CN216961081U - Sheep raising farm drinking water is with water supply system that prevents frostbite - Google Patents

Sheep raising farm drinking water is with water supply system that prevents frostbite Download PDF

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CN216961081U
CN216961081U CN202122417437.3U CN202122417437U CN216961081U CN 216961081 U CN216961081 U CN 216961081U CN 202122417437 U CN202122417437 U CN 202122417437U CN 216961081 U CN216961081 U CN 216961081U
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water
drinking
supply system
storage tank
electric heating
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李芳�
奚伟伟
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Yulin Yuyang Feiyang Agriculture And Animal Husbandry Development Co ltd
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Yulin Yuyang Feiyang Agriculture And Animal Husbandry Development Co ltd
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Abstract

The utility model relates to an anti-freezing water supply system for drinking water in a sheep farm, which comprises a water storage tank (1), wherein the upper end of the water storage tank (1) is connected with a water source through a water inlet pipe (2), the lower end of the water storage tank is connected with a drinking trough (5) through a water outlet pipe (3), a submersible pump (11) and a first temperature sensor (14) are arranged in the water storage tank (1), the submersible pump (11) is connected with one end of the water outlet pipe (3), a first water level sensor (15) and a second temperature sensor (16) are arranged in the drinking trough (5), a first electric heating wire mesh (1.2) is arranged in the wall of the water storage tank (1), a second electric heating wire mesh (5.2) is arranged in the wall of the drinking trough (5), and a controller (6) is arranged on the outer side of the water storage tank (1). It can realize automatic water supply and prevent frostbite, helps realizing the automation of raising in sheep farm.

