Culture pond with heat preservation device

The position of the oxygen-enhancing and insulation components is adjusted through the screw and motor-driven slider and mounting plate, combined with solar power supply and temperature sensor control, the problems of slow temperature increase and biological aggregation in the existing technology are solved, and the water temperature in the breeding pond is balanced and the growth environment is improved.

CN223207719UActive Publication Date: 2025-08-12WEIHAIDE MARINE BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422490056.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-15
Publication Date
2025-08-12
Estimated Expiration
2034-10-15

AI Technical Summary

Technical Problem

The heating device of the existing aquaculture pond cannot be adjusted, resulting in slow heating rate and water products easily gather at the bottom of the device, which is not conducive to growth.

Method used

The first and second screws are used to cooperate with the motor, and the position of the oxygen-enhancing insulation assembly is adjusted through the movement of the slider and the mounting plate, and the fan and heating wire are controlled by the solar panel power supply and the temperature sensor to achieve oxygenation and heating of different locations in the breeding pool.

Benefits of technology

The water temperature in the breeding pond is achieved to prevent the aggregation of water-generated substances, and to improve the heating rate and stability of the growth environment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a culture pond with a heat preservation device, which belongs to the technical field of aquaculture and comprises a culture pond body, a first motor is fixedly arranged at the inner end of the left side surface of the culture pond body, and a first lead screw is fixedly arranged at the output end of the first motor; according to the oxygen increasing and heat preserving device, the first lead screw and the second lead screw are arranged, the motor drives the first lead screw, so that the sliding block moves along the first lead screw, the effect of adjusting the left-right position of the sliding block is achieved, and therefore the effect of adjusting the left-right position of the oxygen increasing and heat preserving assembly installed on the transverse rod and the installation plate is achieved; the second lead screw drives the mounting plate to slide along the sliding groove, the effect of adjusting the inner and outer positions of the mounting plate and the oxygenation and heat preservation assembly is achieved, the oxygenation and heat preservation assembly can conduct oxygenation and temperature increasing on water at different positions in the culture pond body conveniently, temperature increasing is faster, the water temperature in the culture pond body can be more balanced, and the service life of the culture pond is prolonged. The situation of aquatic organism aggregation is prevented, and normal growth of aquatic organisms is guaranteed.
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Description

Technical Field

[0001] The utility model relates to the technical field of aquaculture, in particular to a culture pond with a heat preservation device. Background Art

[0002] In the aquaculture industry, water is the living environment of aquatic animals. The temperature of the water is a factor that must be considered for aquatic organisms. Water temperatures that are too low or too high are not conducive to the growth of aquatic organisms. Especially in winter, when the water temperature is too low, it will reduce the output of aquaculture.

[0003] As disclosed in the prior art, the patent with the authorization announcement number CN216254788U has designed an aquaculture pond oxygenation and heat preservation device. The device heats the air through a heating resistance wire to keep the aquaculture pond warm, thereby achieving oxygenation and heat preservation in the aquaculture pond, and ensuring aquaculture in the aquaculture pond during cold seasons. The air pump and the heating resistance wire are powered by electricity converted by solar photovoltaic panels. The device can be thrown into the aquaculture pond without any need for maintenance. It is highly practical, energy-saving, environmentally friendly, and functional, and is worthy of promotion and use.

[0004] However, the device heats the aquaculture pond by floating a leather float in the aquaculture pond. The leather float floats randomly on the water surface of the aquaculture pond, and the position of the leather float cannot be adjusted. As a result, when the water temperature in the aquaculture pond is adjusted, the water temperature in the aquaculture pond at a single position can be heated up. The heating speed is slow, and it is easy to cause aquatic organisms to gather at the bottom of the device, which is not conducive to the growth of aquatic organisms. Therefore, a aquaculture pond with a heat preservation device is designed to solve the above problems. Utility Model Content

[0005] The purpose of the present invention is to solve the problems existing in the above-mentioned background technology and to propose a breeding pond with a heat preservation device.

