CN211983090U - Irrigation device for ecological restoration - Google Patents
Irrigation device for ecological restoration Download PDFInfo
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- CN211983090U CN211983090U CN202020151571.6U CN202020151571U CN211983090U CN 211983090 U CN211983090 U CN 211983090U CN 202020151571 U CN202020151571 U CN 202020151571U CN 211983090 U CN211983090 U CN 211983090U
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Abstract
The utility model relates to the technical field of irrigation equipment, in particular to an irrigation equipment for ecological restoration, which comprises an embedded plate, wherein the top end of the embedded plate is provided with a storage rack, the inner wall of the embedded plate is provided with a micropump, the outer wall of the storage rack is sleeved with a medicine storage box, the outer wall of the storage rack is spliced with an electromagnetic valve tube, the other end of the electromagnetic valve tube is spliced in a liquid collecting tube, the liquid collecting tube is fixed on the top plate of the storage rack, the bottom end of the liquid collecting tube is spliced with a transfusion tube, and the top surface of the storage rack is provided with a fan; the beneficial effects are that: the utility model provides an ecological prosthetic irrigation equipment will bury the board and insert the soil layer after, pour into the inside watering liquid of storage frame through the micropump and bury the inboard inside and water at the root of vegetation through irrigating the hole, reduce the evaporation capacity at irrigation water source, and through the solenoid valve pipe with the inside liquid fertile injection collector tube of explosive box, then bury in the board through the transfer line inflow.
Description
Technical Field
The utility model relates to an irrigation equipment correlation technique field specifically is an irrigation equipment for ecological remediation.
Background
The urban plants are usually planted in small planting areas surrounded by stones, the roots of the plants to be planted are transplanted in the small planting areas, the area of the soil surface in the small planting areas is limited, the water absorption is limited, the plants are watered usually in a manual mode or a sprinkler for simulating rainfall, the manual mode can directly send water to the plants, the waste of water in places which are not needed is effectively prevented, a large amount of manpower and material resources are wasted, the watering efficiency is low, the sprinkler for simulating rainfall can water the plants in a large area, but the water is sprayed in the air in small liquid drops, and the small liquid drops are easy to evaporate in dry climates, so that the waste of water resources is caused.
In the prior art, an infiltration irrigation method is usually adopted for garden irrigation, so that water permeates into plant roots from the ground surface, during irrigation, accumulated water generated in soil easily causes oxygen deficiency of the root systems of plants, the respiration of the root systems is weakened, and the plants die, and when the plants are diseased, an irrigation device cannot directly apply the pesticide to the plants, equipment is required to be independently equipped for manual pesticide application and sterilization of the plants, and the pesticide cannot be dispensed and conveyed to the plant roots in time, so that the plant maintenance cost is high, and a large amount of manpower and material resources are wasted; therefore, the utility model provides an irrigation equipment for ecological remediation is used for solving above-mentioned problem.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide an irrigation equipment for ecological remediation to solve the problem that proposes among the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides an irrigation equipment for ecological remediation, is including burying the board, the top of burying the board is provided with the storage frame, it is provided with the micropump on the inner wall of board to bury, the cover is equipped with the explosive box on the outer wall of storage frame, it has the solenoid valve pipe to peg graft on the outer wall of storage frame, the other end of solenoid valve pipe is pegged graft in the collector tube, the collector tube is fixed on the roof of storage frame, and the bottom of collector tube is pegged graft and is had the transfer line, and the top surface of storage frame is provided with the fan, is provided with the gas collecting bin on the roof of storage frame, the bottom surface of gas collecting bin is pegged graft and is had the tuber pipe, has seted up the irrigation hole on the outer wall of burying the board, the inside in irrigation hole is provided with hinders the mud core, and the dog-house has all been.
Preferably, bury the board and be inside hollow square platelike structure, bury the bottom welding of board and have the toper board, the storage frame is hexagon frame structure, and the liquid suction pipe of micropump runs through the roof of burying the board, and the drain pipe of micropump is in the inside of burying the board.
Preferably, the explosive box is the hollow circular structure in inside, and solenoid valve pipe runs through explosive box, storage frame and collecting tube simultaneously, and the collecting tube is the cylindrical structure.
Preferably, the air outlet of the fan penetrates through the top plate of the storage rack, and the gas collection bin is of a square frame structure.
Preferably, the irrigation holes are of a round hole structure, the irrigation holes are arranged in two groups, the two groups of irrigation holes are symmetrically distributed about the center of the bottom end of the embedded plate, the mud blocking cores comprise grid pieces, the two grid pieces are arranged, and the two grid pieces are clamped by the water permeable cores.
