CN106818452A - Plant cultivating device - Google Patents
Plant cultivating device Download PDFInfo
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- CN106818452A CN106818452A CN201710135638.XA CN201710135638A CN106818452A CN 106818452 A CN106818452 A CN 106818452A CN 201710135638 A CN201710135638 A CN 201710135638A CN 106818452 A CN106818452 A CN 106818452A
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- liquid
- cultivating container
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- liquid dish
- cultivating
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- A—HUMAN NECESSITIES
- A01—AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
- A01G—HORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
- A01G31/00—Soilless cultivation, e.g. hydroponics
- A01G31/02—Special apparatus therefor
- A01G31/06—Hydroponic culture on racks or in stacked containers
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- A—HUMAN NECESSITIES
- A01—AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
- A01G—HORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
- A01G31/00—Soilless cultivation, e.g. hydroponics
- A01G2031/006—Soilless cultivation, e.g. hydroponics with means for recycling the nutritive solution
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- Y—GENERAL 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
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02P—CLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
- Y02P60/00—Technologies relating to agriculture, livestock or agroalimentary industries
- Y02P60/20—Reduction of greenhouse gas [GHG] emissions in agriculture, e.g. CO2
- Y02P60/21—Dinitrogen oxide [N2O], e.g. using aquaponics, hydroponics or efficiency measures
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- Life Sciences & Earth Sciences (AREA)
- Environmental Sciences (AREA)
- Hydroponics (AREA)
Abstract
The present invention relates to a kind of plant cultivating device, including rack, the multilayer cultivating container that is distributed in from top to bottom in rack and the feed flow circulatory system, each cultivating container top is provided with inlet, bottom and is provided with leakage fluid dram;The feed flow circulatory system includes liquid reserve tank, liquid up-hill line, pump, multiple turns liquid dish, the upper end mouth of pipe of liquid up-hill line is downwards and directly over the inlet of the superiors' cultivating container, turn liquid dish top for uncovered structure, bottom is provided with leakage hole, it is each to turn the leakage fluid dram lower section that liquid dish is separately positioned on each layer cultivating container, the oral area of remaining leakage hole is set and positioned at the inlet top of lower floor's cultivating container adjacent thereto down in addition to undermost leakage hole, during neighbouring two turn liquid dish, the leakage hole that upside turns liquid dish turns liquid dish top positioned at downside.Due to eliminating the connection of the pipeline between adjacent two layers cultivating container in the feed flow circulatory system in the device of this case, simple structure, user is easy to use.
Description
Technical field
The present invention relates to a kind of plant cultivating device.
Background technology
In agricultural production, using artificial required for the artificial light source of simulated solar irradiation and supply plant and mineral nutrition
Prepare nutrient solution and carry out planting plants(Such as vegetables, fruits and vegetables)Plant culture be also seen everywhere.Small-sized plant cultivation equipment(Such as
The plant culture cabinet that domestic type plant culture cabinet, school or laboratory use)Due to the requirement of small lot planting plants can be met,
Also more and more occur commercially in the form of special household electrical appliance.
A kind of household plant factory is disclosed in the Chinese patent of publication number CN201967457U(That is plant cultivating device),
The household plant factory of the present invention has nutrient solution for liquid back pipe road system, supply line system by nutrient solution feedwater threeway,
Nutrient solution water hose quick connector, nutrient solution water hose, the fast plugboard of nutrient solution water hose, nutrient solution water hose are fast
Valve, nutrient solution feedwater bend-head combination is inserted to constitute;Each road drainage pipeline system is connected by nutrient solution Return water hoses, nutrient solution is returned
Water connector, nutrient solution backwater elbow, nutrient solution backwater threeway combination are constituted.In the plant factor, due to cultivating bed case and giving
Water piping system has annexation, when user needs to remove a certain cultivation bed case from cupboard, due to having between pipeline
Contact relation, other cultivation bed casees cannot also be operated, and because pipeline is fixed, user can not plant to adjacent two layers
Distance up and down between training bed case is adjusted;Therefore, using there is inconvenience.
The content of the invention
In order to solve the above-mentioned technical problem, it is an object of the invention to provide a kind of plant cultivating device easy to use.