Description

Sheep farm drinking water is with water supply system that prevents frostbite
Technical Field
The utility model belongs to the technical field of cultivation, relates to water supply equipment for a sheep farm, and particularly relates to an anti-freezing water supply system for drinking water of the sheep farm.
Background
Mutton is popular among people because of its delicious taste and rich nutrition. In recent years, with the improvement of living standard of people, the demand of mutton is increased year by year. With the increase of mutton demand of people, it is increasingly difficult to meet the requirements of people only by means of grazing to breed sheep. Therefore, the large-scale sheep raising farms are increasing.
In the process of sheep breeding, a large amount of grass and water are needed, so the sheep farm is generally located in northern areas rich in aquatic plants. The northern area also brings a problem when providing rich aquatic weeds needed by sheep raising, namely water is easy to freeze in cold days in winter. Therefore, the phenomenon of icing can occur in the drinking trough for providing drinking water for the sheep, so that the drinking trough in the sheep farm cannot provide the required drinking water for the sheep.
In order to prevent the water in the drinking troughs from freezing, it is now common practice to heat the farms, but this adds to the cost. Or the trough is heated by manpower, for example, the trough is baked by fire or hot water is added to slowly melt ice in the trough, but the workload of the breeding personnel is increased on the one hand, and the requirement of sheep drinking water is difficult to guarantee on the other hand.
For this reason, some anti-freezing water supply devices are on the market. However, the existing anti-freezing water supply equipment generally has the following defects: 1. the antifreezing effect is poor, and the antifreezing effect can not be achieved at low temperature; 2. the anti-freezing effect can be achieved, automatic water supply cannot be realized, and water supply is difficult in cold days; 3. the automation degree is low, a large amount of personnel are needed to participate, and the workload and the breeding cost of breeding personnel are increased.
In view of the technical defects in the prior art, a novel anti-freezing water supply device for drinking water in a sheep farm is urgently needed to be developed.
SUMMERY OF THE UTILITY MODEL
The utility model aims to overcome the defects in the prior art and provides an anti-freezing water supply system for drinking water in a sheep farm, which can realize automatic water supply and anti-freezing and is beneficial to realizing the feeding automation of the sheep farm.
In order to achieve the above purpose, the utility model provides the following technical scheme:
the utility model provides a sheep farm drinking water is with water supply system that prevents frostbite, its includes the storage water tank, the upper end of storage water tank is passed through the inlet tube and is linked to each other with the water source ground, the lower extreme passes through the outlet pipe and links to each other with the trough, its characterized in that, be equipped with immersible pump and first temperature sensor in the storage water tank, the immersible pump with the one end of outlet pipe links to each other, be equipped with first level sensor and second temperature sensor in the trough wall of storage water tank, be equipped with second electrical heating wire net in the cell wall of trough, the outside of storage water tank is equipped with the controller, immersible pump, first temperature sensor, first electrical heating wire net, second electrical heating wire net, first level sensor and second temperature sensor all with the controller links to each other.
Preferably, a second water level sensor positioned at the upper part and a third water level sensor positioned at the lower part are further arranged in the water storage tank, an electromagnetic valve is arranged on the water inlet pipe, and the second water level sensor, the third water level sensor and the electromagnetic valve are also connected with the controller.
Preferably, the anti-freezing water supply system for drinking water in the sheep farm further comprises a storage battery, and the storage battery is used for supplying power.
Preferably, the anti-freezing water supply system for drinking water in the sheep farm further comprises a solar panel, the solar panel is mounted above the water storage tank through a support, and electric energy generated by the solar panel is used for charging the storage battery.
Preferably, a cover plate is further arranged above the water storage tank.
Preferably, the wall of the water storage tank further comprises a first outer heat insulation layer and a first inner heat conduction layer, and the first electric heating wire mesh is positioned between the first outer heat insulation layer and the first inner heat conduction layer.
Preferably, the trough wall of the drinking trough further comprises a second outer heat insulation layer and a second inner heat conduction layer, and the second electric heating wire mesh is located between the second outer heat insulation layer and the second inner heat conduction layer.
Preferably, a display screen is further arranged on the controller.
Compared with the prior art, the antifreezing water supply system for drinking water in the sheep farm has one or more of the following beneficial technical effects:
1. all be equipped with electric heating mechanism in its storage water tank and the trough, can realize the electrical heating automatically, consequently, can prevent frostbite for also can provide the drinking water and do not need manual operation for the sheep in chilly winter.
2. It can realize automatic water supply according to the drinking water demand of sheep when frostproofing, does not need artifical the participation, has reduced breeder's work load and labour cost.
3. The automatic degree is high, and the requirement of the existing high-tech culture is met.
4. The solar energy power supply can be adopted, so that the energy is saved and the environment is protected.
Drawings
FIG. 1 is a schematic diagram showing the construction of the antifreeze water supply system for drinking water in a sheep farm according to the present invention.
FIG. 2 is a schematic sectional view of the water storage tank of the anti-freezing water supply system for drinking water in a sheep farm of the present invention to show the internal structure of the water storage tank.
FIG. 3 is a cross-sectional view of a drinking trough of the anti-freezing water supply system for drinking water in a sheep farm of the present invention, in order to show the internal structure of the drinking trough.