Compared with the prior art, the beneficial effects of the utility model are that:
1. the utility model provides an ecological remediation's irrigation equipment inserts the buried plate into the soil layer, pours the watering liquid of storage frame inside into the buried plate and waters at the root of vegetation through the irrigation hole through the micropump, reduces the evaporation capacity of irrigation water source, and pours the liquid fertilizer of explosive box inside into the collector tube through the solenoid valve pipe, then flows into in the buried plate through the transfer line;
2. the utility model provides an ecological remediation's irrigation equipment adds at storage frame top and establishes the fan, and the air current that the fan produced pours into after the collection gas storehouse into through the tuber pipe and buries the case and mix the dilution to watering water source and liquid fertile, avoids the liquid medicine to dilute inhomogeneously and influence the property of a medicine.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic view of the structure of the embedded plate of the present invention;
FIG. 3 is an enlarged view of the structure at A in FIG. 1;
fig. 4 is an enlarged schematic view of the structure at B in fig. 1.
In the figure: the device comprises an embedding plate 1, a storage rack 2, a micropump 3, a medicine storage box 4, an electromagnetic valve tube 5, a liquid collecting tube 6, a liquid conveying tube 7, a fan 8, a gas collecting bin 9, an air pipe 10, an irrigation hole 11, a mud blocking core 12, a grid sheet 121, a permeable core 122, a feeding port 13 and a sealing head 14.
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 to 4, the present invention provides a technical solution: an irrigation device for ecological restoration comprises an embedded plate 1, wherein a storage frame 2 is welded at the top end of the embedded plate 1, a micropump 3 is welded on the inner wall of the embedded plate 1, the embedded plate 1 is of a square plate-shaped structure with a hollow interior, a conical plate is welded at the bottom end of the embedded plate 1, the storage frame 2 is of a hexagonal frame structure, a liquid suction pipe of the micropump 3 penetrates through a top plate of the embedded plate 1, a liquid outlet pipe of the micropump 3 is positioned inside the embedded plate 1, an embedded groove is formed in the surface of a soil layer to embed the embedded plate 1 into the embedded groove, or the top structure of the embedded plate 1 is knocked to smash the embedded plate 1 into the soil layer, a mud blocking core 12 is positioned at the root height of vegetation, the micropump 3 is started regularly to suck irrigation water sources inside the storage frame 2 downwards into the embedded plate 1, the irrigation water sources permeate into the soil layer after soaking the water permeable core 122, irrigation to the root of the vegetation is realized, the suction amount of the micropump 3, and the water stored in the storage rack 2 is the total water for multiple times of irrigation.
The cover is equipped with explosive box 4 on the outer wall of storage frame 2, it has solenoid valve pipe 5 to peg graft on the outer wall of storage frame 2, the other end of solenoid valve pipe 5 is pegged graft in collector tube 6, collector tube 6 welds on the roof of storage frame 2, the bottom of collector tube 6 is pegged graft and is had transfer line 7, explosive box 4 is inside hollow circular structure, solenoid valve pipe 5 runs through explosive box 4 simultaneously, storage frame 2 and collector tube 6, collector tube 6 is the cylindrical structure, when needing to be planted the root and annotate the medicine, at first to burying the inside supplementary irrigation water source of board 1, then open solenoid valve pipe 5 and inject water in collector tube 6, transfer line 7 is carried the inside liquid medicine of collector tube 6 to burying in board 1 and is mixed with the irrigation water source.
The top surface of the storage frame 2 is welded with a fan 8, the top plate of the storage frame 2 is welded with a gas collecting bin 9, an air outlet of the fan 8 penetrates through the top plate of the storage frame 2, the gas collecting bin 9 is of a square frame structure, the bottom surface of the gas collecting bin 9 is inserted with an air pipe 10, the outer wall of the embedded plate 1 is provided with irrigation holes 11, the interior of the irrigation holes 11 is fixedly connected with two mud blocking cores 12, the irrigation holes 11 are of a round hole structure, the irrigation holes 11 are provided with two groups, the two groups of irrigation holes 11 are symmetrically distributed about the center of the bottom end of the embedded plate 1, each mud blocking core 12 comprises two grid pieces 121, each grid piece 121 is provided with two water permeable cores 122, the fan 8 is started to inject air flow into the gas collecting bin 9, and the air flow is blown into the embedded plate 1 along, the air current mixes liquid medicine and irrigation water source and dilutes, and the liquid medicine after diluting permeates to the soil layer through hindering mud core 12, and micropump 3, solenoid valve pipe 5 and fan 8 all pass through the wire connection of burying underground with the ground through the wire.
The top surfaces of the storage rack 2 and the medicine storage box 4 are both provided with a feeding port 13, the feeding port 13 is internally screwed with a seal head 14, irrigation water source is added into the feeding port 13 of the top plate of the storage rack 2 and is screwed and blocked by the seal head 14, and liquid medicine is added into the feeding port 13 of the top plate of the embedded plate 1 and is screwed and blocked by the seal head 14.
