CN212787065U - Automatic photovoltaic water circulating device for fishpond - Google Patents

Automatic photovoltaic water circulating device for fishpond Download PDF

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Publication number
CN212787065U
CN212787065U CN202020074612.6U CN202020074612U CN212787065U CN 212787065 U CN212787065 U CN 212787065U CN 202020074612 U CN202020074612 U CN 202020074612U CN 212787065 U CN212787065 U CN 212787065U
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water
installation
heating cabinet
box
rose box
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CN202020074612.6U
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Chinese (zh)
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张沛沛
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Tianjin Huanbei Industrial Automation Technology Co ltd
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Tianjin Huanbei Industrial Automation Technology Co ltd
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Abstract

The utility model discloses a pond photovoltaic automatic cycle water installation raises fishes, including base, installation storehouse, heating cabinet and rose box, the installation storehouse is installed at the top of base, the internally mounted in installation storehouse has the heating cabinet, the rose box is installed to the one end at installation storehouse top, and the one end of keeping away from the rose box at installation storehouse top installs solar cell panel, the internally mounted of rose box has the filter screen, and the top of rose box installs the water pump, the aqueduct that extends to rose box inside is installed to the output of water pump, and the input of water pump installs the inlet tube. The utility model discloses install heating cabinet, pivot, stirring vane and motor, pond water gets into the inside back of heating cabinet, and the motor drives stirring vane through the pivot and rotates, stirs pond water, and the aspiration pump lets in the heating cabinet with the outside air inside, can make the oxygen in the air fully dissolve in the pond water through stirring, is favorable to improving oxygenation efficiency.

