CN206371247U - A kind of field irrigation water saving water supply system - Google Patents
A kind of field irrigation water saving water supply system Download PDFInfo
- Publication number
- CN206371247U CN206371247U CN201720033915.1U CN201720033915U CN206371247U CN 206371247 U CN206371247 U CN 206371247U CN 201720033915 U CN201720033915 U CN 201720033915U CN 206371247 U CN206371247 U CN 206371247U
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- water
- pipe
- supply
- water tank
- field irrigation
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Abstract
The utility model discloses a kind of field irrigation water saving water supply system, including ground layer, water tank and water-supply-pipe, the top of ground layer, which is built, plateau, the top of plateau is provided with water tank, the inner chamber that the edge of plateau bottom is provided with the right side of master controller, water tank bottom is provided with water-supply-pipe, and the one end of water-supply-pipe away from water tank is provided with water-carrying capacity monitoring sensor, side of the water-carrying capacity monitoring sensor away from water-supply-pipe, which is connected with the outside of coupler, coupler, to be connected with no less than six roots of sensation water distributor.The utility model passes through the soil temperature-moisture sensor installed in the middle part of water distributor, and the electronics water valve installed on water distributor, the master controller being equipped with again, field irrigation water saving water supply system is enabled to carry out field irrigation automatically, and the water distributing pore for coordinating the bottom even in every water distributor to set, so that during field irrigation so that being distributed in the soil in farmland for uniform fluid flow, the speed and efficiency of field irrigation are effectively increased.
Description
Technical field
The utility model is related to field irrigation technical field, specially a kind of field irrigation water saving water supply system.
Background technology
At present, farmland surface irrigation mode, generally by the way of pumping for water pump inlet channel, edge of a field opening are poured all over the sky,
This traditional surface irrigation mode, wastes substantial amounts of water resource, and every block of soil is poured without standard measure, extremely easy to pour
It is uneven and influence the normal growth of crops, influence the yield of crops.
Utility model content
The purpose of this utility model is to provide a kind of field irrigation water saving water supply system possess field irrigation efficiency high,
Uniform and energy-conservation advantage is poured, is solved in now current field irrigation, water resource waste is serious and pours uneven and leads
Cause crops can not normal growth the problem of.
To achieve the above object, the utility model provides following technical scheme:
A kind of field irrigation water saving water supply system, including ground layer, water tank and water-supply-pipe, the top of the ground layer, which is built, to be had
Plateau, the top of the plateau is provided with water tank, and the right side of the ground layer is to be provided with water on the left of Farmland, the water tank
Drinking-water pipe two and drinking-water pipe one, the top of the tank inner wall are connected at pump, the delivery outlet and pump mouth of the water pump
Liquid level sensor is equipped with bottom, the edge of the plateau bottom is provided with the inner chamber on the right side of master controller, the water tank bottom
Provided with water-supply-pipe, the water-supply-pipe is communicated with the inside of water tank, and the middle part of the water-supply-pipe is provided with the position of water tank
Total valve, the one end of the water-supply-pipe away from water tank is provided with water-carrying capacity monitoring sensor, and the water-carrying capacity monitoring sensor is remote
Side from water-supply-pipe is connected with the outside of coupler, the coupler and is connected with no less than six roots of sensation water distributor, cloth described in the six roots of sensation
Water pipe is mounted on electronics water valve close to one end of pipe tap, and the middle part of the water distributor is provided with Soil Temperature And Moisture by fixture
Sensor is spent, the bottom even of the water distributor is provided with water distributing pore.
It is preferred that, the described one end of drinking-water pipe one away from water pump is placed in water source, the drinking-water pipe two away from water pump one
End is connected with water tank, and drinking-water pipe two is located at the top of water tank with water tank junction.
It is preferred that, the water tank is sealing structure, and the side of its tank top is provided with discharge outlet.
It is preferred that, the water distributor is arranged in Farmland, and water distributor is erected at the top of Farmland by support frame.
It is preferred that, the soil temperature-moisture sensor is embedded in the soil in Farmland, and its embedded depth is 20-25
Centimetre.
