time monitoring dissolved oxygen concentration in water, and by feedback control automatic adjustment oxygenation intensity, simultaneously by compressor 206 can keep the water in live fish storage area 105 constant temperature, by heat preservation layer 103 keep water temperature constant, prevent external temperature change to fish.
[0027] With reference to Figure 3 The inner side of transport case main body 1 is provided with heat preservation layer 103, heat preservation layer 103 is filled with heat preservation material in the inside, heat preservation material can be polystyrene foam plastic or polyurethane foam, induction assembly 108 is temperature sensor and dissolved oxygen sensor, the top of transport case main body 1 is provided with fish inlet 101, one side of transport case main body 1 is provided with fish outlet 102.
[0028] Through heat preservation layer 103 keep water temperature constant, prevent external temperature change to fish, by dissolved oxygen sensor, real-time monitoring dissolved oxygen concentration in water, and by feedback control automatic adjustment oxygenation intensity, simultaneously by compressor 206 can keep the water in live fish storage area 105 constant temperature.
[0029] With reference to Figure 2The inside of the live fish storage area 105 is fixedly provided with a separation net 107, the aeration assembly 203 and the sensing assembly 108 are located at the bottom of the separation net 107, the input end of the circulating pump 301 is communicated with the water tank 3 through a water inlet pipe 302, the output end of the water tank 3 extends to the inside of the live fish storage area 105, and the water tank 3 and the transport box main body 1 are communicated through a backflow pipe 303, and the backflow pipe 303 is provided with a filter box 304.
[0030] The water in the live fish storage area 105 can be guided into the water tank 3 through the backflow pipe 303, the water in the water tank 3 and the live fish storage area 105 is circulated, fresh water is provided for the fish, waste and carbon dioxide generated by the fish are removed, and the filter box 304 can filter the waste in the water.
[0031] When the utility model works: through oxygenation pump 2 can utilize the communication pipe 201 guide into the inside of the shunt pipe 202, through installation aeration assembly 203, can produce even fine bubble, promote oxygen in water dissolution efficiency, ensure oxygen delivery stability reduce the influence of fish's stress, through dissolved oxygen sensor, real time monitoring water dissolved oxygen concentration, and through feedback control automatic adjustment oxygenation intensity, simultaneously through compressor 206 can keep the water in the live fish storage area 105 constant temperature, through heat preservation layer 103 keep water temperature constant, prevent the influence of temperature change to fish, through circulating pump 301 can the water of water tank 3 through water inlet pipe 302 guide into the inside of the live fish storage area 105, simultaneously utilize backflow pipe 303 can the water in the live fish storage area 105 guide into the inside of the water tank 3, the water in the water tank 3 and the live fish storage area 105 is circulated, fresh water is provided for the fish, waste and carbon dioxide generated by the fish are removed, and the filter box 304 can filter the waste in the water.
[0032] The above is only a specific embodiment of the utility model, but the protection scope of the utility model is not limited to this, any skilled person in the art can easily think of various changes or replacements within the technical range disclosed by the utility model, and these should be covered in the protection scope of the utility model. Therefore, the protection scope of the utility model should be subject to the protection scope of the claims.
Claims
1. A live cave fish transport case, characterized by: Including transportation box body (1), oxygenation pump (2) and water tank (3), the inner side of transportation box body (1) is fixedly installed with partition (104), the partition (104) divides transportation box body (1) into live fish storage area (105) and equipment area (106) two parts, the inside oxygenation pump (2) of equipment area (106), the output of oxygenation pump (2) is communicated with shunt pipe (202), the top of shunt pipe (202) is provided with aeration assembly (203), the inside of live fish storage area (105) is provided with induction assembly (108), the inside of equipment area (106) is fixedly installed with compressor (206), the output of compressor (206) extends to the inside of live fish storage area (105) through import pipe (207), the bottom of transportation box body (1) is fixedly installed with water tank (3), one side of water tank (3) is provided with circulating pump (301).
2. A live cave fish transport box according to claim 1, characterized in that: The output of the oxygenation pump (2) is communicated with the shunt pipe (202) through the communication pipe (201), the top of the partition (104) is fixedly installed with the mounting plate (204), and the mounting plate (204) and the shunt pipe (202) are fixedly installed through the limiting sleeve (205).
3. The live cave fish transport box according to claim 1, wherein: The inner side of the transportation box body (1) is provided with a thermal insulation layer (103), the inside of the thermal insulation layer (103) is filled with thermal insulation material, the thermal insulation material can be polystyrene foam plastic or polyurethane foam.
4. The live cave fish transport box according to claim 1, wherein: The induction assembly (108) is a temperature sensor and a dissolved oxygen sensor, the top of the transportation box body (1) is provided with a fish inlet (101), and one side of the transportation box body (1) is provided with a fish outlet (102).
5. The live cave fish transport box according to claim 1, wherein: The inside of the live fish storage area (105) is fixedly installed with a separation net (107), and the aeration assembly (203) and the induction assembly (108) are located at the bottom of the separation net (107).
6. The live cave fish transport box according to claim 1, wherein: The input of the circulating pump (301) is communicated with the water tank (3) through the water inlet pipe (302), the output of the water tank (3) extends to the inside of the live fish storage area (105), and the transportation box body (1) and the water tank (3) are communicated through the backflow pipe (303), and the backflow pipe (303) is provided with a filter box (304).
Citation Information
Patent Citations
Live fish transport case
CN220734061U