Efficient oxygen dissolving device for weever culture

By designing a highly efficient dissolved oxygen device including a main mechanism and an auxiliary mechanism, using an oxygen sensor and an automatic oxygen production system, the problems of low dissolved oxygen efficiency and frequent inspections in the prior art are solved, automatic detection and improvement of dissolved oxygen amount are achieved, and the efficiency of perch breeding is significantly improved.

CN222869679UActive Publication Date: 2025-05-16GAOCHUN DISTRICT BREEDING TECHNOLOGY ASSOCIATION
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Patent Information

Application Number
CN202421919265.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-09
Publication Date
2025-05-16
Estimated Expiration
2034-08-09

AI Technical Summary

Technical Problem

The existing high-efficiency dissolved oxygen device for bass farming has low dissolved oxygen efficiency when used, and breeders need to frequently check the dissolved oxygen in the pool and increase oxygen in time.

Method used

An efficient dissolved oxygen device including a main mechanism and an auxiliary mechanism is designed. The main mechanism includes a support base, an oxygen-making assembly and an oxygen-dissolving tank. The dissolved oxygen in the water is detected through an oxygen sensor. When the dissolved oxygen is low, the oxygen-making assembly is automatically started. The oxygen-making assembly is mixed with water through a pump and a water-sink filler to improve the dissolved oxygen efficiency. The auxiliary mechanism facilitates monitoring by the observation window and liquid level indicator strip, and the water pump 2 is used to discharge the mixed oxygen water into the aquaculture pool.

Benefits of technology

The device can automatically detect and increase the dissolved oxygen amount, significantly improve the efficiency of dissolved oxygen, reduce the inspection frequency of breeders, and improve the efficiency and practicality of bass farming.

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Abstract

The utility model relates to the technical field of weever culture, and discloses an efficient oxygen dissolving device for weever culture, which comprises a main body mechanism and an auxiliary mechanism, and the auxiliary mechanism is positioned at the outer end of the main body mechanism. According to the efficient oxygen dissolving device for weever culture, through installation of the main body mechanism, in the using process of the oxygen dissolving device, an oxygen sensor is put into water, the oxygen sensor is used for detecting the dissolved oxygen amount in the water, and when the dissolved oxygen amount is low, the controller automatically controls the oxygen generation assembly to be started; a first water suction pump sucks water in a culture pond into the oxygen dissolving tank through a first water suction pipe, the water and oxygen sprayed by the aeration head are mixed together and finally discharged into the culture pond, the sprayed water is splashed into tiny water drops or water films for multiple times through the arrangement of the water spraying filler, the water drops or water films can be well mixed with the oxygen, the oxygen dissolving efficiency is greatly improved, and the oxygen dissolving effect is improved. According to the efficient oxygen dissolving device for weever culture, oxygen can be automatically increased, the working efficiency is improved, and the practicability of the efficient oxygen dissolving device for weever culture is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of seabass breeding, in particular to a high-efficiency dissolved oxygen device used for seabass breeding. Background Art

[0002] In the breeding of sea bass, the most important thing is dissolved oxygen. In the breeding pond of sea bass, the dissolved oxygen content in the pond is closely related to the breeding effect of sea bass. Too low dissolved oxygen will lead to an increase in the mortality rate of sea bass breeding, especially when it rains, the oxygen content in the water decreases, and the sea bass will swim upwards or even jump out of the water in order to obtain enough oxygen, which is not conducive to the breeding of sea bass.

[0003] The existing CN220326561U patent document proposes an efficient dissolved oxygen device for sea bass farming, which includes a support plate, four buoyancy plates are arranged under the support plate, a connecting pump assembly is connected to the support plate, and the connecting pump assembly is connected to a mixing connection box through an intermediate pipe. The efficient dissolved oxygen device for sea bass farming is provided with a driving assembly, a rotating shaft, an oxygenation pump, a rotating pressure plate, a drain pipe, a suction pipe, a pin shaft and a coil spring. When the raised position on the surface of the rotating pressure plate rotates close to the drain pipe, the drain pipe is squeezed and swung around the pin shaft. When the raised position on the surface of the rotating pressure plate rotates away from the drain pipe, the coil spring drives the drain pipe to reset, and the oxygenation pump completes oxygenation of the water in the mixing connection box and continuously discharges it through the swinging drain pipe. The swinging drain pipe has a large radiation range, and the swinging process has a certain disturbance effect on the water flow, thereby increasing the exchange flow and oxygenation efficiency of the water flow.