[0006] The technical problem to be solved by the present invention is to provide a breeding pond with a heat preservation device, so as to solve the problem in the prior art that the heating device cannot adjust its position when heating the water in the breeding pond, resulting in a slow heating speed and easily causing aquatic organisms to gather at the bottom of the device, which is not conducive to the growth of aquatic organisms.

[0007] The utility model provides a breeding pond with a heat preservation device, comprising a breeding pond body, a first motor, a first screw rod, a slider and a cross bar, wherein the first motor is fixedly provided at the inner end of the left surface of the breeding pond body, the first screw rod is fixedly provided at the output end of the first motor, the slider is threadedly connected on the first screw rod, rollers are installed at the four corners of the inner surface of the slider, the outer end of the slider is fixedly provided with a cross bar, a slide groove is provided on the cross bar, the inner end of the slide groove is fixedly provided with a second motor, the output end of the second motor is fixedly provided with a second screw rod, the second screw rod is threadedly connected with a mounting plate, and the mounting plate slides in the slide groove, the upper surface of the mounting plate is fixedly provided with a solar panel, the bottom surface of the mounting plate is fixedly provided with a battery, and the bottom surface of the mounting plate is installed with an oxygenation and heat preservation component.

[0008] Preferably, the roller rolls on the inner surface of the culture pond body.

[0009] Preferably, the vertical section of the mounting plate is in the shape of a "convex" character, and the upper portion of the mounting plate is embedded in the slide groove, and the lower portion of the mounting plate has the same width as the width of the crossbar.

[0010] Preferably, the oxygen enrichment and heat preservation component includes a mounting tube, a rubber tube, an aeration ball, a temperature sensor, an air inlet, a fan, a connecting rod, a heating ball and a heating wire. The mounting tube is fixedly arranged at the bottom of the mounting plate, and a rubber tube is sleeved on the bottom of the mounting tube. The bottom of the rubber tube is connected to the aeration ball, and a plurality of aeration holes are penetrated on the aeration ball. A temperature sensor is fixedly installed on the bottom of the aeration ball, and a plurality of air inlet holes are penetrated above the outer surface of the mounting tube. A fan is fixedly arranged on the lower inner side of the mounting tube. A heating ball is installed on the air inlet end of the aeration ball through a connecting rod, and a heating wire is fixedly arranged on the inside of the heating ball.

[0011] Preferably, a controller is fixedly provided on the bottom surface of the solar panel, and the controller is a PLC controller.

[0012] Preferably, the battery is connected to the solar panel, the first motor, the second motor, the temperature sensor, the fan, the heating wire and the controller wire.

[0013] Preferably, the center position of the aeration ball coincides with the spherical position of the heating ball, and the heating ball is located inside the aeration ball.

[0014] Compared with the prior art, the present invention has at least the following beneficial effects:

[0015] 1. The utility model is provided with a first screw rod and a second screw rod. The first motor drives the first screw rod to move the slider along the first screw rod to achieve the effect of adjusting the left and right position of the slider, thereby achieving the effect of adjusting the left and right positions of the oxygenation and heat-insulating assembly installed on the cross bar and the mounting plate. The second motor drives the second screw rod to rotate, and the second screw rod drives the mounting plate to slide along the slide groove to achieve the effect of adjusting the inner and outer positions of the mounting plate and the oxygenation and heat-insulating assembly, which facilitates the oxygenation and heat-insulating assembly to oxygenate and heat the water at different positions in the breeding pond body, heats up faster, and makes the water temperature in the breeding pond body more balanced, thereby preventing the occurrence of aquatic organisms gathering and ensuring the normal growth of aquatic organisms.