The working principle is as follows: during actual work, an embedded groove is formed in the surface of a soil layer, the embedded plate 1 is embedded into the embedded groove, or the top structure of the embedded plate 1 is knocked to pound the embedded plate 1 into the soil layer, the mud blocking core 12 is located at the root height of vegetation, an irrigation water source is added from a feeding port 13 of a top plate of the storage rack 2 and is blocked by virtue of a screw joint of a sealing head 14, a liquid medicine is added into the feeding port 13 of the top plate of the embedded plate 1 and is blocked by virtue of a screw joint of the sealing head 14, the micropump 3 is started regularly to suck the irrigation water source in the storage rack 2 downwards into the embedded plate 1, the irrigation water source permeates into the soil layer after permeating the water permeable core 122, irrigation to realize irrigation on the root of the vegetation, the suction amount of the micropump 3 is one-time irrigation water amount, and the water amount stored in the storage; when the vegetation root is required to be injected with the medicine, firstly, an irrigation water source is supplemented to the interior of the embedded plate 1, then, the electromagnetic valve pipe 5 is opened to inject water into the liquid collecting pipe 6, the liquid medicine in the liquid collecting pipe 6 is conveyed to the embedded plate 1 through the liquid conveying pipe 7 and mixed with the irrigation water source, the fan 8 is started to inject air flow into the gas collecting bin 9, the air flow is blown into the embedded plate 1 along the air pipe 10, the liquid medicine and the irrigation water source are mixed and diluted through the air flow, the diluted liquid medicine permeates into the soil layer through the mud blocking core 12, and the micropump 3, the electromagnetic valve pipe 5 and the fan 8 are all connected with electric wires embedded in the ground.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.
Claims (5)
1. An irrigation device for ecological restoration, comprising a buried plate (1), characterized in that: the top end of the embedded plate (1) is provided with a storage rack (2), the inner wall of the embedded plate (1) is provided with a micropump (3), the outer wall of the storage rack (2) is sleeved with a medicine storage box (4), the outer wall of the storage rack (2) is spliced with a solenoid valve tube (5), the other end of the solenoid valve tube (5) is spliced in a liquid collecting tube (6), the liquid collecting tube (6) is fixed on the top plate of the storage rack (2), the bottom end of the liquid collecting tube (6) is spliced with a liquid conveying tube (7), the top surface of the storage rack (2) is provided with a fan (8), the top plate of the storage rack (2) is provided with a gas collecting bin (9), the bottom surface of the gas collecting bin (9) is spliced with an air pipe (10), the outer wall of the medicine storage box (1) is provided with an irrigation hole (11), the interior of the irrigation hole (11) is provided with a mud blocking core (12), and the top surfaces of the storage rack (2) and the storage rack, a sealing head (14) is arranged in the feeding port (13).
2. The irrigation device for ecological restoration according to claim 1, wherein: bury board (1) and be inside hollow square platelike structure, the bottom welding that buries board (1) has the toper board, and storage frame (2) are hexagon frame structure, and the drain pipe of micropump (3) runs through the roof that buries board (1), and the drain pipe of micropump (3) is in the inside of burying board (1).
3. The irrigation device for ecological restoration according to claim 1, wherein: the medicine storage box (4) is of a hollow circular structure, the solenoid valve pipe (5) penetrates through the medicine storage box (4), the storage frame (2) and the liquid collecting pipe (6) simultaneously, and the liquid collecting pipe (6) is of a cylindrical structure.
4. The irrigation device for ecological restoration according to claim 1, wherein: the air outlet of the fan (8) penetrates through the top plate of the storage rack (2), and the gas collection bin (9) is of a square frame structure.
5. The irrigation device for ecological restoration according to claim 1, wherein: irrigation hole (11) are round hole shape structure, and irrigation hole (11) are provided with two sets ofly, and two sets of irrigation hole (11) are about burying the bottom central symmetry distribution of board (1), hinder loam core (12) including net piece (121), and net piece (121) are provided with two, and the centre gripping has ventilative core (122) between two net pieces (121).
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CN202020151571.6U CN211983090U (en) | 2020-02-04 | 2020-02-04 | Irrigation device for ecological restoration |
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CN202020151571.6U CN211983090U (en) | 2020-02-04 | 2020-02-04 | Irrigation device for ecological restoration |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN116349467A (en) * | 2023-03-02 | 2023-06-30 | 沂源县林业保护发展中心(沂源县野生动植物资源保护中心、沂源县绿化委员会保障中心) | Forestry engineering is grown seedlings and is used automatic humidification device |
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2020
- 2020-02-04 CN CN202020151571.6U patent/CN211983090U/en active Active
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN116349467A (en) * | 2023-03-02 | 2023-06-30 | 沂源县林业保护发展中心(沂源县野生动植物资源保护中心、沂源县绿化委员会保障中心) | Forestry engineering is grown seedlings and is used automatic humidification device |
CN116349467B (en) * | 2023-03-02 | 2023-08-04 | 沂源县林业保护发展中心(沂源县野生动植物资源保护中心、沂源县绿化委员会保障中心) | Forestry engineering is grown seedlings and is used automatic humidification device |
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Effective date of registration: 20230901 Address after: No. 4 Beiquan Lane, Xinjian North Road, Yuyang District, Yulin City, Shaanxi Province, 719051 Patentee after: Yulin Green Giant Technology Service Co.,Ltd. Address before: No.38 dongxingtun, Wulong Village, Zhangmu Township, qintang District, Guigang City, Guangxi Zhuang Autonomous Region Patentee before: Yang Qunjiao |
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