[0004] However, since the prior art patent technology with publication number CN220326561U has a low dissolved oxygen efficiency when in use, in order to increase oxygen in time, the breeding staff needs to frequently check the dissolved oxygen content in the perch breeding pond. Utility Model Content

[0005] The utility model aims to provide a high-efficiency dissolved oxygen device for seabass breeding, so as to solve the problem that the dissolved oxygen efficiency is low and the breeding staff need to frequently check the dissolved oxygen content in the seabass breeding pond in order to increase oxygen in time.

[0006] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: an efficient dissolved oxygen device for sea bass farming, comprising a main mechanism and an auxiliary mechanism, wherein the auxiliary mechanism is located at the outer end of the main mechanism, the main mechanism comprises a support seat, an oxygen production component and an oxygen dissolving tank, wherein the oxygen production component is fixedly mounted on the upper end of the support seat, and the oxygen dissolving tank is fixedly mounted on the right end of the oxygen production component;

[0007] Preferably, the main structure also includes a water pump, a water pipe, a water sprinkling filler, a controller, a connecting line and an oxygen sensor. The water pump is fixedly installed on the right end of the dissolved oxygen tank, the water pipe is fixedly installed on the right end of the water pump, the water sprinkling filler is fixedly installed inside the dissolved oxygen tank, the controller is fixedly installed on the outer end of the dissolved oxygen tank, the connecting line is fixedly installed on the lower end of the controller, and the oxygen sensor is fixedly installed on the lower end of the connecting line. During the use of the dissolved oxygen device, the oxygen sensor is put into the water, and the dissolved oxygen content in the water is detected by the oxygen sensor. When the dissolved oxygen content is low, the controller automatically controls the oxygen production component to start, and then the water pump draws the water in the breeding pond into the dissolved oxygen tank through the water pipe, so that the water and the oxygen sprayed from the aeration head are mixed together and finally discharged into the breeding pond. Through the setting of the water sprinkling filler, the sprayed water is splashed multiple times to become fine water droplets or water films, which can be well mixed with oxygen, greatly improving the efficiency of dissolved oxygen. The device can automatically increase oxygen to improve the work efficiency.

[0008] Preferably, the oxygen production assembly includes an oxygen generator, an oxygen supply pipe and an aeration head, and the oxygen generator is fixedly mounted on the upper end of the support base.

[0009] Preferably, the oxygen supply pipe is fixedly installed on the upper end of the oxygen generator, and the aeration head is fixedly installed on the upper end of the oxygen supply pipe. The oxygen generator can produce oxygen, which is then transported into the dissolved oxygen tank through the oxygen supply pipe and sprayed out through the aeration head to mix oxygen and water.

[0010] Preferably, the auxiliary mechanism includes an observation window, a liquid level indicator bar, a second water pump, a second water pump pipe and a drain pipe. The observation window is fixedly installed on the outer end of the dissolved oxygen tank. The setting of the observation window makes it convenient for staff to check the working conditions inside the dissolved oxygen tank.

[0011] Preferably, the liquid level indicator bar is fixedly arranged at the outer end of the observation window, and the second water pump is fixedly installed at the right end of the dissolved oxygen tank. The liquid level indicator bar makes it convenient for the staff to check the water level.

[0012] Preferably, the second pumping pipe is fixedly installed on the left end of the second pumping pump, and the second drain pipe is fixedly installed on the right end of the second pumping pump. The second pumping pump can be used to pump out the water mixed with oxygen in the dissolved oxygen tank through the second pumping pipe, and discharge it into the sea bass breeding pond through the drain pipe, thereby increasing the dissolved oxygen content in the breeding pond.

[0013] Compared with the prior art, the beneficial effects of the utility model are:

[0014] 1. The high-efficiency dissolved oxygen device for sea bass breeding, through the installation of the main mechanism, realizes that during the use of the dissolved oxygen device, the oxygen sensor is put into the water, and the dissolved oxygen content in the water is detected by the oxygen sensor. When the dissolved oxygen content is low, the controller automatically controls the oxygen production component to start, and then the water pump pumps the water in the breeding pond into the dissolved oxygen tank through the water pumping pipe, so that the water and the oxygen sprayed by the aeration head are mixed together, and finally discharged into the breeding pond. Through the setting of the water spraying filler, the sprayed water is splashed multiple times to become tiny water droplets or water films, which can be well mixed with oxygen, greatly improving the efficiency of dissolved oxygen. The device can automatically increase oxygen to improve the work efficiency, and improve the practicality of the high-efficiency dissolved oxygen device for sea bass breeding;

