CN210470287U - Efficient watering, fertilizing and conservation system for mine restoration - Google Patents

Efficient watering, fertilizing and conservation system for mine restoration Download PDF

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Publication number
CN210470287U
CN210470287U CN201921341552.3U CN201921341552U CN210470287U CN 210470287 U CN210470287 U CN 210470287U CN 201921341552 U CN201921341552 U CN 201921341552U CN 210470287 U CN210470287 U CN 210470287U
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water supply
water
fertilizing
baffle
fixing
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徐光前
张锦
高翔
钟志贤
胡维
王长城
蒋武明
黄伟韬
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Hunan Zhonghe Environmental Protection Technology Co ltd
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Hunan Zhonghe Environmental Protection Technology Co ltd
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Abstract

The utility model discloses a fertilization child care system waters for prosthetic high efficiency in mine, including domatic and cistern, be provided with water supply installation in the cistern, water supply installation connects a plurality of water spray mechanism, water spray mechanism includes the water supply pipe with water supply installation intercommunication, be fixed with a plurality of fixed subassemblies one between water supply pipe and domatic, domatic water spray mechanism side top that is located is provided with the baffle, just be provided with a plurality of fixed subassemblies two between baffle and the domatic, the cistern still is provided with controller and power outward, just the equal electric connection of water spray mechanism, water supply installation and controller the power, water spray mechanism, water supply installation electric connection the controller.