[0016] 2. The utility model is provided with an oxygenation and heat preservation component. When it is necessary to oxygenate the water in the breeding pond body, the controller controls the fan to be turned on. The fan blows the air in the installation pipe downward, blows it into the aeration ball through the rubber tube, and sprays it out from the aeration hole. The air contacts the water in the breeding pond body, thereby achieving the effect of increasing the temperature of the water in the breeding pond body. The first motor drives the first screw to rotate, and the second motor drives the second screw to rotate, thereby achieving the effect of adjusting the left and right position and the inside and outside position of the oxygenation and heat preservation component, thereby achieving the effect of oxygenating different positions in the breeding pond body.

[0017] 3. When the temperature sensor of the utility model senses that the water temperature in the breeding pond body is too low, the controller controls the electric heating wire to turn on, and the electric heating wire heats the heating ball. The heat on the heating ball is dissipated into the water in the breeding pond body, thereby achieving the effect of heating and keeping the water in the breeding pond body warm. The first motor drives the first screw rod to rotate, and the second motor drives the second screw rod to rotate, thereby achieving the effect of adjusting the left and right positions and the inside and outside positions of the oxygenation and heat preservation component, thereby achieving the effect of heating and keeping the water at different positions in the breeding pond body warm. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] To more clearly illustrate the specific embodiments of the present invention or the technical solutions in the prior art, the following briefly describes the drawings required for the specific embodiments or the description of the prior art. Similar elements or parts are generally identified by similar reference numerals throughout the drawings. Elements or parts in the drawings are not necessarily drawn to scale.

[0019] Figure 1 It is a three-dimensional schematic diagram of the overall structure of the utility model.

[0020] Figure 2 For this utility model Figure 1 A is an enlarged structural diagram.

[0021] Figure 3 It is a three-dimensional schematic diagram of the local structure of the utility model.

[0022] Figure 4 For this utility model Figure 3 Schematic diagram of the structure viewed from above.

[0023] Figure 5 This is a schematic diagram of the cross-sectional structure of the oxygen-enhancing and heat-insulating component of the utility model.

[0024] [reference numerals]

[0025] 1. Aquaculture pond body; 2. First motor; 3. First screw; 4. Slider; 401. Roller; 5. Crossbar; 501. Slide; 502. Second motor; 503. Second screw; 6. Mounting plate; 7. Solar panel; 701. Battery; 8. Mounting tube; 801. Rubber tube; 802. Aeration ball; 8021. Aeration hole; 803. Temperature sensor; 804. Air inlet; 805. Fan; 806. Connecting rod; 807. Heating ball; 808. Heating wire. DETAILED DESCRIPTION

[0026] Example:

[0027] like Figure 1-Figure 5 As shown, an embodiment of the present utility model provides a breeding pond with an insulation device, comprising a breeding pond body 1, a first motor 2, a first screw rod 3, a slider 4 and a cross bar 5. The first motor 2 is fixedly provided on the inner end of the left surface of the breeding pond body 1, and the first screw rod 3 is fixedly provided on the output end of the first motor 2. The slider 4 is threadedly connected to the first screw rod 3, and rollers 401 are installed at the four corners of the inner surface of the slider 4. The outer end of the slider 4 is fixedly provided with a cross bar 5, and a slide groove 501 is provided on the cross bar 5. The inner end of the slide groove 501 is fixedly provided with a second motor 502, and the output end of the second motor 502 is fixedly provided with a second screw rod 503. The second screw rod 503 is threadedly connected to a mounting plate 6, and the mounting plate 6 slides in the slide groove 501. The upper surface of the mounting plate 6 is fixedly provided with a solar cell panel 7, and the bottom surface is fixedly provided with a battery 701. The bottom surface of the mounting plate 6 is installed with an oxygenation and insulation component.