FIG. 4 is a partially sectional schematic view of the tank wall of the storage tank of the antifreeze water supply system for drinking water in sheep farm of the present invention to show the constitution of the tank wall.
FIG. 5 is a partial cross-sectional view of the trough wall of the drinking trough of the antifreeze water supply system for sheep farm drinking of the present invention to show the structure of the trough wall.
Detailed Description
The present invention is further described with reference to the following drawings and examples, which are not intended to limit the scope of the present invention.
The utility model relates to an anti-freezing water supply system for drinking water in a sheep farm, which is used for supplying drinking water for sheep in the sheep farm and can realize anti-freezing and automatic water supply.
FIG. 1 shows a schematic configuration diagram of the anti-freezing water supply system for drinking water in a sheep farm. As shown in figure 1, the anti-freezing water supply system for drinking water in a sheep farm comprises a water storage tank 1. The upper end of the water storage tank 1 is connected with a water source through a water inlet pipe 2. Through inlet tube 2, can make the water in water source ground get into store in the storage water tank 1 to as the reserve drinking water of sheep. The source of water may be municipal tap water.
Preferably, the water inlet pipe 2 is provided with an electromagnetic valve 4. Whether water is injected into the water storage tank 1 through the water inlet pipe 2 can be controlled by controlling the opening and closing of the electromagnetic valve 4.
More preferably, a cover plate 9 is further arranged above the water storage tank 1. Therefore, on one hand, the cover plate 9 can be opened to facilitate cleaning the inside of the water storage tank 1, on the other hand, when water cannot be injected into the water storage tank 1 through the water inlet pipe 2, the cover plate 9 can be opened to manually inject water into the water storage tank 1.
The lower end of the water storage tank 1 is connected with a drinking trough 5 through a water outlet pipe 3. The water in the water storage tank 1 can be supplied to the drinking trough 5 through the water outlet pipe 3 for sheep to drink.
As shown in fig. 2, in the present invention, a submersible pump 11 and a first temperature sensor 14 are provided in the water storage tank 1. Wherein, the submersible pump 11 is connected with one end of the water outlet pipe 3. Thereby, the water in the water storage tank 1 can be supplied to the drinking trough 5 through the water outlet pipe 3 under the suction action of the submersible pump 11. Through the first temperature sensor 14, the temperature of water in the water storage tank 1 can be detected so as to be heated in time when the temperature thereof is lower than a certain degree, for example, 0 ℃, thereby preventing freezing.
Preferably, a second water level sensor 12 at the upper part and a third water level sensor 13 at the lower part are also arranged in the water storage tank 1. Whether the water in the water storage tank 1 is filled can be sensed through the second water level sensor 12. The third water level sensor 13 can sense whether the water in the water storage tank 1 is lower than a warning water level, so that water can be filled into the water storage tank 1 in time.
As shown in fig. 3, in the present invention, a first water level sensor 15 and a second temperature sensor 16 are provided in the drinking trough 5. The first water level sensor 15 is used for detecting the water level in the drinking trough 5, so as to timely supplement drinking water to the drinking trough 5 when the water in the drinking trough 5 is lower than a warning water level. The second temperature sensor 16 can detect the temperature of the water in the trough 5 in order to heat it in time when its temperature is lower than a certain level, for example 10 ℃, so that on the one hand icing can be prevented and on the other hand drinking water at a suitable temperature can be provided for the sheep.
As shown in fig. 4, a first electric heating wire net 1.2 is arranged in the wall of the water storage tank 1. Through the first electric heating wire mesh 1.2, the water in the water storage tank 1 can be heated, so that the water in the water storage tank 1 is prevented from freezing.
Preferably, the wall of the water storage tank 1 further comprises a first outer heat insulation layer 1.1 and a first inner heat conduction layer 1.3. The first electric heating wire mesh 1.2 is positioned between the first outer heat insulation layer 1.1 and the first inner heat conduction layer 1.3. Through setting up first outer insulating layer 1.1, can reduce on the one hand the giving off of the heat in storage water tank 1, on the other hand can be from the outside protection first electric heating wire net 1.2. Through setting up heat-conducting layer 1.3 in first, can on the one hand with the heat that first electric heating wire net 1.2 produced transmits rapidly the aquatic in the storage water tank 1 to be convenient for right water in the storage water tank 1 heats, on the other hand can prevent water direct contact in the storage water tank 1 first electric heating wire net 1.2, thereby can guarantee safety.
As shown in fig. 5, a second electric heating wire net 5.2 is arranged in the wall of the drinking trough 5. Through the second electric heating wire net 5.2, the water in the drinking trough 5 can be heated, so that the water in the drinking trough 5 is prevented from freezing, and drinking water with proper temperature can be provided for sheep.
Preferably, the trough wall of the drinking trough 5 further comprises a second outer heat insulation layer 5.1 and a second inner heat conduction layer 5.3. The second electric heating wire mesh 5.2 is located between the second outer heat insulating layer 5.1 and the second inner heat conducting layer 5.3. Through the arrangement of the second outer heat insulation layer 5.1, on one hand, the emission of heat in the drinking trough 5 can be reduced, and on the other hand, the second electric heating wire mesh 5.2 can be protected from the outside. Through setting up heat-conducting layer 5.3 in the second, can on the one hand with the heat that second electric heating wire net 5.2 produced transmits rapidly the aquatic in the trough 5 to be convenient for to heat the water in the trough 5, on the other hand can prevent the water in the trough 5 direct contact second electric heating wire net 5.2, thereby can guarantee the safety of sheep, prevent the emergence of electrocuteeing.