[0015] 2. The high-efficiency dissolved oxygen device for seabass breeding, through the installation of auxiliary mechanisms, realizes the setting of an observation window, which is convenient for staff to check the working conditions inside the dissolved oxygen tank. The liquid level indicator bar is convenient for staff to check the water level. The water mixed with oxygen in the dissolved oxygen tank can be pumped out through the water pump pipe 2 by the second water pump, and discharged into the seabass breeding pond through the drainage pipe, so that the dissolved oxygen content in the breeding pond is increased, thereby improving the use effect of the high-efficiency dissolved oxygen device for seabass breeding. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a schematic diagram of the three-dimensional structure of the utility model;

[0017] Figure 2 This is a schematic diagram of the cross-sectional structure of the utility model;

[0018] Figure 3 It is a schematic diagram of the structure of the main mechanism of the utility model;

[0019] Figure 4 It is a schematic diagram of the cross-sectional structure of the utility model.

[0020] In the figure: 1. Main body; 101. Support seat; 102. Oxygen generator; 1021. Oxygen generator; 1022. Oxygen supply pipe; 1023. Aeration head; 103. Dissolved oxygen tank; 104. Water pump 1; 105. Water pipe 1; 106. Water spraying filler; 107. Controller; 108. Connecting wire; 109. Oxygen sensor; 2. Auxiliary mechanism; 201. Observation window; 202. Liquid level indicator strip; 203. Water pump 2; 204. Water pipe 2; 205. Drain pipe. DETAILED DESCRIPTION

[0021] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.

[0022] See also Figure 1-Figure 4 The utility model provides a technical solution: an efficient dissolved oxygen device for sea bass farming, comprising a main mechanism 1 and an auxiliary mechanism 2, the auxiliary mechanism 2 is located at the outer end of the main mechanism 1, the main mechanism 1 comprises a support seat 101, an oxygen production component 102 and a dissolved oxygen tank 103, the oxygen production component 102 is fixedly installed on the upper end of the support seat 101, and the dissolved oxygen tank 103 is fixedly installed on the right end of the oxygen production component 102.

[0023] The main body 1 also includes a water pump 104, a water pipe 105, a water filling 106, a controller 107, a connecting line 108 and an oxygen sensor 109. The water pump 104 is fixedly installed at the right end of the dissolved oxygen tank 103, the water pipe 105 is fixedly installed at the right end of the water pump 104, the water filling 106 is fixedly installed inside the dissolved oxygen tank 103, the controller 107 is fixedly installed at the outer end of the dissolved oxygen tank 103, the connecting line 108 is fixedly installed at the lower end of the controller 107, and the oxygen sensor 109 is fixedly installed at the lower end of the connecting line 108. The oxygen production component 102 includes an oxygen generator 1021, an oxygen supply pipe 1022 and an aeration head 1023. The oxygen generator 1021 is fixedly installed at the support base 101. At the upper end, the oxygen supply pipe 1022 is fixedly installed on the upper end of the oxygen generator 1021, and the aeration head 1023 is fixedly installed on the upper end of the oxygen supply pipe 1022. During the use of the dissolved oxygen device, the oxygen sensor 109 is put into the water, and the dissolved oxygen content in the water is detected by the oxygen sensor 109. When the dissolved oxygen content is low, the controller 107 automatically controls the oxygen production component 102 to start, and then the water pump 104 pumps the water in the breeding pond into the dissolved oxygen tank 103 through the water pumping pipe 105, so that the water and the oxygen sprayed by the aeration head 1023 are mixed together, and finally discharged into the breeding pond. Through the setting of the water spraying filler 106, the sprayed water is splashed multiple times to become tiny water droplets or water films, which can be well mixed with oxygen, thereby greatly improving the efficiency of dissolved oxygen.

[0024] The auxiliary mechanism 2 includes an observation window 201, a liquid level indicator bar 202, a second water pump 203, a second water pumping pipe 204 and a drain pipe 205. The observation window 201 is fixedly installed at the outer end of the dissolved oxygen tank 103, the liquid level indicator bar 202 is fixedly installed at the outer end of the observation window 201, the second water pump 203 is fixedly installed at the right end of the dissolved oxygen tank 103, the second water pumping pipe 204 is fixedly installed at the left end of the second water pump 203, and the drain pipe 205 is fixedly installed at the right end of the second water pump 203. The setting of the observation window 201 is convenient for the staff to check the working conditions inside the dissolved oxygen tank 103, and the liquid level indicator bar 202 is convenient for the staff to check the water level. The second water pump 203 can be used to pump out the water mixed with oxygen in the dissolved oxygen tank 103 through the second water pumping pipe 204, and discharge it into the perch breeding pond through the drain pipe 205, so as to increase the dissolved oxygen content in the breeding pond.

