CN103392567A - Irrigation system for three-dimensional greening walls - Google Patents

Irrigation system for three-dimensional greening walls Download PDF

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Publication number
CN103392567A
CN103392567A CN2013103074411A CN201310307441A CN103392567A CN 103392567 A CN103392567 A CN 103392567A CN 2013103074411 A CN2013103074411 A CN 2013103074411A CN 201310307441 A CN201310307441 A CN 201310307441A CN 103392567 A CN103392567 A CN 103392567A
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water
inductive probe
casing
irrigation
irrigation system
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CN2013103074411A
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Chinese (zh)
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CN103392567B (en
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张宇顺
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Priority to CN201310307441.1A priority Critical patent/CN103392567B/en
Publication of CN103392567A publication Critical patent/CN103392567A/en
Priority to TW103104535A priority patent/TW201503817A/en
Priority to HK14101887.8A priority patent/HK1188683A1/en
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Publication of CN103392567B publication Critical patent/CN103392567B/en
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Abstract

The invention discloses an irrigation system for three-dimensional greening walls. The irrigation system comprises a water supply portion, a water storage portion, a detection portion and a control portion; the water supply portion supplies irrigation water; the water storage portion is used for storing at least a part of the irrigation water supplied by the water supply portion; the detection portion is used for detecting the water quantity of the water stored by the water storage portion; the control portion selectively controls the water supply portion to supply the water or stop supplying the water according to the water quantity detected by the detection portion. The irrigation system has the advantages that the three-dimensional greening walls can be automatically irrigated, labor is saved, the irrigation water for the three-dimensional greening walls can be monitored in real time, and the water utilization rate can be increased.