[0028] By providing a first screw rod 3 and a second screw rod 503, the first motor 2 drives the first screw rod 3, so that the slider 4 moves along the first screw rod 3, thereby achieving the effect of adjusting the left and right positions of the slider 4, thereby achieving the effect of adjusting the left and right positions of the oxygenation and heat preservation components installed on the cross bar 5 and the mounting plate 6, and the second motor 502 drives the second screw rod 503 to rotate, and the second screw rod 503 drives the mounting plate 6 to slide along the slide groove 501, thereby achieving the effect of adjusting the inner and outer positions of the mounting plate 6 and the oxygenation and heat preservation components, making it convenient for the oxygenation and heat preservation components to oxygenate and heat the water at different positions in the culture pond body 1, and heating faster, and making the water temperature in the culture pond body 1 more balanced, preventing the occurrence of aquatic organisms gathering, and ensuring the normal growth of aquatic organisms.

[0029] In this embodiment, the roller 401 rolls on the inner surface of the culture pond body 1 to ensure that the slider 4 moves stably along the first screw rod 3 and reduce the friction between the slider 4 and the culture pond body 1.

[0030] In this embodiment, the vertical section of the mounting plate 6 is in the shape of a "convex" character, and the upper portion of the mounting plate 6 is embedded in the slide groove 501. The lower width of the mounting plate 6 is the same as the width of the cross bar 5, ensuring that the mounting plate 6 slides stably in the slide groove 501.

[0031] In this embodiment, the oxygenation and heat preservation component includes a mounting tube 8, a rubber tube 801, an aeration ball 802, a temperature sensor 803, an air inlet 804, a fan 805, a connecting rod 806, a heating ball 807 and a heating wire 808. The mounting tube 8 is fixedly arranged at the bottom of the mounting plate 6. The bottom of the mounting tube 8 is sleeved with a rubber tube 801. The bottom of the rubber tube 801 is connected to the aeration ball 802. A plurality of aeration holes 8021 are penetrated on the aeration ball 802. The bottom of the aeration ball 802 is fixedly installed with a temperature sensor 803. A plurality of air inlet holes 804 are penetrated above the outer surface of the mounting tube 8. A fan 805 is fixedly arranged on the lower inner side of the mounting tube 8. The air inlet end of the aeration ball 802 is installed with a heating ball 807 through a connecting rod 806. The inner side of the heating ball 807 is fixed with a heating wire 808.

[0032] In this embodiment, a controller is fixedly provided on the bottom surface of the solar cell panel 7, and the controller is a PLC controller.

[0033] In this embodiment, the battery 701 is connected to the solar panel 7, the first motor 2, the second motor 502, the temperature sensor 803, the fan 805, the heating wire 808 and the controller wires, so that the controller can control the first motor 2, the second motor 502, the fan 805 and the heating wire 808 to turn on and off.

[0034] In this embodiment, the center position of the aeration ball 802 coincides with the spherical position of the heating ball 807 , and the heating ball 807 is located inside the aeration ball 802 , which facilitates rapid discharge of gas from the aeration holes 8021 on the aeration ball 802 .

[0035] By providing an oxygenation and heat preservation component, when it is necessary to oxygenate the water in the culture pond body 1, the controller controls the fan 805 to be turned on, and the fan 805 blows the air in the installation pipe 8 downward, blows it into the aeration ball 802 through the rubber tube 801, and sprays it out from the aeration hole 8021. The air contacts the water in the culture pond body 1, thereby achieving the effect of increasing the temperature of the water in the culture pond body 1. The first motor 2 drives the first screw rod 3 to rotate, and the second motor 502 drives the second screw rod 503 to rotate, thereby achieving the effect of adjusting the left and right position and the inside and outside position of the oxygenation and heat preservation component, thereby achieving the effect of oxygenating different positions in the culture pond body 1;

[0036] When the temperature sensor 803 senses that the water temperature in the breeding pond body 1 is too low, the controller controls the heating wire 808 to turn on, and the heating wire 808 heats the heating ball 807. The heat on the heating ball 807 is dissipated into the water in the breeding pond body 1, thereby achieving the effect of heating and keeping the water in the breeding pond body 1 warm. The first motor 2 drives the first screw rod 3 to rotate, and the second motor 502 drives the second screw rod 503 to rotate, thereby achieving the effect of adjusting the left and right positions and the inside and outside positions of the oxygenation and heat preservation component, thereby achieving the effect of heating and keeping the water at different positions in the breeding pond body 1 warm.