It is preferred that, output end, the output end of water-carrying capacity monitoring sensor and the soil temperature and humidity of the liquid level sensor are passed
The output end of sensor is mutually electrically connected with the input of master controller, and the output end of the master controller is defeated with water pump respectively
Enter end to be mutually electrically connected with the input of electronics water valve, the I/O of the master controller is also mutually electric with remote control table
Property connection.
Compared with prior art, the beneficial effects of the utility model are as follows:
1st, the utility model in the bottom of water tank connection water-supply-pipe, and in the one end of water-supply-pipe away from water tank by passing through
Some water distributors of pipe tap connection, so enable to current directly to be connected by water-supply-pipe, pipe tap and water distributor
Into each farmland, it is to avoid the method for water channel diversion employed in traditional field irrigation, current are effectively avoided in water channel
Evaporate, and to subsurface wastewater infiltration system, and the waste of water resource is caused, also, by being pacified in the middle part of water distributor by fixture
The soil temperature-moisture sensor of dress, and the electronics water valve installed in water distributor close to one end of pipe tap, then be equipped with
Master controller so that field irrigation water saving water supply system can carry out field irrigation automatically, and coordinate in every water distributor
Bottom even set water distributing pore so that during field irrigation so that being distributed in the soil in farmland for uniform fluid flow, effectively carry
The high speed and efficiency of field irrigation, also, use water when can also cause field irrigation, are controlled effectively, it is to avoid
Occur pouring more, pour and leak the situation appearance poured less, while the liquid level sensor installed in the water pump and water tank being equipped with, and
The water-carrying capacity monitoring sensor installed on water-supply-pipe so that field irrigation water saving water supply system not only has automatic loading water
Function, while the situation that can also play preventing water leakage occurs, so as to effectively solve in now current field irrigation, water resource waste
It is serious and pour it is uneven and cause crops can not normal growth the problem of.
Brief description of the drawings
Fig. 1 is the utility model side structure schematic diagram;
Fig. 2 is the overlooking the structure diagram connected between the utility model pipe tap and water distributor.
In figure:1 ground layer, 2 plateau, 3 Farmlands, 4 water tanks, 5 water pumps, 6 drinking-water pipes one, 7 drinking-water pipes two, 8 discharge outlet, 9
Liquid level sensor, 10 water-supply-pipes, 11 total valves, 12 water-carrying capacity monitoring sensor, 13 pipe taps, 14 water distributors, 15 electronics water valves,
16 fixtures, 17 water distributing pores, 18 soil temperature-moisture sensors, 19 master controllers.
Embodiment
Below in conjunction with the accompanying drawing in the utility model embodiment, the technical scheme in the utility model embodiment is carried out
Clearly and completely describe, it is clear that described embodiment is only a part of embodiment of the utility model, rather than whole
Embodiment.Based on the embodiment in the utility model, those of ordinary skill in the art are not under the premise of creative work is made
The every other embodiment obtained, belongs to the scope of the utility model protection.
Refer to Fig. 1-2, a kind of field irrigation water saving water supply system, including ground layer 1, water tank 4 and water-supply-pipe 10, ground
The top of layer 1, which is built, plateau 2, and the top of plateau 2 is provided with water tank 4, and the right side of ground layer 1 is Farmland 3, and the left side of water tank 4 is pacified
Equipped with water pump 5, drinking-water pipe 27 and drinking-water pipe 1 are connected at the delivery outlet and pump mouth of water pump 5, drinking-water pipe 1 is remote
One end of water pump 5 is placed in water source, and the one end of drinking-water pipe 27 away from water pump 5 is connected with water tank 4, and drinking-water pipe 27 and water tank
4 junctions are located at the top of water tank 4, and water tank 4 is sealing structure, and the side at its top of water tank 4 is provided with discharge outlet 8, the inwall of water tank 4
Top and bottom be equipped with liquid level sensor 9, the edge of the bottom of plateau 2 is provided with master controller 19, the bottom right of water tank 4 it is interior
Chamber is provided with water-supply-pipe 10, and water-supply-pipe 10 is communicated with the inside of water tank 4, and the middle part of water-supply-pipe 10 is installed at the position of water tank 4
There is total valve 11, the one end of water-supply-pipe 10 away from water tank 4 is provided with water-carrying capacity monitoring sensor 12, water-carrying capacity monitoring sensor 12
Side away from water-supply-pipe 10 is connected with pipe tap 13, and the outside of pipe tap 13 is connected with no less than six roots of sensation water distributor 14, water distribution
Pipe 14 is arranged in Farmland 3, and water distributor 14 is erected at the top of Farmland 3 by support frame, and six roots of sensation water distributor 14 is close
One end of pipe tap 13 is mounted on electronics water valve 15, and the middle part of water distributor 14 is provided with soil temperature and humidity by fixture 16 and passed
Sensor 18, soil temperature-moisture sensor 18 is embedded in the soil in Farmland 3, and its embedded depth is 20-25 centimetres, water distribution
The bottom even of pipe 14 is provided with water distributing pore 17, output end, the output end of water-carrying capacity monitoring sensor 12 and the soil of liquid level sensor 9
The output end of earth Temperature Humidity Sensor 18 is mutually electrically connected with the input of master controller 19, the output end point of master controller 19
Be not electrically connected with mutually with the input of water pump 5 and the input of electronics water valve 15, the I/O of master controller 19 also with far
Process control platform is mutually electrically connected with.