Description

Efficient watering, fertilizing and conservation system for mine restoration
Technical Field
The utility model relates to an ecological environment protection technical field specifically is a fertilization child care system that waters for mine restoration high efficiency.
Background
Mineral resources are very important non-renewable natural resources, and development and utilization of the mineral resources also cause serious ecological damage, so that the damaged mining area land gradually begins to be repaired as people more and more clearly realize that the coordinated development of economy and environment is the basis of the development of the whole society.
In the process of mine restoration, ecological restoration is required when a large area of steep slope is frequently encountered, and restoration is usually performed by using spray seeding, net hanging spray seeding (rock slope), a plant growth zone, an ecological blanket, a fish scale pit, a planting groove and other modes. When the above method is used for greening, except that the ecological blanket has a certain moisturizing function, the other greening methods all need watering for moisturizing; even if an ecological blanket with good water retention performance is used, in seasons with less rainwater or arid areas, the vegetation still needs watering and topdressing for conservation before germination and growth, and can survive, in order to ensure the survival rate and the greening coverage rate of the vegetation, the commonly used watering and topdressing means in the current engineering implementation are sprinkler spraying, reservoir and water pump spraying and the like, but because of the unique environment and engineering properties of the mine restoration engineering, when the watering is carried out by using the sprinkler for moisturizing, because the area of the mine restoration is large, the slope is steep, the traffic is inconvenient and the like, some areas sprayed by the sprinkler are difficult to be sprayed, and the sprinkler is difficult to be uniformly sprayed, some areas have large water volume, the surface soil is likely to be washed away and lost, some areas have small water volume, and the soil is difficult to be thoroughly watered; the mode that uses more in the engineering is when using cistern + water pump spraying to moisturize, nevertheless because factors such as power supply, water pump lift, energy consumption influence, some places like precipitous rock slope also can not be watered, leads to the vegetation survival rate in these places low not high of afforestation coverage.
SUMMERY OF THE UTILITY MODEL
Technical problem to be solved
The utility model provides a not enough to prior art, the utility model provides a fertilization child care system waters for mine is restoreed high efficiency has solved the child care mode that uses at present because self structure and the special topography in mine lead to construction difficulty, with high costs, the energy consumption is high, the water yield is inhomogeneous, the fertilization coverage of watering is incomplete, afforestation coverage and the lower problem of vegetation survival rate.
(II) technical scheme
In order to achieve the above purpose, the utility model discloses a following technical scheme realizes: the utility model provides a fertilization child care system that waters high efficiency for mine is restoreed, includes domatic and cistern, be provided with water supply installation in the cistern, a plurality of water spray mechanism are connected to water supply installation, water spray mechanism includes the water supply pipe with the water supply installation intercommunication, be fixed with a plurality of fixed subassembly one between water supply pipe and domatic, domatic being located water spray mechanism side top and being provided with the baffle, just be provided with a plurality of fixed subassembly two between baffle and the domatic, the cistern still is provided with controller and power outward, just the equal electric connection of water spray mechanism, water supply installation and controller the power, water spray mechanism, water supply installation electric connection the controller.
Preferably, the first fixing component comprises a first fixing rod, and a pipe clamp is fixed at the upper end of the first fixing rod.
Preferably, the first fixing assembly comprises a second fixing rod, the top end of the second fixing rod is in threaded connection with a fixing rod sleeve, and a pipe clamp is fixed at the upper end of the fixing rod sleeve.
Preferably, the pipe clamp is arranged in an inverted L shape.
Preferably, the baffle is arranged in a fan shape, and a plurality of fixing holes are formed in the middle shaft of the baffle.
Preferably, the second fixing component comprises a lower bolt, the top end of the lower bolt is in threaded connection with a sleeve, the top end of the sleeve penetrates through the fixing hole to be provided with a limiting bolt, and the limiting bolt is connected with the top end of the baffle.
Preferably, the top end of the sleeve is provided with a limit hole corresponding to the limit bolt, the sleeve is arranged below the baffle and is provided with a support rod, and the support rod and the limit bolt are arranged in parallel.
Preferably, the water supply pipeline is a hose, a tee pipe fitting is installed on the water supply pipeline corresponding to the water spraying mechanism, an electromagnetic valve is arranged on the water supply pipeline and located between the water spraying mechanism and the water supply device, and the electromagnetic valve is electrically connected with the controller.
Preferably, the water spraying mechanism comprises a rotary spray head, and a wire is arranged between the rotary spray head and the three-way pipe fitting.
Preferably, the water supply device is a water pump.
(III) advantageous effects
The utility model provides a high-efficient fertilization child care system that waters for mine restoration. The method has the following beneficial effects: the utility model discloses the efficiency of fertilization that waters when can effectively improve the steep domatic and the domatic greening construction of rock of mine restoration in-process large tracts of land and protect and breed can improve the survival rate of vegetation and whole domatic vegetation coverage, still effectively solve the construction difficulty, the volume of watering is inhomogeneous, the energy consumption is high, problem such as with high costs to can reduce the engineering risk of doing over again
The utility model can realize convenient construction through the matching of the fixed bolt and the hose; the spraying angle of water can be reduced by adjusting the angle of the baffle plate, and the spraying distance is adjusted; except the lower bolt anchored in the rock layer of the rock slope, the bolt can be recycled, and the cost is saved.
Drawings
FIG. 1 is a schematic view of the structure relationship of the present invention;
fig. 2 is a first schematic structural view of a fixing assembly of the present invention;
FIG. 3 is a schematic structural view of a fixing assembly of the present invention;
fig. 4 is a front view structural diagram of the casing of the present invention;
fig. 5 is a schematic view of the lower plug pin of the present invention;
