CN209660072U - A kind of insulation day-light greenhouse water hold over system - Google Patents

A kind of insulation day-light greenhouse water hold over system Download PDF

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Publication number
CN209660072U
CN209660072U CN201920229099.0U CN201920229099U CN209660072U CN 209660072 U CN209660072 U CN 209660072U CN 201920229099 U CN201920229099 U CN 201920229099U CN 209660072 U CN209660072 U CN 209660072U
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water
storage device
solenoid valve
water storage
pipe
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CN201920229099.0U
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Inventor
崔世茂
张长青
刘亚南
吴玉峰
宋阳
吕福虎
张乐乐
王美霞
韩冰
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Inner Mongolia Zhongtian Technology Co Ltd
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Inner Mongolia Zhongtian Technology Co Ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A40/00Adaptation technologies in agriculture, forestry, livestock or agroalimentary production
    • Y02A40/10Adaptation technologies in agriculture, forestry, livestock or agroalimentary production in agriculture
    • Y02A40/25Greenhouse technology, e.g. cooling systems therefor
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P60/00Technologies relating to agriculture, livestock or agroalimentary industries
    • Y02P60/14Measures for saving energy, e.g. in green houses

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Abstract

The utility model discloses a kind of insulation day-light greenhouse water hold over systems, including several water tanks, water storage device, irrigation pipe network;First solenoid valve is installed on the water inlet pipe in water storage device;Heating device is equipped in water storage device;The first water pump is installed in the inside of water storage device;The outlet of second solenoid valve is connect with the import of the second water pump, and the outlet of the second water pump is connect with irrigation pipe network.Heat is absorbed using sunlight on daytime by water tank and water storage device, so that the water in water tank and water storage device becomes warm water, heat is distributed at night and guarantees that the indoor temperature of sunlight will not be lower, while can be improved the heat insulating ability of rear wall;And the water in water tank and water storage device is heated using heating device, guarantees that the water energy in water tank and water storage device enough plays insulation effect;It is irrigated simultaneously using the water in water tank, guarantees that ground will not reduce temperature by ice-cold irrigation water in canopy when winter, guarantee the normal growth of plant, realize that water resource makes full use of, energy conservation and environmental protection.