The utility model in the bottom of water tank 4 by connecting water-supply-pipe 10, and in the one end of water-supply-pipe 10 away from water tank 4
Some water distributors 14 connected by pipe tap 13, so enable to current directly by water-supply-pipe 10, pipe tap 13 with
And water distributor 14 is switched in each farmland, it is to avoid the method for water channel diversion employed in traditional field irrigation, effectively keep away
Exempt from current to evaporate in water channel, and to subsurface wastewater infiltration system, and the waste of water resource is caused, also, by water distributor 14
The soil temperature-moisture sensor 18 that middle part is installed by fixture 16, and installed in water distributor 14 close to one end of pipe tap 13
Electronics water valve 15, then the master controller 19 being equipped with so that field irrigation water saving water supply system can carry out agriculture automatically
Field is irrigated, and the water distributing pore 17 for coordinating the bottom even in every water distributor 14 to set so that during field irrigation so that current
It is evenly distributed in the soil in farmland, effectively increases the speed and efficiency of field irrigation, also, farmland irrigating can also be caused
Use water when irrigating, is controlled effectively, it is to avoid occur pouring more, pouring and leak situation about pouring less, while the He of water pump 5 being equipped with
The liquid level sensor 9 installed in water tank 4, and the water-carrying capacity monitoring sensor 12 installed on water-supply-pipe 10 so that the farmland
Water-efficient irrigation water supply system not only has the function of automatic loading water, while the situation that can also play preventing water leakage occurs, so that effectively
Solve in now current field irrigation, water resource waste is serious and pours uneven and causes crops can not normal growth
Problem.
Field irrigation water saving water supply system, in use, water pump 5 will be stored in the water suction water tank 4 at water source, in water tank 4
Water level reach the inwall of water tank 4 at the top of liquid level sensor 9 at when, water pump 5 stops pumping, when water level decreasing to the inwall of water tank 4
During the position of the liquid level sensor 9 of bottom, water pump 5 starts to draw water, and the water in water tank 4 is transported to pipe tap by water-supply-pipe 10
In 13, when the soil temperature-moisture sensor 18 on water distributor 14 monitors that soil temperature and humidity is reached in range of set value(The setting
Value is voluntarily set by user according to plant growth characteristic)When, soil temperature-moisture sensor 18 is transmitted to master controller 19
Signal, the signal that master controller 19 is transmitted according to soil temperature-moisture sensor 18 is corresponding to the soil temperature-moisture sensor 18
Electronics water valve 15 on water distributor 14 sends instruction so that water flowing in the water distributor 14, current spread to farmland from water distributing pore 17
In, after the data recovery that soil temperature-moisture sensor 18 is detected is to normal value, electronics water valve 15 is closed, and is stopped irrigating, is worked as institute
When having the electronics water valve 15 on water distributor 14 to be closed, water-carrying capacity monitoring sensor 12 is flowed into the water in water-supply-pipe 10
Row monitoring, when water-carrying capacity monitoring sensor 12 detects water flow data, illustrates there is water leakage situation appearance, and to master controller 19
Transmission information, from master controller 19 to remote control table transmission information, reminds user.