Description

Automatic photovoltaic water circulating device for fishpond
Technical Field
The utility model relates to a fishery cultured equipment technical field specifically is a pond photovoltaic automatic cycle water installation breeds fish.
Background
The aquaculture, also called aquaculture, means that in the fishpond opened by manpower on the shore, fishes or various seafoods are cultivated for eating, in order to maintain the water quality inside the fishpond, the water is often heated by an automatic circulating water device and subjected to an oxygenation process to ensure that the water quality is suitable for the growth of fishes, the existing photovoltaic automatic circulating water device for the fishpond cannot filter the pond water in advance and filter impurities in the pond water when in use, in addition, the prior photovoltaic automatic circulating water device for the fishpond directly heats the pond water through the heating plate, the pond water is not easy to be heated uniformly, the heating effect is influenced, simultaneously, current fishpond photovoltaic automatic cycle water installation is when carrying out the oxygenation to the pond water, directly lets in the pond aquatic with outside air, and oxygen in the air can not fully be dissolved in the pond water for oxygenation efficiency greatly reduced.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a fishpond photovoltaic automatic cycle water installation to solve the problem that proposes in the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: a photovoltaic automatic water circulating device for a fishpond comprises a base, an installation bin, a heating box and a filter box, wherein the installation bin is installed at the top of the base, the heating box is installed inside the installation bin, the filter box is installed at one end of the top of the installation bin, a solar cell panel is installed at one end, far away from the filter box, of the top of the installation bin, a filter screen is installed inside the filter box, a water pump is installed at the top of the filter box, a water guide pipe extending into the filter box is installed at the output end of the water pump, a water inlet pipe is installed at the input end of the water pump, an oxygen concentration sensor is installed at the bottom, close to one end of the base, of the water inlet pipe, a temperature sensor is installed at the bottom, far away from one end of the base, a water guide pipe extending into the heating box is installed at the bottom, close to one end, the solar photovoltaic solar energy photovoltaic controller is installed on the bottom of the interior of the installation bin, the electric heating wire is wound on the outer side of the heating box, the motor is installed on the end, far away from the filter box, of the installation bin, the air suction pump is installed on the top of the end, far away from the filter box, of the installation bin, the air guide pipe extending to the interior of the installation bin is installed on the output end of the air suction pump, the output end of the solar energy, the output end of the storage battery is respectively and electrically connected with the input ends of the temperature sensor, the oxygen concentration sensor, the electric heating wire, the solar photovoltaic controller, the water pump, the air suction pump, the single chip microcomputer and the motor through wires.
Preferably, the output end of the motor is provided with a rotating shaft extending to the inside of the heating box, and the outer side of the rotating shaft is uniformly provided with stirring blades.
Preferably, one end that the heating cabinet top is close to the motor is installed one-way admission valve, one-way admission valve's output passes through pipe and heating cabinet intercommunication, and one-way admission valve's input passes through pipe and air duct intercommunication.
Preferably, a box door is installed on one side of the filter box, and a transparent observation window is arranged on the box door.
Preferably, a bin door is installed on one side of the installation bin, and a handle is installed on the outer side of the bin door.
Preferably, the bottom that motor one end was kept away from to the heating cabinet is installed and is extended to the outside outlet pipe in installation storehouse, and the outside cover of outlet pipe is equipped with the heat preservation.
Compared with the prior art, the beneficial effects of the utility model are that:
1. the photovoltaic automatic circulating water device for the fishpond is provided with the filter box and the filter screen, when the photovoltaic automatic circulating water device is used, the water pump pumps pond water into the filter box, and impurities in the pond water are filtered through the filter screen, so that the pond water can be filtered, the cleanness of the pond water can be kept, and the internal blockage of the device caused by the impurities in the pond water can be avoided;
2. the photovoltaic automatic water circulating device for the fishpond is provided with the heating box, the rotating shaft, the stirring blades and the motor, after pond water enters the heating box, the motor drives the stirring blades to rotate through the rotating shaft to stir the pond water, the air pump introduces outside air into the heating box, and oxygen in the air can be fully dissolved in the pond water through stirring, so that the oxygenation efficiency can be improved;
3. this pond photovoltaic automatic circulating water device raises fish pond is around being equipped with electric heating wire in the outside of heating cabinet, can stir pond water through stirring vane to the heating cabinet thermally equivalent, can make pond water abundant with the heating cabinet inner wall contact heating, is favorable to heating the pond water evenly, improves the heating effect.
Drawings
Fig. 1 is a schematic front sectional view of the present invention;
fig. 2 is a schematic front view of the present invention;
fig. 3 is a schematic diagram of the circuit control of the present invention.