Description

A kind of insulation day-light greenhouse water hold over system
Technical field:
The utility model relates to insulation day-light greenhouse fields, and in particular to a kind of insulation day-light greenhouse water hold over system.
Background technique:
Heliogreenhouse is the abbreviation of energy saving sunlight greenhouse, also known as brooder, by two side gables, back wall, support frame and is covered Cover material composition.Wall plays great work for the heat insulation effect of heliogreenhouse as the important component of heliogreenhouse afterwards With.Since rear wall is located at the opaco of heliogreenhouse, cannot get the direct projection of the sun, cause rear wall temperature outside low, after it is outer within the walls Temperature difference is excessive, so that the heat insulation effect of heliogreenhouse is bad, the growth of plant is influenced, so in north cold area Heliogreenhouse in be usually fitted with heating and warm oneself;When carrying out the pouring of plant in the heliogreenhouse for installing heating, Capable pouring is tapped into usually using ice-cold tap water direct, especially in winter, ice-cold tap water can make the temperature on ground in canopy Reduce, not only influence the temperature of heliogreenhouse, also affect the normal growth of plant, due to heating water rust deposite foul compared with It is more, therefore be not available warm heating water and irrigated, cause the various pipes of sunlight indoor location more complex, occupied space It is larger, and construction cost is higher.
Utility model content:
The purpose of this utility model is to provide wall heat insulation effect after a kind of raising, heat preservation day of warm-water irrigation can be carried out Light greenhouse water hold over system.
The utility model is implemented by following technical solution:
A kind of insulation day-light greenhouse water hold over system is mounted on water tank, water storage after heliogreenhouse on wall including several Device, irrigation pipe network;
First solenoid valve is installed on the water inlet pipe in the water storage device;
Heating device is equipped in the water storage device;
The first water pump is installed in the inside of the water storage device;First water pump is connect with filler pipe, each described The water inlet pipe of water tank is connected to the filler pipe;
The outlet pipe of each water tank is connected to a return pipe;
The return pipe is connected to the water storage device, and third solenoid valve is equipped on the return pipe;
It is equipped with and the irrigation pipe on the outlet pipe to the return pipe between the third solenoid valve of the water tank The irrigation pipe for netting connection, is successively arranged second solenoid valve on the irrigation pipe of the return pipe to the irrigation pipe network With the second water pump;
Floating ball lever meter is installed in the inside of any water tank;
The floating ball lever meter, first solenoid valve, the second solenoid valve, the third solenoid valve, described first Water pump and second water pump are electrically connected with the controller, and liquid level signal is sent the controller by the floating ball lever meter, The controller controls first solenoid valve, the second solenoid valve, the opening and closing of the third solenoid valve, control described first The start and stop of water pump and second water pump.
Preferably, the heating device is electrothermal tube, and the electrothermal tube is fixed on the inside of the water storage device.
Preferably, the heating device further includes solar water heater and third water pump, the solar water heater into Water pipe is connect by pipeline with the third water pump being mounted on inside the water storage device, the water outlet of the solar water heater Pipe is connect by pipeline with the water storage device.
Preferably, filter is equipped on second water pump to the irrigation pipe between the irrigation pipe network.
The advantages of the utility model: absorbing heat using sunlight on daytime by water tank and water storage device so that water tank and Water in water storage device becomes warm water, distributes heat at night and guarantees that the indoor temperature of sunlight will not be lower, while can mention The heat insulating ability of wall after height;And the water in water tank and water storage device is heated using heating device, guarantees water tank and water storage Water energy in device enough plays insulation effect;It is irrigated simultaneously using the water in water tank, guarantees that ground will not in canopy when winter Temperature is reduced by ice-cold irrigation water, guarantees the normal growth of plant, realizes that water resource makes full use of, energy conservation and environmental protection.
Detailed description of the invention:
Fig. 1 is the structural schematic diagram of embodiment 1;
Fig. 2 is the use schematic diagram of embodiment 1;
Fig. 3 is the wiring schematic diagram of controller;
Fig. 4 is the structural schematic diagram of embodiment 2;
Fig. 5 is the use schematic diagram of embodiment 2.
In figure: water tank 1, water storage device 2, irrigation conduit 3, the first solenoid valve 4, heating device 5, the first water pump 6, filler pipe 7, irrigation pipe 8, return pipe 9, second solenoid valve 10, third solenoid valve 11, the second water pump 12, floating ball lever meter 13, controller 14, electrothermal tube 15, solar water heater 16, third water pump 17, filter 18, rear wall 19.
Specific embodiment:
Embodiment 1: as shown in Figure 1 to Figure 3, a kind of insulation day-light greenhouse water hold over system, including several are mounted on day Water tank 1, water storage device 2, irrigation pipe network 3 on light rear wall of greenhouse 19, water tank 1 are embedded in the rear wall 19 of insulation day-light greenhouse, storage Water installations 2 are water tank or pond, are able to carry out the effect of warm water storage;
First solenoid valve 4, water inlet pipe and running water pipe in water storage device 2 are installed on the water inlet pipe in water storage device 2 Road connection;
It is equipped with heating device 5 in water storage device 2, the water in water storage device 2 is heated by heating device 5, so that The water recycled in water storage device 2 and water tank 1 is warm water, improves the temperature of water tank 1, so after improving wall 19 temperature, guarantee The heat insulating ability of wall 19 afterwards;
First water pump 6 is connect with filler pipe 7, and the water inlet pipe of each water tank 1 is connected to filler pipe 7;
The outlet pipe of each water tank 1 is connected to a return pipe 9;
Return pipe 9 is connected to water storage device 2, and third solenoid valve 11 is equipped on return pipe 9;
The irrigation being connected to irrigation pipe network 3 is equipped on the outlet pipe to the return pipe 9 between third solenoid valve 11 of water tank 1 Water pipe 8 is successively arranged second solenoid valve 10 and the second water pump 12 on the irrigation pipe 8 of return pipe 9 to irrigation pipe network 3, irrigates When, the warm water in water tank 1 is irrigated from the discharge of irrigation pipe network 3, the temperature on ground in canopy will not be made to reduce, guarantee plant Normal growth, heat is absorbed using sunlight on daytime by water tank 1 and water storage device 2, so that in water tank 1 and water storage device 2 Water become warm water, distribute heat at night and guarantee that the indoor temperature of sunlight will not be lower, while can be improved rear wall 19 Heat insulating ability;And the water in water tank 1 and water storage device 2 is heated using heating device 5, guarantees water tank 1 and water storage device 2 Interior water energy enough plays insulation effect;It is irrigated simultaneously using the water in water tank 1, guarantees that ground will not be by ice in canopy when winter Cold irrigation water reduces temperature, guarantees the normal growth of plant, realizes that water resource makes full use of, energy conservation and environmental protection;
Floating ball lever meter 13 is installed in the inside of any water tank 1, is surveyed with water of the floating ball lever meter 13 to water tank 1 Amount, prevents the water in water tank 1 from overflowing;
Floating ball lever meter 13, the first solenoid valve 4, second solenoid valve 10, third solenoid valve 11, the first water pump 6 and the second water Pump 12 is electrically connected with controller 14, and liquid level signal is sent controller 14, the control of controller 14 first by floating ball lever meter 13 Solenoid valve 4, second solenoid valve 10, the opening and closing of third solenoid valve 11, the start and stop of control the first water pump 6 and the second water pump 12, first Solenoid valve 4, second solenoid valve 10 and third solenoid valve 11 are normally close valve;
When to adding water in water storage device 2, controller 14 controls the first solenoid valve 4 and opens, and tap water flows into water storage device 2 It is interior;
When to water tank 1 plus water, controller 14 controls the starting of the first water pump 6, and the water of water storage device 2 is evacuated in water tank 1, After floating ball lever meter 13 detects that water level line is higher than preset value, floating ball lever meter 13 passes signal back controller 14, control the One water pump 6 stops;
When needing 5 pairs of uses of heating device to heat the water in water tank 1 and water storage device 2, controller 14 controls third Solenoid valve 11 is opened, and controls the starting of the first water pump 6, and is opened heating device 5 and heated to the water in water storage device 2, water storage dress It sets water in 2 to enter in water tank 1 by the first water pump 6 from filler pipe 7, the water in water tank 1 enters return pipe 9 and flows into water storage device 2 It is interior, water is heated using heating device 5,19 temperature of rear wall of insulation day-light greenhouse is improved, guarantees the temperature in insulation day-light greenhouse Degree is suitable;
When being irrigated using the water in water tank 1, controller 14 controls second solenoid valve 10 and can open, and controls second Water pump 12 starts, and the warm water in water tank 1 is irrigated from the discharge of irrigation conduit 3.
Heating device 5 is electrothermal tube 15, and electrothermal tube 15 is fixed on the inside of water storage device 2, is stored up using electrothermal tube 15 The heating of water in water installations 2.
Filter 18 is equipped on the second water pump 12 to the irrigation pipe 8 between irrigation pipe network 3, using filter 18 to water Water in case 1 is filtered, and is avoided being mixed with sundries in water tank 1 in water and is blocked irrigation conduit 3.
Embodiment 2: a kind of as shown in Figures 3 to 5, insulation day-light greenhouse water hold over system, overall structure and embodiment 1 Identical, difference is: heating device 5 further includes solar water heater 16 and third water pump 17, solar water heater 16 into Water pipe is connect by pipeline with the third water pump 17 being mounted on inside water storage device 2, and the outlet pipe of solar water heater 16 passes through Pipeline is connect with water storage device 2;
It recycles, utilizes in use, the water in water storage device 2 is evacuated to solar water heater 16 by third water pump 17 Solar energy auxiliary heats water, and energy conservation and environmental protection reduces the operation cost of insulation day-light greenhouse.
The above is only the preferred embodiment of the utility model only, is not intended to limit the utility model, all at this Within the spirit and principle of utility model, any modification, equivalent replacement, improvement and so on should be included in the utility model Protection scope within.