With continued reference to fig. 1, in the present invention, the outside of the water storage tank 1 is provided with a controller 6. The electromagnetic valve 4, the submersible pump 11, the second water level sensor 12, the third water level sensor 13, the first temperature sensor 14, the first electric heating wire mesh 1.2, the second electric heating wire mesh 5.2, the first water level sensor 15 and the second temperature sensor 16 are all connected with the controller 6.
Thereby, the controller 6 can control the electromagnetic valve 4, the submersible pump 11, the first electric heating wire net 1.2 and the second electric heating wire net 5.2 according to the detection results of the second water level sensor 12, the third water level sensor 13, the first temperature sensor 14, the first water level sensor 15 and the second temperature sensor 16.
For example, when the second water level sensor 12 detects that the water storage tank 1 is about to be filled, the controller 6 controls the electromagnetic valve 4 to close according to the detection result of the second water level sensor 12, so that water is not filled into the water storage tank 1 any more. When the third water level sensor 13 detects that the water level in the water storage tank 1 is too low, the controller 6 controls the electromagnetic valve 4 to be opened according to the detection result of the third water level sensor 13, and water is injected into the water storage tank 1 through the water inlet pipe 2. In this way, it is ensured that the storage tank 1 always has a suitable amount of standby water therein to avoid the occurrence of water shortage.
When the first temperature sensor 14 detects that the temperature of the water in the water storage tank 1 is too low, for example, lower than 0 ℃, the controller 6 controls the first electric heating wire mesh 1.2 to start working according to the detection result of the first temperature sensor 14, so as to heat the water in the water storage tank 1 and prevent the water from freezing. When the first temperature sensor 14 detects that the temperature of water in the water storage tank 1 is too high, for example, higher than 20 ℃, the controller 6 controls the first electric heating wire mesh 1.2 to be closed according to the detection result of the first temperature sensor 14, so as to stop heating the water in the water storage tank 1, on one hand, the situation that the temperature of water is too high and is not beneficial to sheep drinking is prevented, and on the other hand, energy conservation and emission reduction are facilitated.
When the first water level sensor 15 detects that the water level in the drinking trough 5 is too low, the controller 6 controls the submersible pump 11 to be turned on according to the detection result of the first water level sensor 15, so as to fill water into the drinking trough 5 through the water outlet pipe 3. Therefore, the phenomenon of water shortage in the water outlet groove 5 can be avoided, and the fact that the sheep can obtain drinking water from the drinking water groove 5 is guaranteed all the time. After a certain time, for example 10 minutes, after the submersible pump 11 has been activated, the drinking trough 5 is substantially full of water. At this time, the controller 6 may control the submersible pump 11 to be turned off so that water is not filled into the drinking trough 5 any more.
When the second temperature sensor 16 detects that the temperature of the water in the trough 5 is too low, for example, below 10 ℃, the controller 6 controls the second electric heating wire mesh 5.2 to start working according to the detection result of the second temperature sensor 16, so as to heat the water in the trough 5, on one hand, prevent the water from freezing, and on the other hand, provide drinking water with a proper temperature for the sheep. When the second temperature sensor 16 detects that the temperature of the water in the drinking trough 5 is too high, for example, higher than 20 ℃, the controller 6 controls the second electric heating wire mesh 5.2 to be closed according to the detection result of the second temperature sensor 16, so as to stop heating the water in the drinking trough 5, on one hand, the situation that the water temperature is too high and is not beneficial to sheep drinking is prevented, and on the other hand, energy conservation and emission reduction are facilitated.
Therefore, the antifreezing water supply system for drinking water in a sheep farm can automatically realize electric heating and automatic water supply, can prevent freezing, can provide drinking water for sheep in cold winter without manual operation, does not need manual participation, and reduces the workload and labor cost of cultivation personnel.
Preferably, a display screen is further arranged on the controller 6. Through the display screen, the water level and the water temperature in the water storage tank 1 and the water trough 5 can be conveniently and timely known by breeding personnel.
It should be noted that, in the present invention, since the controller 6 only needs to have a simple switch control function, there are many controllers capable of implementing these functions in the prior art, and thus, the type of the controller 6 is not limited in the present invention. For example, the controller 6 may be a common single chip microcomputer, an industrial controller, or a central processing unit.
In addition, in the present invention, preferably, the anti-freezing water supply system for drinking water in a sheep farm further includes a storage battery 10. The accumulator 10 is used for supplying power, for example, to the controller 6, the first electric heating wire mesh 1.2, the second electric heating wire mesh 5.2, etc.
More preferably, the anti-freezing water supply system for drinking water in the sheep farm further comprises a solar cell panel 8. The solar cell panel 8 is installed above the water storage tank 1 through the support post 7 and the electric energy generated by the solar cell panel 8 is used for charging the storage battery 10. Therefore, the solar energy can be utilized for power supply, so that the solar energy-saving solar energy water heater is more energy-saving and environment-friendly.
The above examples of the present invention are merely examples for clearly illustrating the present invention and are not intended to limit the embodiments of the present invention. Other variations and modifications will be apparent to persons skilled in the art in light of the above description. Not all embodiments are exhaustive. All obvious changes and modifications which are obvious to the technical scheme of the utility model are covered by the protection scope of the utility model.