In the figure: 1. a temperature sensor; 2. a base; 3. an oxygen concentration sensor; 4. installing a bin; 5. a water outlet pipe; 6. a heating box; 7. a rotating shaft; 8. a stirring blade; 9. an electric heating wire; 10. a solar photovoltaic controller; 11. a filter box; 12. a filter screen; 13. a water inlet pipe; 14. a water pump; 15. a water conduit; 16. a water conduit; 17. solar panels; 18. an air pump; 19. a single chip microcomputer; 20. a storage battery; 21. an air duct; 22. a one-way intake valve; 23. an electric motor.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-3, the present invention provides an embodiment: a photovoltaic automatic water circulating device for a fishpond comprises a base 2, an installation bin 4, a heating box 6 and a filter box 11, wherein the installation bin 4 is installed at the top of the base 2, the heating box 6 is installed inside the installation bin 4, the filter box 11 is installed at one end of the top of the installation bin 4, a solar cell panel 17 is installed at one end, far away from the filter box 11, of the top of the installation bin 4, a filter screen 12 is installed inside the filter box 11, a water pump 14 is installed at the top of the filter box 11, the type of the water pump 14 can be ISGD, a water guide pipe 15 extending into the filter box 11 is installed at the output end of the water pump 14, a water inlet pipe 13 is installed at the input end of the water pump 14, an oxygen concentration sensor 3 is installed at the bottom, close to one end of the base 2, the type of the oxygen concentration sensor 3 can be CN61M, and, the model of the temperature sensor 1 can be DS18B20, the bottom of one end of the filter box 11 close to the solar cell panel 17 is provided with a water conduit 16 extending into the heating box 6, one end of the inside of the installation bin 4 close to the filter box 11 is provided with a single chip microcomputer 19, the model of the single chip microcomputer 19 can be AT89C51, one end of the inside of the installation bin 4 close to the solar cell panel 17 is provided with a storage battery 20, the outer side of the heating box 6 is wound with an electric heating wire 9, one end of the installation bin 4 far away from the filter box 11 is provided with a motor 23, the model of the motor 23 can be Y90S-2, one end of the inside of the installation bin 4 close to the filter box 11 is provided with a solar photovoltaic controller 10, the model of the solar photovoltaic controller 10 can be YX-K240, the top of the installation bin 4 far away from one end of the filter box 11 is provided with an air pump 18, the model of the air pump 18 can be VCH1028, the output, the output of solar photovoltaic panel 17 is connected with the input electricity of battery 20 through solar photovoltaic controller 10, the output of temperature sensor 1 passes through the wire and 19 input electric connection of singlechip, the output of oxygen concentration sensor 3 passes through the wire and 19 input electric connection of singlechip, 19 the output of singlechip passes through the wire respectively with electric heating wire 9, water pump 14, the input electric connection of aspiration pump 18 and motor 23, the output of battery 20 passes through the wire respectively with temperature sensor 1, oxygen concentration sensor 3, electric heating wire 9, solar photovoltaic controller 10, water pump 14, aspiration pump 18, singlechip 19 and 23's input electricity is connected.
In this implementation:
further, the pivot 7 that extends to 6 inside of heating cabinet is installed to motor 23's output, and evenly installs stirring vane 8 in the outside of pivot 7, and motor 23 drives stirring vane 8 through pivot 7 and rotates, stirs pond water, and inside air pump 18 let in the heating cabinet 6 with the ambient air, can make the oxygen in the air fully dissolve in the pond water through stirring, is favorable to improving oxygenation efficiency.
Furthermore, one end of the top of the heating box 6, which is close to the motor 23, is provided with a one-way air inlet valve 22, the output end of the one-way air inlet valve 22 is communicated with the heating box 6 through a conduit, and the input end of the one-way air inlet valve 22 is communicated with the air duct 21 through a conduit, so that the air inside the heating box 6 can be prevented from leaking out of the air duct 21.
Furthermore, a box door is installed on one side of the filter box 11, and a transparent observation window is arranged on the box door, so that the filter screen 12 can be cleaned conveniently.
Further, a bin door is installed on one side of the installation bin 4, and a handle is installed on the outer side of the bin door, so that the inside of the installation bin 4 can be conveniently overhauled.
Further, the bottom that motor 23 one end was kept away from to heating cabinet 6 is installed and is extended to the outside outlet pipe 5 in installation storehouse 4, and the outside cover of outlet pipe 5 is equipped with the heat preservation, and the heat of pond water runs off behind the reducible heating.
The working principle is as follows: solar energy is converted into electric energy by a solar photovoltaic controller (10) by a solar energy cell panel (17) and is stored in a storage battery (20), when the solar energy cell panel is used, the storage battery (20) directly supplies power to the device, a water outlet pipe (5) and a water inlet pipe (13) are inserted into a fish pond, a temperature sensor (1) monitors the water temperature inside the fish pond in real time, the water temperature is lower and is lower than a threshold value preset by a single chip microcomputer (19), the single chip microcomputer (19) controls an electric heating wire (9), a water pump (14) and a motor (23) to be started, the water pump (14) pumps out the water in the fish pond through the water inlet pipe (13) and leads the pond water into a filter box (11) through a water guide pipe (15), the filter screen (12) in the filter box (11) can filter the pond water, impurities in the pond water are attached to the top of the filter screen, the pond water can be fully contacted with the inner wall of the heating box 6, the pond water can be uniformly heated, the heated pond water is discharged into a fish pond through the water outlet pipe 5, when the water temperature in the fish pond reaches a threshold value preset by the singlechip 19, the singlechip 19 controls the electric heating wire 9, the water pump 14 and the motor 23 to be closed, energy consumption is saved, the oxygen concentration sensor 3 monitors the oxygen concentration in the fish pond in real time, the oxygen concentration is lower than the threshold value preset by the singlechip 19, the singlechip 19 controls the water pump 14, the air suction pump 18 and the motor 23 to be started, the water pump 14 pumps the water in the fish pond through the water inlet pipe 13 and leads the pond water into the filtering box 11 through the water guide pipe 15, the filtering net 12 in the filtering box 11 can filter the pond water, impurities in the pond water are attached to the top of the filtering net 12, the pond water flows into the heating box 6 through the water guide pipe 16, and the air suction pump 18 pumps outside air into, motor 23 drives stirring vane 8 through pivot 7 and rotates and mix the pond water, with air and pond water intensive mixing, make oxygen in the air fully dissolve in the pond water, improve pond water oxygen content, the pond water is discharged into in the fish pond through outlet pipe 5, when the inside oxygen content of fish pond reaches 19 predetermined threshold values of singlechip, 19 control water pump of singlechip 14, aspiration pump 18 and motor 23 close energy saving, after the use, the chamber door on the rose box 11 can be opened to the user, it clears up adnexed impurity on the filter screen 12.
Although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments or portions thereof without departing from the spirit and scope of the invention.