Claims (4)

1. a kind of insulation day-light greenhouse water hold over system, it is characterised in that: be mounted on after heliogreenhouse on wall including several Water tank, water storage device, irrigation pipe network;
First solenoid valve is installed on the water inlet pipe in the water storage device;
Heating device is equipped in the water storage device;
The first water pump is installed in the inside of the water storage device;First water pump is connect with filler pipe, each water tank Water inlet pipe be connected to the filler pipe;
The outlet pipe of each water tank is connected to a return pipe;
The return pipe is connected to the water storage device, and third solenoid valve is equipped on the return pipe;
It is equipped on the outlet pipe to the return pipe between the third solenoid valve of the water tank and connects with the irrigation pipe network Logical irrigation pipe is successively arranged second solenoid valve and on the irrigation pipe of the return pipe to the irrigation pipe network Two water pumps;
Floating ball lever meter is installed in the inside of any water tank;
The floating ball lever meter, first solenoid valve, the second solenoid valve, the third solenoid valve, first water pump It is electrically connected with the controller with second water pump, liquid level signal is sent the controller by the floating ball lever meter, described Controller controls first solenoid valve, the second solenoid valve, the opening and closing of the third solenoid valve, control first water pump With the start and stop of second water pump.
2. a kind of insulation day-light greenhouse water hold over system according to claim 1, it is characterised in that: the heating device is Electrothermal tube, the electrothermal tube are fixed on the inside of the water storage device.
3. a kind of insulation day-light greenhouse water hold over system according to claim 2, it is characterised in that: the heating device is also Including solar water heater and third water pump, the water inlet pipe of the solar water heater by pipeline and is mounted on the water storage dress Internal third water pump connection is set, the outlet pipe of the solar water heater is connect by pipeline with the water storage device.
4. a kind of insulation day-light greenhouse water hold over system according to any one of claims 1 to 3, it is characterised in that: described Second water pump to the irrigation pipe between the irrigation pipe network is equipped with filter.
CN201920229099.0U 2019-02-21 2019-02-21 A kind of insulation day-light greenhouse water hold over system Active CN209660072U (en)

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Application Number Priority Date Filing Date Title
CN201920229099.0U CN209660072U (en) 2019-02-21 2019-02-21 A kind of insulation day-light greenhouse water hold over system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920229099.0U CN209660072U (en) 2019-02-21 2019-02-21 A kind of insulation day-light greenhouse water hold over system

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111183836A (en) * 2019-02-21 2020-05-22 内蒙古中天科技有限公司 Heat-preservation sunlight greenhouse water heat storage system
CN112075324A (en) * 2020-08-14 2020-12-15 石河子大学 Drip irrigation system heats night

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111183836A (en) * 2019-02-21 2020-05-22 内蒙古中天科技有限公司 Heat-preservation sunlight greenhouse water heat storage system
CN112075324A (en) * 2020-08-14 2020-12-15 石河子大学 Drip irrigation system heats night

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