Description

The three-dimensional green wall irrigation system
Technical field
The present invention relates to the vertical planting technical field, relate in particular to a kind of three-dimensional green wall irrigation system.
Background technology
Greening wall, refer to take full advantage of different land occupation conditions, select Climbing Plant and other plant setting also to depend on or the greening mode of paving on various structure and other space structure, comprise the greening on viaduct, building wall, domatic, bank of river, roof, courtyard, flower stand, frame, balcony, corridor, post, fence, withered tree and various artificial hillock and Architectural Equipment.
The key element of green plants growth comprises sunlight, air and moisture, and sunlight and air are not to need the factor of too much considering in the greening process usually, need in three-dimensional green wall that artificial to participate in maximum be exactly to provide suitable moisture for plant, the growth of plant can not be excess moisture can not enough affected, also not waste water resource will be guaranteed.
Existing greening wall is the manual watering normally, when the pouring personnel supply with moisture and quantity delivered by micro-judgment, not only cost of labor is high for the pouring mode of prior art, and the pouring effect is undesirable, need to propose a kind of more economic, practical and efficient irrigation method to make up the deficiencies in the prior art.
Summary of the invention
One object of the present invention: a kind of three-dimensional green wall irrigation system is provided, realizes the automation that three-dimensional green wall is irrigated.
Another object of the present invention: a kind of three-dimensional green wall irrigation system is provided, improves efficiency of water application.
A further object of the present invention: provide a kind of three-dimensional green wall irrigation system, to three-dimensional green wall irrigation water Real Time Monitoring.
For reaching this purpose, the present invention by the following technical solutions:
A kind of three-dimensional green wall irrigation system comprises:
Water unit, provide irrigation water;
Water storage section, store at least partly in order to the irrigation water that described water unit is provided;
Test section, the water yield that stores in order to detect described water storage section;
Control part, the described water unit of water yield Selective Control that detects by described test section supplies water or stops supplying water.
As a kind of preferred version, described water storage section comprises limiting the casing in water space and/or plant growth space.
Wherein, described test section comprises the inductive probe that is arranged in described casing, and described inductive probe is connected with described control part by connecting line, so that control part detects the casing actual water level by inductive probe, controls water unit water supply or stops supplying water.
Preferably, described inductive probe comprises lack of water inductive probe and full water inductive probe, has minimum designated water level and the highest designated water level in described casing, and described lack of water inductive probe all is connected with described control part with described full water inductive probe;
When the lack of water inductive probe detected the casing actual water level lower than described minimum designated water level, control part was controlled water unit and is supplied water;
When the full water inductive probe measured the casing actual water level near described the highest designated water level, control part was controlled water unit and is stopped supplying water.
Preferably, described inductive probe comprises the lack of water inductive probe, has minimum designated water level in described casing, when described lack of water inductive probe detects the casing actual water level lower than described minimum designated water level, described control part is controlled water unit and is supplied water, on described casing, discharge structure is set, in order to discharging more than the irrigation water of set amount.
Wherein, described discharge structure comprises the drainpipe that is arranged on described casing, and described drainpipe forms discharge outlet in described casing, and described discharge outlet is higher than described minimum designated water level.
Further preferred, described drainpipe has the first row mouth of a river that is arranged in described casing and is positioned at the second row mouth of a river of bottom half, and the described first row mouth of a river and described second row mouth of a river in the vertical direction are staggered in arrangement.
As another kind of preferred version, described water storage section comprises limiting ventilative, the permeable bag in plant growth space, the irrigation water that described water unit provides can be partially absorbed and store for plant growth.
Further, described water storage section also comprises the aqua storage tank that is connected with described bag, and described aqua storage tank is connected with described water unit, in order to will export more than the irrigation water of set amount the water unit recycling to.
Preferably, described test section comprises the inductive probe that is arranged in described aqua storage tank, described inductive probe is connected with described control part by connecting line, described aqua storage tank has aqua storage tank full-water level and aqua storage tank safety level, described aqua storage tank safety level is lower than described aqua storage tank full-water level, when inductive probe detects the aqua storage tank actual water level near the aqua storage tank full-water level, control part exports water in aqua storage tank to water unit, so that the aqua storage tank actual water level is down to the aqua storage tank safety level at least.
As another preferred version, described water unit is connected with the filling system, this filling system can quantitatively provide plant growth nutrient solution and/or bactericide, and the irrigation water that described water unit provides fully mixes with nutrient solution and/or bactericide with the plant growth that described filling system provides.
Beneficial effect of the present invention is: irrigation system provided by the invention realizes the automation pouring to three-dimensional green wall, has saved manpower, can, to three-dimensional green wall irrigation water Real Time Monitoring, improve efficiency of water application.
Description of drawings
Below according to drawings and embodiments the present invention is described in further detail.
Fig. 1 is the structural representation of the three-dimensional green wall of the first embodiment.
Fig. 2 is control principle drawing of the present invention.
Fig. 3 is a kind of structural representation of implementing water level detecting of the first embodiment.
Fig. 4 is the fundamental diagram of structure shown in Figure 3.
Fig. 5 is the structural representation that the another kind of the first embodiment is implemented water level detecting.
Fig. 6 is that Fig. 5 implements the discharge structure schematic diagram under the water level detecting mode.
Fig. 7 is the drain structure schematic diagram shown in Fig. 6.
Fig. 8 is the structural representation that the three-dimensional green wall shown in Fig. 1 is connected mutually.
Fig. 9 is three-dimensional green wall in the second embodiment and the structural representation of irrigation system.
Figure 10 is the structural representation of inductive probe of the present invention.
Figure 11 is the inductive probe mounting structure exploded view shown in Figure 10.
Figure 12 is the inductive probe assembly structure schematic diagram shown in Figure 10.
In figure:
1, casing; 11, minimum designated water level; 12, the highest designated water level; 13, drainpipe; 131, the first row mouth of a river; 132, the second row mouth of a river;
2, plant basin body;
3, bag; 31, sub-bag;
4, aqua storage tank; 41, connector;
30, lack of water inductive probe; 40, full water inductive probe; 50, connecting line;
301, probe; 302, locating piece; 303, screw rod; 304, positioning convex.
Embodiment
Further illustrate technical scheme of the present invention below in conjunction with accompanying drawing and by embodiment.
The invention provides a kind of three-dimensional green wall irrigation system, comprising: water unit provides irrigation water; Water storage section, store at least partly in order to the irrigation water that described water unit is provided; Test section, the water yield that stores in order to detect described water storage section; Control part, the described water unit of water yield Selective Control that detects by described test section supplies water or stops supplying water.
Water unit provided by the invention can adopt electromagnetic valve device, and is equipped with output pipe, realizes the water supply to three-dimensional green wall.
Water unit of the present invention is not only applicable to provide irrigation water, equally is applicable to the composition that other need be irrigated yet, for example, and plant nutrition liquid etc.