Claims (8)

1. The utility model provides a sheep farm drinking water is with water supply system that prevents frostbite, it includes storage water tank (1), the upper end of storage water tank (1) is passed through inlet tube (2) and is linked to each other with the water source ground, and the lower extreme passes through outlet pipe (3) and links to each other with trough (5), its characterized in that, be equipped with immersible pump (11) and first temperature sensor (14) in storage water tank (1), immersible pump (11) with the one end of outlet pipe (3) links to each other, be equipped with first level sensor (15) and second temperature sensor (16) in trough (5), be equipped with first electric heating silk screen (1.2) in the tank wall of storage water tank (1), be equipped with second electric heating silk screen (5.2) in the cell wall of trough (5), the outside of storage water tank (1) is equipped with controller (6), immersible pump (11), first temperature sensor (14), first electric heating silk screen (1.2), The second electric heating wire mesh (5.2), the first water level sensor (15) and the second temperature sensor (16) are all connected with the controller (6).
2. The anti-freezing water supply system for drinking water in a sheep farm according to claim 1, wherein a second water level sensor (12) positioned at the upper part and a third water level sensor (13) positioned at the lower part are further arranged in the water storage tank (1), the water inlet pipe (2) is provided with an electromagnetic valve (4), and the second water level sensor (12), the third water level sensor (13) and the electromagnetic valve (4) are also connected with the controller (6).
3. The anti-freezing water supply system for drinking water in a sheep farm according to claim 1, characterized by further comprising a storage battery (10), wherein the storage battery (10) is used for supplying power.
4. The anti-freezing water supply system for drinking water in a sheep farm according to claim 3, characterized by further comprising a solar panel (8), wherein the solar panel (8) is mounted above the water storage tank (1) through a support (7) and the electric energy generated by the solar panel (8) is used for charging the storage battery (10).
5. The anti-freezing water supply system for drinking water in a sheep farm according to claim 1, characterized in that a cover plate (9) is further arranged above the water storage tank (1).
6. The antifreeze water supply system for drinking water in a sheep farm as claimed in claim 1, wherein the wall of the water storage tank (1) further comprises a first outer heat insulation layer (1.1) and a first inner heat conduction layer (1.3), and the first electric heating wire mesh (1.2) is positioned between the first outer heat insulation layer (1.1) and the first inner heat conduction layer (1.3).
7. The antifreeze water supply system for drinking water in a sheep farm as set forth in claim 1,
the trough wall of the drinking trough (5) further comprises a second outer heat insulation layer (5.1) and a second inner heat conduction layer (5.3), and the second electric heating wire mesh (5.2) is located between the second outer heat insulation layer (5.1) and the second inner heat conduction layer (5.3).
8. The antifreeze water supply system for drinking water in a sheep farm as set forth in claim 1,
and a display screen is also arranged on the controller (6).
CN202122417437.3U 2021-10-08 2021-10-08 Sheep raising farm drinking water is with water supply system that prevents frostbite Active CN216961081U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122417437.3U CN216961081U (en) 2021-10-08 2021-10-08 Sheep raising farm drinking water is with water supply system that prevents frostbite

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122417437.3U CN216961081U (en) 2021-10-08 2021-10-08 Sheep raising farm drinking water is with water supply system that prevents frostbite

Publications (1)

Publication Number Publication Date
CN216961081U true CN216961081U (en) 2022-07-15

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ID=82344121

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122417437.3U Active CN216961081U (en) 2021-10-08 2021-10-08 Sheep raising farm drinking water is with water supply system that prevents frostbite

Country Status (1)

Country Link
CN (1) CN216961081U (en)

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