fig. 6 is a schematic view of the structure of the baffle of the present invention.
In the figure, a slope surface 1, a water storage tank 2, a water supply device 3, a water supply pipeline 4, a baffle 5, a rotary spray head 6, an electromagnetic valve 7, a fixed rod I8, a pipe clamp 9, a fixed rod II 10, a fixed rod sleeve 11, a pair of wires 12, a fixed hole 13, a lower inserted pin 14, a sleeve 15, a limit inserted pin 16, a limit hole 17, a support rod 18 and a tee pipe fitting 19 are arranged.
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.
The invention will be further described with reference to the embodiments shown in the drawings to which:
example 1
As shown in fig. 1, 2, 4, 5 and 6, the high-efficiency watering and fertilizing conservation system for mine restoration comprises a slope surface 1 and a water storage tank 2, wherein the water storage tank 2 is built as required, in the engineering construction process, components such as a water supply pipeline 4, a rotary spray head 6 and the like are synchronously paved (the water supply pipeline 4 adopts a hose because the hard pipeline with a thin soil covering layer on the rock slope surface can not be buried underground for fixing, and a soil fixing component or a rock fixing component is adopted for different slope surfaces 1 so as to facilitate slope surface 1 construction), and finally the water supply pipeline 4 is connected to a water pump which is arranged in the water storage tank 2, and the water pump and a singlechip system controller are connected with a photovoltaic power supply or other power supply systems, the drawing power supply and the controller are not shown), a water supply device 3 is arranged in the water storage tank 2, the water supply device 3 is connected with a plurality of water spraying mechanisms, the plurality of water spraying mechanisms divide an area to be repaired into a plurality of areas through reasonable arrangement, namely according to the coverage range of the water spraying mechanisms, the water spraying mechanisms comprise water supply pipelines 4 communicated with a water supply device 3, the corresponding water supply pipelines 4, tee pipe fittings 19 (PVC materials), pair wires 12, electromagnetic valves 7 and water pump types are configured according to the actual area, the selected type of a rotary spray head 6 and the altitude of each area before construction, namely, because the problems of power supply, water pump lift, energy consumption and the like need to be considered, the power of a water pump used in an area with high altitude is larger than that of a water pump used in an area with low altitude, a plurality of first fixing components are fixed between the water supply pipelines 4 and a slope surface 1, a baffle plate 5 (PVC materials) is arranged above the water spraying mechanism, in the embodiment, the baffle plate 5 is arranged above the water spraying mechanism and towards one side of, adjust rotatory nozzle 6 coverage towards toe one side watering through adjusting the angle of baffle 5, just be provided with two fixed subassembly two between baffle 5 and the domatic 1, cistern 2 still is provided with single chip microcomputer system controller and power (the power comes from photovoltaic power station or commercial power or fuel generator or other electric power system, when the engineering is located intervene electric power difficulty, disposes photovoltaic power station as required, and photovoltaic power station includes polycrystalline silicon panel, energy storage system, inverter system etc.), just the equal electric connection of water spray mechanism, water supply installation 3 and controller the power, water spray mechanism, 3 electric connection of water supply installation the controller.
Fixed subassembly one includes dead lever 8, and dead lever 8 is as an organic whole manufacturing in this embodiment, is applicable to soil property domatic, 8 upper ends of dead lever are fixed with pipe strap 9, and 9 bayonets of the pipe strap 9 that the type of falling L set up are downward to the bayonet socket size coincide with the hose.
The pipe clamp 9 is arranged in an inverted L shape and used for fixing a hose.
The baffle 5 is arranged in a fan shape, a plurality of fixing holes 10 are formed in the middle shaft of the baffle 5, the fixing holes 10 are matched with the sleeves 15, and a fixing component II is clamped in one fixing hole 10.
The second fixing component comprises a lower bolt 14 (the lower bolt 14 is anchored in the slope surface 1), the top end of the lower bolt 14 is in threaded connection with a sleeve 15, namely, a threaded hole is formed in the bottom end of the sleeve 15, the top end of the lower bolt 14 is correspondingly provided with a matched external thread, the top end of the sleeve 15 penetrates through a fixing hole 10 and is provided with a limiting bolt 16, the limiting bolt 16 is a steel wire with the diameter larger than 2mm, and the limiting bolt 16 is connected with the top end of the baffle plate 5.
The top end of the sleeve 15 corresponds to the limiting bolt 16 and is provided with a limiting hole 17, the sleeve 15 is arranged below the baffle 5 and is provided with a supporting rod 18, the supporting rod 18 and the limiting bolt 16 are arranged in parallel, the bottom end of the baffle 5 is erected on the supporting rod 18, and the top end of the baffle 5 is detachably connected with the limiting bolt 16.
The water supply pipeline 4 is a hose, the tee pipe fitting 19 is installed on the water supply pipeline 4 corresponding to the water spraying mechanism, a pipe clamp is fixed at the connecting end of the tee pipe fitting 19 and the hose, the electromagnetic valve 7 is arranged between the water spraying mechanism and the water supply device 3 on the water supply pipeline 4, and the electromagnetic valve 7 is electrically connected with the controller, so that partitioned irrigation can be controlled conveniently.
The water spraying mechanism comprises a rotary spray head 6, the rotary spray head 6 can be a commercially available spray head or a self-made spray head driven by a motor, and a wire pair 12 is arranged between the rotary spray head 6 and the three-way pipe 19.
The water supply device 3 is a water pump.
Example 2