Described water unit can also be connected with the filling system, this filling system can quantitatively provide plant growth nutrient solution and/or bactericide, and the irrigation water that described water unit provides fully mixes with nutrient solution and/or bactericide with the plant growth that described filling system provides.
For example, when when some occasion need to provide nutrient solution and/or bactericide, export again after can making the irrigation water that described water unit provides and the plant growth that described filling system provides fully being mixed in pipeline with nutrient solution and/or bactericide, the supply plant growth uses, nutrient solution can play facilitation to plant growth, and plant growth is accelerated; Bactericide can carry out bactericidal purifying to irrigation water,, to guarantee Water Quality for Irrigation, guarantees the reliable of plant growth environment.
As the first embodiment of the present invention, shown in Figure 1, described water storage section comprises casing 1, and this box house limits water space and plant basin body 2 installing spaces.
Test section comprises the inductive probe that is arranged in described casing, and inductive probe is connected with described control part by connecting line, so that control part detects the casing actual water level by inductive probe, controls water unit water supply or stops supplying water.
The control principle of irrigation system as shown in Figure 2, inductive probe sends to signaling conversion circuit by connecting line with signal after water level signal being detected, signaling conversion circuit is converted to the signal of telecommunication with water level signal, and pass to the MCU control circuit, the action of MCU control circuit control relay, and then control the unlatching of entering water electromagnetic valve or close, realize supplying water or stop supplying water.
As a kind of scheme more specifically, as shown in Figure 3, inductive probe comprises lack of water inductive probe 30 and full water inductive probe 40, have minimum designated water level 11 and the highest designated water level 12 in casing 1, lack of water inductive probe 30 all is connected with described control part by connecting line 50 with full water inductive probe 40.
The operation principle of irrigation system as shown in Figure 4, at first judges by 30 pairs of lack of water positions of lack of water inductive probe, whether judges in three-dimensional green wall lack of water, do not control system finishing work in judgment result is that three-dimensional green wall during lack of water; During lack of water, when namely lack of water inductive probe 30 detected casing 1 actual water level lower than minimum designated water level 11, control system was controlled entering water electromagnetic valve and is opened in judgment result is that three-dimensional green wall, was that three-dimensional green wall supplies water.Carry out the full-water level judgement by full water inductive probe 40 testing results in water supply process, continue to supply water when judgment result is that not full water, when judgment result is that full water, be that full water inductive probe 40 is when measuring casing 1 actual water level and approaching the highest designated water level 12, control system is controlled closed electromagnetic valve, stops supplying water for three-dimensional green wall.
As another kind scheme more specifically, as shown in Figure 5, inductive probe comprises lack of water inductive probe 30, has minimum designated water level 11 in casing 1, lack of water inductive probe 30 is connected with control part by connecting line 50, when casing 1 interior lack of water, be that lack of water inductive probe 30 is while the interior actual water level of casing 1 being detected lower than minimum designated water level 11, control part is controlled water unit and is supplied water, when casing 1 is about to full water, by being arranged on casing, discharge structure is set, will discharges more than the irrigation water of set amount.
Fig. 6 show a kind of this programme including but not limited to the discharge structure view, described discharge structure comprises the drainpipe 13 that is arranged on casing 1, drainpipe 13 is in the interior formation discharge outlet of casing 1, described discharge outlet is higher than minimum designated water level 11.When owing to continuing to add water or rainy weather and cause moisture in casing 1 sharply to collect, as long as rising to the discharge outlet height, water level namely from discharge outlet, realizes discharging, can not accumulate in casing.
Referring to Fig. 7, drainpipe 13 has the first row mouth of a river 131 that is arranged in casing 1 and the second row mouth of a river 132 that is positioned at bottom half, and the first row mouth of a river 131 is staggered in arrangement with the second row mouth of a river 132 in the vertical directions.Above-mentioned purpose of design is: when two tanks goes to upper and lower series connection (referring to Fig. 8), for the water that guarantees upper layer box body 1 is unlikely to flow directly into the drainpipe 3 of lower layer box body 1 and can not retain lower layer box body 1 from its drainpipe 13.If the first row mouth of a river of drainpipe 131 and the second row mouth of a river 132 in the vertical directions are staggered in arrangement and can avoid above-mentioned hidden danger, what those skilled in the art can be known certainly is, the structure of drainpipe 13 is not limited to the example of Fig. 7, can also adopt straight tube structure, then make this straight tube and casing 1 bottom angled setting, can realize that also two discharge outlet of drainpipe stagger in vertical plane.
As the second embodiment of the present invention, shown in Figure 9, described water storage section comprises limiting ventilative, the permeable bag 3 in plant growth space, a plurality of sub-bags 31 are set on bag 3, can fill plant growth material (such as soil etc.) and cultivated plant in sub-bag 31, the irrigation water that described water unit provides can be partially absorbed and store for plant growth.
Described water storage section also comprises the aqua storage tank 4 that is arranged at bag 3 belows and with bag 3, is connected, and aqua storage tank 4 is connected by pipeline with described water unit, in order to will export more than the irrigation water of set amount the water unit recycling to.It will be appreciated by persons skilled in the art that except aqua storage tank other can be in order to the device of the irrigation water that receives bag also applicable to the present invention, for example, water storage device also can adopt water storage bag.
Between aqua storage tank 4 and bag 3 including but not limited to connected mode: establish connector 41 at the interior convex of aqua storage tank 4, offer the bag installing hole on this connector 41, this bag installing hole can be passed in the end of bag 3, and with the bag body, carries out affixed.
At the interior inductive probe that arranges of aqua storage tank 4, inductive probe is connected with control part by connecting line, and at aqua storage tank 4, aqua storage tank full-water level and aqua storage tank safety level are set, and the aqua storage tank safety level is lower than the aqua storage tank full-water level, when inductive probe detects the aqua storage tank actual water level near the aqua storage tank full-water level, control part exports water in aqua storage tank to water unit, so that the aqua storage tank actual water level is down to the aqua storage tank safety level at least.
For the inductive probe in above-mentioned two embodiment, can be referring to as shown in Figure 10,11,12, inductive probe 14 structures and inductive probe mounting structure schematic diagram are shown, inductive probe 14 has two probes 301 and is connected by connecting plate, the middle part of connecting plate is provided with the probe installing hole, and two probes 301 are symmetrical with respect to probe installing hole central shaft.
The mounting structure of inductive probe comprises locating piece 302 and screw rod 303, at casing 1(or aqua storage tank 4) on be provided with the positioning convex 304 that matches with locating piece 302, positioning convex 304 is arranged on casing 1(or aqua storage tank 4 by locating piece 302) in, be provided with locating hole on locating piece 302, the inductive probe installing hole is screwed hole, locating hole is corresponding with inductive probe installing hole size and position, screw rod 303 is passed locating hole and is threaded connection inductive probe by below, makes dismountable casing 1(or the aqua storage tank 4 of being installed on of inductive probe) in.
What need statement is; above-mentioned embodiment is only preferred embodiment of the present invention and institute's application technology principle; in technical scope disclosed in this invention, the variation that any those skilled in the art of being familiar with easily expected or replacement, all should be encompassed in protection scope of the present invention.