In order to realize the purpose of foregoing invention, the present invention is adopted the following technical scheme that:A kind of plant cultivating device, including:
One rack;
Multilayer cultivating container, the cultivating container described in multilayer is arranged on described interior of equipment cabinet from top to down, described in each layer
There is liquid trickling passage, top to be provided with least one inlet, bottom and be provided with least one discharge opeing for cultivating container inside
Mouthful, described inlet, liquid trickling passage and leakage fluid dram are sequentially communicated;
The one feed flow circulatory system, for providing liquid needed for plant culture to the cultivating container described in multilayer, described feed flow is followed
Loop systems include that one is used to preserve the liquid reserve tank of liquid needed for the plant culture, liquid up-hill line, pump, quantity and the cultivation
The consistent multiple of the culture container number of plies turns liquid dish, and described liquid up-hill line has end pipe mouthful and a upper end mouth of pipe, institute
The pump stated has an import and an outlet, and described import is connected with described liquid reserve tank, described outlet and the liquid
The lower end mouth of pipe of up-hill line is connected, and the upper end mouth of pipe of the liquid up-hill line is being located at cultivating container described in the superiors just
Top and faced with the inlet of cultivating container described in the superiors, described turns liquid dish top for uncovered structure, bottom
It is provided with least one and turns the leakage hole that liquid dish inside connects with described, the liquid dish that turns described in each is separately positioned on each layer
Below the leakage fluid dram of the cultivating container, liquid dish is turned described in remaining in addition to the leakage hole for turning liquid dish described in orlop
Leakage hole be respectively positioned on the surface of the downside adjacent thereto cultivating container and with the inlet phase of cultivating container this described
Just right, undermost described leakage hole is connected with inside described liquid reserve tank;Turn liquid dish described in neighbouring two
In, the leakage hole that liquid dish is turned described in upside is located at the top for turning liquid dish described in downside.
In above-mentioned technical proposal, it is preferred that the undermost leakage hole passes through a liquid downstream pip and described storage
It is connected inside liquid case.
In above-mentioned technical proposal, it is preferred that described liquid reserve tank is open topped structure, the undermost leakage hole position
Directly over described liquid reserve tank.
In above-mentioned technical proposal, it is preferred that the cultivating container described in each layer includes the cultivation box positioned at bottom and covering
Field planting plate at the top of the cultivation box, described fluid reservoir is located inside the cultivation box, and described field planting plate is provided with plant
Enter multiple opening portions of plant.
In above-mentioned technical proposal, it is preferred that described inlet is located on described field planting plate.
In above-mentioned technical proposal, it is preferred that the described liquid dish that turns is fixedly mounted in described body.
In above-mentioned technical proposal, it is preferred that the liquid trickling serpentine-like distribution of passage inside the cultivating container.
The present invention obtains following beneficial effect compared with prior art:Due to not utilizing pipeline between each layer cultivating container
It is attached, by " the bridge that liquid dish is in fluid communication as both sides cultivating container that turns set up below each cultivating container
Beam ".So that when user arbitrarily removes one layer of cultivating container, without extracting pipeline, and a whole set of feed flow circulatory system is being removed
Remain to meet normal feed flow and the discharge opeing of remainder layer cultivating container after certain one or more layers cultivating container, therefore, the plant of this case
Due to eliminating the connection of the pipeline between adjacent two layers cultivating container in the feed flow circulatory system in culture apparatus, simple structure is used
It is more convenient that family uses.
Brief description of the drawings
Accompanying drawing 1 is the schematic perspective view of plant cultivating device of the invention;
Accompanying drawing 2 is the schematic perspective view of cultivating container of the invention and the feed flow circulatory system;
Accompanying drawing 3 is the schematic front view after cultivating container of the invention and the assembling of the feed flow circulatory system;
Accompanying drawing 4 is cultivating container internal structure schematic diagram of the invention;
Accompanying drawing 5 is in apparatus of the present invention, after ground floor cultivating container is removed, rest layers cultivating container and the feed flow circulatory system are assembled
Schematic front view afterwards;
Accompanying drawing 6 is in apparatus of the present invention, after second layer cultivating container is removed, rest layers cultivating container and the feed flow circulatory system are assembled
Schematic front view afterwards;
Accompanying drawing 7 is in apparatus of the present invention, after first and second layer of cultivating container is removed, remaining third layer cultivating container and feed flow are circulated
Schematic front view after system assembles;
Wherein:100th, plant cultivating device;1st, rack;2nd, cabinet door;31st, ground floor cultivating container;311st, box is cultivated;312nd, it is colonized
Plate;313rd, opening portion;314th, ground floor inlet;315th, ground floor leakage fluid dram;4th, the feed flow circulatory system;
32nd, second layer cultivating container;321st, box is cultivated;322nd, it is colonized plate;323rd, opening portion;324th, second layer inlet;325、
Second layer leakage fluid dram;33rd, third layer cultivating container;331st, box is cultivated;332nd, it is colonized plate;333rd, opening portion;334th, third layer is entered
Liquid mouthful;335th, third layer leakage fluid dram;316th, liquid trickling passage;4th, the feed flow circulatory system;41st, liquid reserve tank;42nd, liquid ascending tube
Road;43rd, pump;441st, ground floor turns liquid dish;442nd, the second layer turns liquid dish;443rd, third layer turns liquid dish;421st, lower end pipe
Mouthful;422nd, the upper end mouth of pipe;431st, import;432nd, export;45th, liquid downstream pip.