[0037] The above is only a preferred embodiment of the present invention. It should be pointed out that for those skilled in the art, several modifications and improvements can be made without departing from the concept of the present invention. These should also be regarded as the scope of protection of the present invention. These will not affect the effect of the implementation of the present invention and the practicality of the patent.

Claims

1. A breeding pond with a heat preservation device, characterized in that: The invention comprises a culture pond body (1), a first motor (2), a first screw rod (3), a slider (4) and a cross bar (5), wherein the first motor (2) is fixedly provided on the inner end of the left surface of the culture pond body (1), the first screw rod (3) is fixedly provided on the output end of the first motor (2), the slider (4) is threadedly connected on the first screw rod (3), rollers (401) are installed at the four corners of the inner surface of the slider (4), the cross bar (5) is fixedly provided on the outer end of the slider (4), and the cross bar (5) is provided with a roller (401) A chute (501) is provided, wherein a second motor (502) is fixedly provided at the inner end of the chute (501), a second screw rod (503) is fixedly provided at the output end of the second motor (502), a mounting plate (6) is threadedly connected to the second screw rod (503), and the mounting plate (6) slides in the chute (501), a solar cell panel (7) is fixedly provided on the upper surface of the mounting plate (6), a battery (701) is fixedly provided on the bottom surface of the mounting plate (6), and an oxygenation and heat preservation component is installed on the bottom surface of the mounting plate (6).

2. The aquaculture pond with a heat preservation device according to claim 1, characterized in that: The roller (401) rolls on the inner surface of the culture pond body (1).

3. The aquaculture pond with a heat preservation device according to claim 2, characterized in that: The vertical section of the mounting plate (6) is in the shape of a "convex" character, and the upper portion of the mounting plate (6) is embedded in the slide groove (501), and the lower portion of the mounting plate (6) has the same width as the crossbar (5).

4. The aquaculture pond with a heat preservation device according to claim 3, characterized in that: The oxygenation and heat preservation assembly comprises a mounting tube (8), a rubber tube (801), an aeration ball (802), a temperature sensor (803), an air inlet (804), a fan (805), a connecting rod (806), a heating ball (807) and a heating wire (808), wherein the mounting tube (8) is fixedly arranged at the bottom of the mounting plate (6), the bottom of the mounting tube (8) is sleeved with a rubber tube (801), the bottom of the rubber tube (801) is connected to the aeration ball (802), and the aeration ball ( 802) is provided with a plurality of aeration holes (8021), a temperature sensor (803) is fixedly installed at the bottom of the aeration ball (802), a plurality of air inlet holes (804) are provided above the outer surface of the mounting tube (8), a fan (805) is fixedly installed at the lower inner side of the mounting tube (8), a heating ball (807) is installed at the air inlet end of the aeration ball (802) through a connecting rod (806), and a heating wire (808) is fixedly installed inside the heating ball (807).

5. The aquaculture pond with a heat preservation device according to claim 4, characterized in that: A controller is fixedly provided on the bottom surface of the solar cell panel (7), and the controller is a PLC controller.

6. The aquaculture pond with a heat preservation device according to claim 5, characterized in that: The storage battery (701) is connected to the solar panel (7), the first motor (2), the second motor (502), the temperature sensor (803), the fan (805), the heating wire (808) and the controller wires.

7. The aquaculture pond with a heat preservation device according to claim 6, characterized in that: The center position of the aeration ball (802) coincides with the spherical position of the heating ball (807), and the heating ball (807) is located inside the aeration ball (802).