As shown in fig. 1, 3, 4, 5, 6, a high-efficiency watering and fertilizing conservation system for mine restoration comprises a slope surface 1 and a reservoir 2, wherein the reservoir 2 is built as required, in the engineering construction process, parts such as a water supply pipeline 4, a rotary spray head 6 and the like are synchronously paved (the water supply pipeline 4 cannot be buried underground and fixed due to a thin soil covering layer of a rock slope surface and a hard pipeline, so that the water supply pipeline 4 adopts a hose, and a soil fixing component or a rock fixing component is adopted for different slope surfaces 1, so that slope surface 1 construction is facilitated) and finally the water supply pipeline 4 is connected to a water pump which is arranged in the reservoir 2, and the water pump and a singlechip system controller are connected with a photovoltaic power supply or other power supplies), a water supply device 3 is arranged in the reservoir 2, the water supply device 3 is connected with a plurality of water spraying mechanisms, and the plurality of water spraying mechanisms divide the area to be restored into areas according to the coverage range that the water spraying mechanisms can cover The water spraying mechanism comprises a water supply pipeline 4 communicated with a water supply device 3, the water supply pipeline 4, a tee pipe fitting 19 (PVC material), a pair wire 12, an electromagnetic valve 7 and a water pump type which are corresponding are configured according to the actual area, the selected type of a rotary spray head 6 and the altitude of each area before construction, namely, the problems of power supply, pump lift, energy consumption and the like are considered, so that the power of the water pump used in the high altitude area is higher than that of the water pump used in the low altitude area, a plurality of first fixing components are fixed between the water supply pipeline 4 and a slope surface 1, a baffle 5 (PVC material) is arranged above the slope surface 1 on the side of the water spraying mechanism, the baffle 5 is arranged on one side of the slope foot above the water spraying mechanism in the embodiment, the coverage range of the rotary spray head 6 for watering on one side of the slope foot is adjusted by adjusting the angle of the baffle 5, and two second fixing components are, cistern 2 still is provided with single chip microcomputer system controller and power outward (the power comes from photovoltaic power station or commercial power or fuel generator or other electric power system, when the engineering is located intervene electric power difficulty, disposes the photovoltaic power station as required, and the photovoltaic power station includes polycrystalline silicon panel, energy storage system, inverter system etc.), just the equal electric connection of water spray mechanism, water supply installation 3 and controller the power, water spray mechanism, 3 electric connection of water supply installation the controller.
Fixed subassembly one includes two 10 dead levers, two 10 top threaded connection of dead lever have fixed rod cover 11 (11 bottom set up threaded hole of fixed rod cover, two 10 tops of dead lever correspond and are provided with identical external screw thread), 11 upper ends of fixed rod cover are fixed with pipe strap 9, and fixed subassembly one is applicable to the rock matter domatic in this embodiment, through two 10 anchor with the dead lever in the rock, screws fixed rod cover 11 again on dead lever 10, 11 upper ends of fixed rod cover are fixed with pipe strap 9, and the pipe strap 9 bayonet socket that the type of falling L set up is down to the bayonet socket size coincide with the hose.
The pipe clamp 9 is arranged in an inverted L shape and used for fixing a hose.
The baffle 5 is arranged in a fan shape, a plurality of fixing holes 13 are formed in the center shaft of the baffle 5, the fixing holes 13 are matched with the sleeves 15, and a fixing component II is clamped in one fixing hole 13.
The second fixing component comprises a lower bolt 14 (the lower bolt 14 is anchored in the slope), the top end of the lower bolt 14 is in threaded connection with a sleeve 15, namely, a threaded hole is formed in the bottom end of the sleeve 5, the top end of the lower bolt 14 is correspondingly provided with a matched external thread, the top end of the sleeve 15 penetrates through a fixing hole 13 and is provided with a limiting bolt 16, the limiting bolt 16 is a steel wire with the diameter larger than 2mm, and the limiting bolt 16 is connected with the top end of the baffle 5.
The top end of the sleeve 15 corresponds to the limiting bolt 16 and is provided with a limiting hole 17, the sleeve 15 is arranged below the baffle 5 and is provided with a supporting rod 18, the supporting rod 18 and the limiting bolt 16 are arranged in parallel, the bottom end of the baffle 5 is erected on the supporting rod 18, and the top end of the baffle 5 is detachably connected with the limiting bolt 16.
The water supply pipeline 4 is a hose, the tee pipe fitting 19 is installed on the water supply pipeline 4 corresponding to the water spraying mechanism, a pipe clamp is fixed at the connecting end of the tee pipe fitting 19 and the hose, the electromagnetic valve 7 is arranged between the water spraying mechanism and the water supply device 3 on the water supply pipeline 4, and the electromagnetic valve 7 is electrically connected with the controller, so that partitioned irrigation is facilitated.
The water spraying mechanism comprises a rotary spray head 6, the rotary spray head 6 can be a commercially available spray head or a self-made spray head driven by a motor, and a wire pair 12 is arranged between the rotary spray head 6 and the three-way pipe 19.
The water supply device 3 is a water pump.
The utility model discloses a theory of operation: when irrigation is needed, an operator can directly start the corresponding water pump, the electromagnetic valve 7 and the rotary spray head 6 according to regional distribution through the singlechip system controller, the water pump pumps water into the water supply pipeline 4 from the reservoir 2, the water passes through the tee pipe fitting 19 and the wire pair 12 and is finally sputtered by the rotary spray head 6, so that the uniformity of the irrigation water quantity of the whole region can be ensured, the spraying distance between the upward spraying (the direction of the top of the slope) and the downward spraying (the direction of the toe of the slope) of the rotary spray head 6 is larger due to the fact that the working place of the rotary spray head 6 is on the slope 1, when the rotary spray head 6 rotates to spray and irrigate towards the toe of the slope, the spraying range possibly exceeds the divided region range or even exceeds the toe of the slope, and therefore, the spraying angle of the water can be reduced by adjusting the angle of the baffle 5, so that the spraying distance towards the downward spraying (the direction of the toe of the, after the area is irrigated for a set time, the singlechip system controller automatically controls the water pump, the electromagnetic valve 7 and the rotary spray head 6 in the area to be closed, and the water pump, the electromagnetic valve 7 and the rotary spray head 6 in the next area are opened, so that the operation of the areas can prevent large-flow water flow from being formed on the slope 1 to wash the soil on the slope 1, the working power of the water pump can be effectively reduced, the selected water pump always works in the best state, the energy consumption is effectively reduced, when additional fertilization is needed, the fertilizer is only needed to be added into the reservoir 2, the fertilizer can be applied in the same way after being dissolved, watering and applying are not needed after the vegetation grows normally, the whole system can be dismantled (except for the lower bolt 14 and the second fixing rod 10 anchored under the rock slope rock layer), so that the repeated use can be realized, the utilization rate of equipment is improved, and the engineering cost is further reduced.
It is noted that, herein, relational terms such as first and second, and the like may be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
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 (10)