Specific embodiment
To describe technology contents, structural feature, institute's reached purpose and effect of invention in detail, below in conjunction with embodiment simultaneously
Accompanying drawing is coordinated to be described in detail.
Plant cultivating device 100 as shown in Figure 1, including rack 1, the front side of rack 1 are provided with a pair of cabinet doors 2, cabinet door 2
Middle part is set to transparent part in order to being observed inside rack 1.Three layers of cultivating container are provided with from top to bottom in rack 1
31st, 32 and 33, the inside for being arranged on rack that each layer cultivating container can be removed is additionally provided with for providing in rack 1
The feed flow circulatory system 4 of liquid needed for plant culture.
As shown in Figure 2,3, ground floor cultivating container 31 includes being located at the cultivation box 311 of bottom and is covered in from top to bottom
The field planting plate 312 at the top of cultivation box 311.Field planting plate 312 is provided with multiple opening portions 313 of implantation plant, is colonized on plate 312
It is further opened with ground floor inlet 314 near the position of edge, and the bottom for cultivating box 311 is provided with ground floor leakage fluid dram 315.
Second layer cultivating container 32 includes being located at the cultivation box 321 of bottom and is covered in the field planting plate 322 at the top of cultivation box 321.It is fixed
Multiple opening portions 323 that plate 322 is provided with implantation plant are planted, the is further opened near the position of edge at it on field planting plate 322
Two layers of inlet 324, the bottom for cultivating box 321 is provided with second layer leakage fluid dram 325.Third layer cultivating container 33 includes being located at down
The cultivation box 331 in portion and the field planting plate 332 being covered at the top of cultivation box 331.Field planting plate 332 is provided with the multiple of implantation plant
Opening portion 333, third layer inlet 334 is further opened with field planting plate 332 at it near the position of edge, cultivates the bottom of box 331
Portion is provided with third layer leakage fluid dram 335.
As shown in figure 4, the cultivation box 311 of ground floor cultivating container 31 is internally provided with liquid trickling passage 316, liquid flow
The serpentine-like distribution of passage 316 is dropped down, it is extended at where ground floor leakage fluid dram 315 from the place of ground floor inlet 314, liquid
Trickling passage 316 enables the liquid that trickled therefrom by cultivating all regions of box 311, ground floor inlet 314,
Liquid trickling passage 316, ground floor leakage fluid dram 315 are sequentially communicated.Remaining second layer cultivating container 32, third layer cultivating container 33
Cultivation box inside be provided with ground floor cultivating container 31 cultivation box 311 inside liquid trickle passage 316 it is identical or
Similar serpentine channel, to enable that the liquid into each cultivation box is flowed through inside whole cultivation box.
Again as shown in Figure 2,3, the feed flow circulatory system 4 include one be used for storing plant cultivation needed for liquid liquid reserve tank 41,
Liquid up-hill line 42, pump 43, ground floor turn that the liquid dish 441, second layer turns liquid dish 442 and third layer turns liquid dish 443.Liquid
Body up-hill line 42 has the upper end mouth of pipe 422 of end pipe mouthful 421 and, and pump 43 has an import 431 and an outlet 432, pump
43 import 431 is connected with liquid reserve tank 41, and the outlet 432 of pump 43 is connected with the lower end mouth of pipe 421 of liquid up-hill line 42.
Ground floor turns that the liquid dish 441, second layer turns liquid dish 442 and third layer turns the L-shaped structure of liquid dish 443, ground floor switching
The liquid disk 441, second layer turns liquid dish 442 and third layer turns the top of liquid dish 443 and is uncovered structure, and ground floor turns liquid dish
441 bottom is provided with one and connects the ground floor leakage hole 4411 that the inside of liquid dish 441 connects, second layer switching liquid with ground floor
The bottom of disk 442 is provided with one and connects the second layer leakage hole 4421 that the inside of liquid dish 442 connects, third layer switching with the second layer
The bottom of liquid disk 443 is provided with one and connects the third layer leakage hole 4431 that the inside of liquid dish 443 connects with third layer, and the second layer turns
Liquid dish 442 is located at the lower section of second layer leakage fluid dram 325 of second layer cultivating container 32, and third layer turns liquid dish 443 positioned at the 3rd
The lower section of third layer leakage fluid dram 335 of layer cultivating container 33.In this example, three layers turn liquid dish consistency from top to bottom arrangement, wherein, ground floor
The surface that the ground floor leakage hole 4411 on liquid dish 441 connects liquid dish 442 positioned at the second layer is connect, the second layer connects liquid dish
Second layer leakage hole 4421 on 442 connects the surface of liquid dish 442 positioned at third layer, so, when the cultivation for removing any a layer
Culture container, remaining cultivating container still continues solution needed for supply growth.