Claims (6)

1. The utility model provides a fishpond photovoltaic automatic cycle water installation, includes base (2), installation storehouse (4), heating cabinet (6) and rose box (11), its characterized in that: install installation storehouse (4) at the top of base (2), the internally mounted of installation storehouse (4) has heating cabinet (6), rose box (11) are installed to the one end at installation storehouse (4) top, and the one end of keeping away from rose box (11) at installation storehouse (4) top installs solar cell panel (17), the internally mounted of rose box (11) has filter screen (12), and the top of rose box (11) installs water pump (14), the output of water pump (14) is installed and is extended to inside aqueduct (15) of rose box (11), and the input of water pump (14) installs inlet tube (13), oxygen concentration sensor (3) are installed to inlet tube (13) bottom that is close to base (2) one end, and inlet tube (13) keep away from the bottom of base (2) one end and install temperature sensor (1), the bottom that filter box (11) is close to solar cell panel (17) one end is installed and is extended to heating cabinet (13) 6) The solar photovoltaic solar energy water heater comprises an internal water conduit (16), wherein a single chip microcomputer (19) is installed at one end, close to a filter box (11), of the inner bottom of an installation bin (4), a storage battery (20) is installed at one end, close to a solar energy solar cell panel (17), of the inner bottom of the installation bin (4), an electric heating wire (9) is wound on the outer side of the heating box (6), a motor (23) is installed at one end, far away from the filter box (11), of the installation bin (4), a solar photovoltaic controller (10) is installed at one end, close to the filter box (11), of the inner top of the installation bin (4), an air suction pump (18) is installed at the top, far away from one end of the filter box (11), of the installation bin (4), an air guide pipe (21) extending to the inner portion of the installation bin (4) is installed at the output end of the air suction pump (18), and the output end of, the output of temperature sensor (1) passes through the input electric connection of wire and singlechip (19), the output of oxygen concentration sensor (3) passes through the input electric connection of wire and singlechip (19), the output of singlechip (19) passes through the wire respectively with the input electric connection of electric heating wire (9), water pump (14), aspiration pump (18) and motor (23), the output of battery (20) passes through the wire and is connected with the input electricity of temperature sensor (1), oxygen concentration sensor (3), electric heating wire (9), solar photovoltaic controller (10), water pump (14), aspiration pump (18), singlechip (19) and motor (23) respectively.
2. The fishpond photovoltaic automatic water circulating device of claim 1, which is characterized in that: the output of motor (23) is installed and is extended to pivot (7) of heating cabinet (6) inside, and stirring vane (8) are evenly installed in the outside of pivot (7).
3. The fishpond photovoltaic automatic water circulating device of claim 1, which is characterized in that: one-way air inlet valve (22) is installed to the one end that heating cabinet (6) top is close to motor (23), the output of one-way air inlet valve (22) passes through pipe and heating cabinet (6) intercommunication, and the input of one-way air inlet valve (22) passes through pipe and air duct (21) intercommunication.
4. The fishpond photovoltaic automatic water circulating device of claim 1, which is characterized in that: and a box door is installed on one side of the filter box (11), and a transparent observation window is arranged on the box door.
5. The fishpond photovoltaic automatic water circulating device of claim 1, which is characterized in that: a bin door is installed on one side of the installation bin (4), and a handle is installed on the outer side of the bin door.
6. The fishpond photovoltaic automatic water circulating device of claim 1, which is characterized in that: the bottom that motor (23) one end was kept away from in heating cabinet (6) is installed and is extended to installation storehouse (4) outside outlet pipe (5), and the outside cover of outlet pipe (5) is equipped with the heat preservation.
CN202020074612.6U 2020-01-14 2020-01-14 Automatic photovoltaic water circulating device for fishpond Active CN212787065U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020074612.6U CN212787065U (en) 2020-01-14 2020-01-14 Automatic photovoltaic water circulating device for fishpond

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020074612.6U CN212787065U (en) 2020-01-14 2020-01-14 Automatic photovoltaic water circulating device for fishpond

Publications (1)

Publication Number Publication Date
CN212787065U true CN212787065U (en) 2021-03-26

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ID=75079771

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Application Number Title Priority Date Filing Date
CN202020074612.6U Active CN212787065U (en) 2020-01-14 2020-01-14 Automatic photovoltaic water circulating device for fishpond

Country Status (1)

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CN (1) CN212787065U (en)

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