While there has been shown and described that embodiment of the present utility model, for the ordinary skill in the art,
It is appreciated that these embodiments can be carried out in the case where not departing from principle of the present utility model and spirit a variety of changes, repaiies
Change, replace and modification, scope of the present utility model is defined by the appended claims and the equivalents thereof.
Claims (6)
- The water supply system 1. a kind of field irrigation is economized on water, including ground layer(1), water tank(4)And water-supply-pipe(10), it is characterised in that: The ground layer(1)Top build have plateau(2), the plateau(2)Top be provided with water tank(4), the ground layer(1)The right side Side is Farmland(3), the water tank(4)Left side water pump is installed(5), the water pump(5)Delivery outlet and pump mouth punishment Drinking-water pipe two is not connected with(7)With drinking-water pipe one(6), the water tank(4)The top and bottom of inwall is equipped with liquid level sensor (9), the plateau(2)The edge of bottom is provided with master controller(19), the water tank(4)The inner chamber of bottom right is provided with water-supply-pipe (10), the water-supply-pipe(10)With water tank(4)Inside communicate, the water-supply-pipe(10)Middle part close to water tank(4)Position Place is provided with total valve(11), the water-supply-pipe(10)Away from water tank(4)One end be provided with water-carrying capacity monitoring sensor(12), The water-carrying capacity monitors sensor(12)Away from water-supply-pipe(10)Side be connected with pipe tap(13), the pipe tap(13)'s Outside is connected with no less than six roots of sensation water distributor(14), water distributor described in the six roots of sensation(14)Close to pipe tap(13)One end be mounted on Electronics water valve(15), the water distributor(14)Middle part pass through fixture(16)Soil temperature-moisture sensor is installed(18), institute State water distributor(14)Bottom even be provided with water distributing pore(17).
- 2. a kind of field irrigation water saving water supply system according to claim 1, it is characterised in that:The drinking-water pipe one(6) Away from water pump(5)One end be placed in water source, the drinking-water pipe two(7)Away from water pump(5)One end and water tank(4)It is connected, And drinking-water pipe two(7)With water tank(4)Junction is located at water tank(4)Top.
- 3. a kind of field irrigation water saving water supply system according to claim 1, it is characterised in that:The water tank(4)To be close Seal structure, its water tank(4)The side at top is provided with discharge outlet(8).
- 4. a kind of field irrigation water saving water supply system according to claim 1, it is characterised in that:The water distributor(14)If Put in Farmland(3)In, and water distributor(14)Farmland is erected at by support frame(3)Top.
- 5. a kind of field irrigation water saving water supply system according to claim 1, it is characterised in that:The soil temperature and humidity is passed Sensor(18)It is embedded in Farmland(3)In interior soil, its embedded depth is 20-25 centimetres.
- 6. a kind of field irrigation water saving water supply system according to claim 1, it is characterised in that:The liquid level sensor (9)Output end, water-carrying capacity monitoring sensor(12)Output end and soil temperature-moisture sensor(18)Output end with master Controller(19)Input be mutually electrically connected with, the master controller(19)Output end respectively with water pump(5)Input and Electronics water valve(15)Input be mutually electrically connected with, the master controller(19)I/O also with remote control table phase It is electrically connected with.
Priority Applications (1)
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CN201720033915.1U CN206371247U (en) | 2017-01-11 | 2017-01-11 | A kind of field irrigation water saving water supply system |
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CN201720033915.1U CN206371247U (en) | 2017-01-11 | 2017-01-11 | A kind of field irrigation water saving water supply system |
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CN206371247U true CN206371247U (en) | 2017-08-04 |
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CN201720033915.1U Expired - Fee Related CN206371247U (en) | 2017-01-11 | 2017-01-11 | A kind of field irrigation water saving water supply system |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108628374A (en) * | 2018-06-29 | 2018-10-09 | 王倩 | A kind of wheat growth intelligent control method and system |
-
2017
- 2017-01-11 CN CN201720033915.1U patent/CN206371247U/en not_active Expired - Fee Related
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108628374A (en) * | 2018-06-29 | 2018-10-09 | 王倩 | A kind of wheat growth intelligent control method and system |
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Legal Events
Date | Code | Title | Description |
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20170804 Termination date: 20180111 |