The upper end mouth of pipe 422 of liquid up-hill line 42 is downwards and positioned at the ground floor inlet of ground floor cultivating container 31
314 surface, ground floor turns liquid dish 441 positioned at the lower section of ground floor leakage fluid dram 315 of ground floor cultivating container 31, the second layer
Cultivating container 32 turns the lower section of liquid dish 441 positioned at ground floor and ground floor turns the ground floor leakage hole 4411 of liquid dish 441
Second layer inlet 324 with second layer cultivating container 32 is faced, and the second layer turns liquid dish 442 positioned at second layer cultivating container
32 lower section of second layer leakage fluid dram 325, third layer cultivating container 33 turns lower section and the second layer of liquid dish 442 positioned at the second layer
The third layer inlet 334 of the second layer leakage hole 4421 and third layer cultivating container 33 that turn liquid dish 442 is faced, third layer
Turn liquid dish 443 positioned at the lower section of third layer leakage fluid dram 335 of third layer cultivating container 33, third layer turns the 3rd of liquid dish 443
Layer leakage hole 4431 is connected with liquid reserve tank 41 by a liquid downstream pip 45.In other embodiments, it is also possible to by liquid storage
It is uncovered structure that case is set to top, so the leakage hole that orlop turns liquid dish can be arranged in into just going up for liquid reserve tank
Side, and solution is imported into liquid reserve tank by liquid down going channel need not be set.
As shown in figure 3, when three layers of cultivating container work, opening pump 43, the solution in liquid reserve tank 41 will be transported to
In liquid up-hill line 42, solution flows out from the upper end open 423 of liquid up-hill line 42, and after through ground floor inlet 314
Enter into inside ground floor cultivating container 31 liquid trickling passage 316 in, solution is of short duration flow through ground floor cultivating container 31 after
Flowed out from ground floor leakage fluid dram 315, fallen subsequently into during ground floor turns liquid dish 441, and further from ground floor leakage hole
4411 outflows, then then enter into second layer cultivating container 32 from second layer inlet 324, solution is in second layer cultivating container
Flowed out from second layer leakage fluid dram 325 again after 32 short stays, liquid dish 442 is turned into the second layer, and further let out from the second layer
Liquid mouthfuls 4421 is flowed out, then then enters into third layer cultivating container 33 from third layer inlet 334, and solution is cultivated in third layer
Flowed out from third layer leakage fluid dram 335 again after the short stay of container 33, liquid dish 442 is turned into third layer, finally, not by first,
2nd, the surplus solution that the plant in three cultivating containers is absorbed will turn the third layer leakage hole of liquid dish 442 from third layer successively
4431st, liquid downstream pip 45 is back in liquid reserve tank 41, and such solution will complete one cycle.
As shown in figure 5, when ground floor cultivating container is removed, when only second and third layer cultivating container works, opening pump 43, storage
Solution in liquid case 41 will be transported in liquid up-hill line 42, and solution flows from the upper end open 423 of liquid up-hill line 42
Go out, then fall directly into during ground floor turns liquid dish 441, and then flowed out from ground floor leakage hole 4411, then from the second layer
Inlet 324 is entered into second layer cultivating container 32, and solution is after the short stay of second layer cultivating container 32 again from the second layer
Leakage fluid dram 325 is flowed out, and liquid dish 442 is turned into the second layer, and is further flowed out from second layer leakage hole 4421, then then from
Three layers of inlet 334 are entered into third layer cultivating container 33, and solution is after the short stay of third layer cultivating container 33 again from
Three layers of leakage fluid dram 335 are flowed out, and liquid dish 442 is turned into third layer, finally, are not absorbed by second and third layer of cultivating container implants
Surplus solution will turn the third layer leakage hole 4431 of liquid dish 442, liquid downstream pip 45 from third layer successively and be back to storage
In liquid case 41, such solution will complete one cycle.