Claims (10)

1. a three-dimensional green wall irrigation system, is characterized in that, comprising:
Water unit, provide irrigation water;
Water storage section, store at least partly in order to the irrigation water that described water unit is provided;
Test section, the water yield that stores in order to detect described water storage section;
Control part, the described water unit of water yield Selective Control that detects by described test section supplies water or stops supplying water.
2. three-dimensional green wall irrigation system according to claim 1, is characterized in that, described water storage section comprises limiting the casing in water space and/or plant growth space.
3. three-dimensional green wall irrigation system according to claim 2, it is characterized in that, described test section comprises the inductive probe that is arranged in described casing, described inductive probe is connected with described control part by connecting line, so that control part detects the casing actual water level by inductive probe, controls water unit water supply or stops supplying water.
4. three-dimensional green wall irrigation system according to claim 3, it is characterized in that, described inductive probe comprises lack of water inductive probe and full water inductive probe, have minimum designated water level and the highest designated water level in described casing, described lack of water inductive probe all is connected with described control part with described full water inductive probe;
When the lack of water inductive probe detected the casing actual water level lower than described minimum designated water level, control part was controlled water unit and is supplied water;
When the full water inductive probe measured the casing actual water level and reaches described the highest designated water level, control part was controlled water unit and is stopped supplying water.
5. three-dimensional green wall irrigation system according to claim 3, it is characterized in that, described inductive probe comprises the lack of water inductive probe, has minimum designated water level in described casing, when described lack of water inductive probe detects the casing actual water level lower than described minimum designated water level, described control part is controlled water unit and is supplied water, and on described casing, discharge structure is set, in order to discharging more than the irrigation water of set amount.
6. three-dimensional green wall irrigation system according to claim 5, is characterized in that, described discharge structure comprises the drainpipe that is arranged on described casing, and described drainpipe forms discharge outlet in described casing, and described discharge outlet is higher than described minimum designated water level.
7. three-dimensional green wall irrigation system according to claim 6, it is characterized in that, described drainpipe has the first row mouth of a river that is arranged in described casing and is positioned at the second row mouth of a river of bottom half, and the described first row mouth of a river and described second row mouth of a river in the vertical direction are staggered in arrangement.
8. three-dimensional green wall irrigation system according to claim 1, it is characterized in that, described water storage section comprises limiting ventilative, the permeable bag in plant growth space, the irrigation water that described water unit provides can be partially absorbed and store for plant growth.
9. three-dimensional green wall irrigation system according to claim 8, it is characterized in that, described water storage section also comprises the aqua storage tank that is connected with described bag, and described aqua storage tank is connected with described water unit, in order to will export more than the irrigation water of set amount the water unit recycling to.
10. three-dimensional green wall irrigation system according to claim 1, it is characterized in that, described water unit is connected with the filling system, this filling system can quantitatively provide plant growth nutrient solution and/or bactericide, and the irrigation water that described water unit provides fully mixes with nutrient solution and/or bactericide with the plant growth that described filling system provides.
CN201310307441.1A 2013-07-19 2013-07-19 Irrigation system for three-dimensional greening walls Expired - Fee Related CN103392567B (en)