1. The utility model provides a fertilization child care system that waters high efficiency for mine is restoreed, includes domatic and cistern, its characterized in that, be provided with water supply installation in the cistern, water supply installation connects a plurality of water spray mechanism, water spray mechanism includes the water supply pipe with water supply installation intercommunication, be fixed with a plurality of fixed subassembly one between water supply pipe and domatic, domatic being located water spray mechanism side top and being provided with the baffle, just be provided with a plurality of fixed subassembly two between baffle and the domatic, the cistern still is provided with controller and power outward, just the equal electric connection of water spray mechanism, water supply installation and controller the power, water spray mechanism, water supply installation electric connection the controller.
2. The efficient watering and fertilizing conservation system for mine restoration as claimed in claim 1, wherein the first fixing component comprises a first fixing rod, and a pipe clamp is fixed on an upper end of the first fixing rod.
3. The efficient watering and fertilizing conservation system for mine restoration as claimed in claim 1, wherein the first fixing assembly comprises a second fixing rod, the top end of the second fixing rod is connected with a second fixing rod sleeve in a threaded manner, and a pipe clamp is fixed at the upper end of the second fixing rod sleeve.
4. The efficient watering and fertilizing conservation system for mine restoration according to any one of claims 2 or 3, wherein the pipe clamp is arranged in an inverted L shape.
5. The efficient watering and fertilizing conservation system for mine restoration as claimed in claim 1, wherein the baffle is fan-shaped, and the central shaft of the baffle is provided with a plurality of fixing holes.
6. The efficient watering and fertilizing conservation system for mine restoration according to claim 5, wherein the second fixing component comprises a lower bolt, the top end of the lower bolt is connected with a sleeve in a threaded mode, the top end of the sleeve is provided with a limiting bolt through a fixing hole, and the limiting bolt is connected with the top end of a baffle plate.
7. The efficient watering and fertilizing conservation system for mine restoration as claimed in claim 6, wherein the top end of the sleeve is provided with a limiting hole corresponding to the limiting bolt, the sleeve is provided with a support rod below the baffle, and the support rod and the limiting bolt are arranged in parallel.
8. The efficient watering and fertilizing conservation system for mine restoration as claimed in claim 1, wherein the water supply pipeline is a hose, a tee is installed on the water supply pipeline corresponding to the water spraying mechanism, a solenoid valve is installed on the water supply pipeline between the water spraying mechanism and the water supply device, and the solenoid valve is electrically connected with the controller.
9. The efficient watering and fertilizing conservation system for mine restoration according to claim 8, wherein the water spraying mechanism comprises a rotary nozzle, and a wire is installed between the rotary nozzle and the tee pipe fitting.
10. The efficient watering and fertilizing conservation system for mine restoration according to claim 1, wherein the water supply device is a water pump.
CN201921341552.3U 2019-08-19 2019-08-19 Efficient watering, fertilizing and conservation system for mine restoration Active CN210470287U (en)

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CN201921341552.3U CN210470287U (en) 2019-08-19 2019-08-19 Efficient watering, fertilizing and conservation system for mine restoration

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112753543A (en) * 2021-01-07 2021-05-07 彭贵阳 Dendrobium watering method and system

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112753543A (en) * 2021-01-07 2021-05-07 彭贵阳 Dendrobium watering method and system
WO2022148263A1 (en) * 2021-01-07 2022-07-14 彭贵阳 Dendrobium nobile watering method and system

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