[0025] Working principle: During the use of the dissolved oxygen device, the oxygen sensor 109 is put into the water, and the oxygen sensor 109 is used to detect the dissolved oxygen content in the water. When the dissolved oxygen content is low, the controller 107 automatically controls the oxygen production component 102 to start, and then the water pump 104 pumps the water in the breeding pond into the dissolved oxygen tank 103 through the water pumping pipe 105, so that the water and the oxygen sprayed by the aeration head 1023 are mixed together, and finally discharged into the breeding pond. Through the setting of the water spraying filler 106, the sprayed water is splashed many times to become tiny water droplets or water films, which can be well mixed with oxygen, greatly improving the efficiency of dissolved oxygen. Through the setting of the observation window 201, it is convenient for the staff to check the working conditions inside the dissolved oxygen tank 103, and the liquid level indicator bar 202 is convenient for the staff to check the water level. The water mixed with oxygen in the dissolved oxygen tank 103 can be pumped out by the water pump 203 through the water pump 204, and discharged into the perch breeding pond through the drain pipe 205, so that the dissolved oxygen content in the breeding pond is increased.

[0026] Finally, it should be noted that the above content is only used to illustrate the technical solution of the utility model, rather than to limit the protection scope of the utility model. Simple modifications or equivalent substitutions of the technical solution of the utility model by ordinary technicians in this field do not deviate from the essence and scope of the technical solution of the utility model.

Claims

1. A high-efficiency dissolved oxygen device for sea bass farming, comprising a main mechanism (1) and an auxiliary mechanism (2), characterized in that: The auxiliary mechanism (2) is located at the outer end of the main mechanism (1); the main mechanism (1) comprises a support base (101), an oxygen production component (102) and an oxygen dissolving tank (103); the oxygen production component (102) is fixedly mounted on the upper end of the support base (101); and the oxygen dissolving tank (103) is fixedly mounted on the right end of the oxygen production component (102); The main body (1) further comprises a water pump (104), a water pump pipe (105), a water spray filler (106), a controller (107), a connecting line (108) and an oxygen sensor (109); the water pump (104) is fixedly mounted on the right end of the dissolved oxygen tank (103); the water pump pipe (105) is fixedly mounted on the right end of the water pump (104); the water spray filler (106) is fixedly mounted inside the dissolved oxygen tank (103); the controller (107) is fixedly mounted on the outer end of the dissolved oxygen tank (103); the connecting line (108) is fixedly mounted on the lower end of the controller (107); and the oxygen sensor (109) is fixedly mounted on the lower end of the connecting line (108).

2. The high-efficiency dissolved oxygen device for seabass farming according to claim 1, characterized in that: The oxygen production component (102) comprises an oxygen generator (1021), an oxygen supply pipe (1022) and an aeration head (1023); the oxygen generator (1021) is fixedly mounted on the upper end of the support base (101).

3. The high-efficiency dissolved oxygen device for seabass farming according to claim 2, characterized in that: The oxygen supply pipe (1022) is fixedly mounted on the upper end of the oxygen generator (1021), and the aeration head (1023) is fixedly mounted on the upper end of the oxygen supply pipe (1022).

4. The high-efficiency dissolved oxygen device for seabass farming according to claim 3, characterized in that: The auxiliary mechanism (2) comprises an observation window (201), a liquid level indicator bar (202), a second water pump (203), a second water pump pipe (204) and a drainage pipe (205); the observation window (201) is fixedly mounted on the outer end of the dissolved oxygen tank (103).

5. The high-efficiency dissolved oxygen device for seabass farming according to claim 4, characterized in that: The liquid level indicator bar (202) is fixedly arranged at the outer end of the observation window (201), and the second water pump (203) is fixedly installed at the right end of the dissolved oxygen tank (103).

6. The high-efficiency dissolved oxygen device for seabass farming according to claim 5, characterized in that: The second water pumping pipe (204) is fixedly installed at the left end of the second water pumping pump (203), and the drainage pipe (205) is fixedly installed at the right end of the second water pumping pump (203).

Citation Information

Patent Citations

  • Efficient oxygen dissolving device for weever culture

    CN220326561U