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Application Number Priority Date Filing Date Title
CN201310307441.1A CN103392567B (en) 2013-07-19 2013-07-19 Irrigation system for three-dimensional greening walls
TW103104535A TW201503817A (en) 2013-07-19 2014-02-12 Irrigation system for three-dimensional greening walls
HK14101887.8A HK1188683A1 (en) 2013-07-19 2014-02-27 Irrigation system for three-dimentional planting wall

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CN201310307441.1A CN103392567B (en) 2013-07-19 2013-07-19 Irrigation system for three-dimensional greening walls

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CN103392567B CN103392567B (en) 2015-05-06

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Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105493962A (en) * 2015-12-11 2016-04-20 卢志文 Automatic plant wall irrigation system
CN109422300A (en) * 2017-08-22 2019-03-05 芜湖美的厨卫电器制造有限公司 The method for controlling water level and water purifier of water purifier water bag
CN109422303A (en) * 2017-08-22 2019-03-05 芜湖美的厨卫电器制造有限公司 The method for controlling water level and water purifier of water purifier water bag
CN109618908A (en) * 2018-06-04 2019-04-16 昆山绿手指生物科技有限公司 Water storage recycles dual-purpose three-dimensional plant wall water circulation system
CN109716960A (en) * 2019-02-18 2019-05-07 邓子宇 Pin-connected panel vertical greening wall planting unit
CN111387828A (en) * 2020-03-23 2020-07-10 广州技诺智能设备有限公司 Water quantity control method and system for self-service equipment

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Publication number Priority date Publication date Assignee Title
JP2004350528A (en) * 2003-05-27 2004-12-16 Yanmar Agricult Equip Co Ltd Wall surface greening device
CN101473762A (en) * 2009-01-15 2009-07-08 深圳市润和天泽环境科技发展有限公司 Solid cultivation system and mounting method thereof
KR101105543B1 (en) * 2010-12-16 2012-01-17 배문옥 Gardening pot for 3-dimensional greening and 3-dimensional greening system using the same
CN103004573A (en) * 2012-12-26 2013-04-03 张泽彤 Ecological integrated decoration unit and use method thereof
CN203353336U (en) * 2013-07-19 2013-12-25 张宇顺 Three-dimensional greening wall irrigation system

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CN203039285U (en) * 2012-12-31 2013-07-03 安徽索特电气设备有限公司 Box-type ring network switch device

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2004350528A (en) * 2003-05-27 2004-12-16 Yanmar Agricult Equip Co Ltd Wall surface greening device
CN101473762A (en) * 2009-01-15 2009-07-08 深圳市润和天泽环境科技发展有限公司 Solid cultivation system and mounting method thereof
KR101105543B1 (en) * 2010-12-16 2012-01-17 배문옥 Gardening pot for 3-dimensional greening and 3-dimensional greening system using the same
CN103004573A (en) * 2012-12-26 2013-04-03 张泽彤 Ecological integrated decoration unit and use method thereof
CN203353336U (en) * 2013-07-19 2013-12-25 张宇顺 Three-dimensional greening wall irrigation system

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105493962A (en) * 2015-12-11 2016-04-20 卢志文 Automatic plant wall irrigation system
CN109422300A (en) * 2017-08-22 2019-03-05 芜湖美的厨卫电器制造有限公司 The method for controlling water level and water purifier of water purifier water bag
CN109422303A (en) * 2017-08-22 2019-03-05 芜湖美的厨卫电器制造有限公司 The method for controlling water level and water purifier of water purifier water bag
CN109618908A (en) * 2018-06-04 2019-04-16 昆山绿手指生物科技有限公司 Water storage recycles dual-purpose three-dimensional plant wall water circulation system
CN109716960A (en) * 2019-02-18 2019-05-07 邓子宇 Pin-connected panel vertical greening wall planting unit
CN111387828A (en) * 2020-03-23 2020-07-10 广州技诺智能设备有限公司 Water quantity control method and system for self-service equipment

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CN103392567B (en) 2015-05-06
HK1188683A1 (en) 2014-05-16
TW201503817A (en) 2015-02-01

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