As shown in fig. 6, when second layer cultivating container is removed, when only first and third layer cultivating container works, opening pump 43, storage
Solution in liquid case 41 will be transported in liquid up-hill line 42, and solution flows from the upper end open 423 of liquid up-hill line 42
Go out, and after in the liquid trickling passage 316 that enters into inside ground floor cultivating container 31 through ground floor inlet 314, solution is short
Non-permanent flow flows out after crossing ground floor cultivating container 31 from ground floor leakage fluid dram 315, falls subsequently into during ground floor turns liquid dish 441,
And further flow out from ground floor leakage hole 4411, then then fall directly into the second layer and turn liquid dish 442, and further from second
Layer leakage hole 4421 flows out, then then enters into third layer cultivating container 33 from third layer inlet 334, and solution is in third layer
Flowed out from third layer leakage fluid dram 335 again after the short stay of cultivating container 33, liquid dish 442 is turned into third layer, finally, not by
First, the surplus solution not being absorbed by plants of three layers of cultivating container implants absorption will turn liquid dish 442 from third layer successively
Third layer leakage hole 4431, liquid downstream pip 45 are back in liquid reserve tank 41, and such solution will complete one cycle.
As shown in fig. 7, when first and second layer of cultivating container is removed, when being only left the work of third layer cultivating container, opening pump
43, the solution in liquid reserve tank 41 will be transported in liquid up-hill line 42, upper end open of the solution from liquid up-hill line 42
423 outflows, solution is fallen directly into during ground floor turns liquid dish 441, and is further flowed out from ground floor leakage hole 4411, then is fallen
Enter the second layer and turn liquid dish 442, and further flow out from second layer leakage hole 4421, then entered into from third layer inlet 334
In third layer cultivating container 33, solution flows out from third layer leakage fluid dram 335 again after the short stay of third layer cultivating container 33, enters
Enter third layer and turn liquid dish 442, then fall subsequently into third layer and turn liquid dish 442, finally, not by third layer cultivating container interplantation
The surplus solution that thing absorbs will turn the third layer leakage hole 4431 of liquid dish 442, liquid downstream pip 45 times from third layer successively
Flow in liquid reserve tank 41, such solution will complete one cycle.
The need in order to meet plant growth, should also be provided for being carried out to the plant in each layer cultivating container in rack 1
The illumination apparatus of light filling(Not shown in figure).In order that obtaining in cold winter, this device 100 can still meet plant growth need
Ask, at least one electric heater unit is provided with cabinet 1(Not shown in figure).
The plant cultivating device 100 of the present embodiment is adapted to the hydroponic plant of shallow water cultivation, i.e. root system of plant without directly soaking
In the solution just can growing plants, when seedling meets transplanting and requires, be displaced in cultivating container, plant is planted from each layer
Grown at opening in the field planting plate of culture container, solution needed for growth is supplied at regular time and quantity by the feed flow circulatory system, it is real
Now constantly growth.
The above embodiments merely illustrate the technical concept and features of the present invention, its object is to allow person skilled in the art
Scholar will appreciate that present disclosure and implement according to this that it is not intended to limit the scope of the present invention.It is all according to the present invention
The equivalent change or modification that spirit is made, should all be included within the scope of the present invention.
Claims (7)
1. a kind of plant cultivating device, including:
One rack;
Multilayer cultivating container, the cultivating container described in multilayer is arranged on described interior of equipment cabinet from top to down, described in each layer
There is liquid trickling passage, top to be provided with least one inlet, bottom and be provided with least one discharge opeing for cultivating container inside
Mouthful, described inlet, liquid trickling passage and leakage fluid dram are sequentially communicated;
The one feed flow circulatory system, for providing liquid needed for plant culture to the cultivating container described in multilayer, described feed flow is followed
Loop systems include that one is used to preserve the liquid reserve tank of liquid needed for the plant culture, liquid up-hill line, pump, on described liquid
Row pipeline has end pipe mouthful and a upper end mouth of pipe, and described pump has an import and an outlet, described import with it is described
Liquid reserve tank be connected, described outlet is connected with the lower end mouth of pipe of the liquid up-hill line;It is characterized in that:
The described feed flow circulatory system also includes that the quantity multiple consistent with the cultivating container number of plies turns liquid dish, and described turns
Liquid dish top is uncovered structure, bottom is provided with least one and turns the leakage hole that liquid dish inside connects, the liquid with described
The upper end mouth of pipe of body up-hill line be located at the surface of cultivating container described in the superiors and with cultivating container described in the superiors
Inlet is faced, and turns the leakage fluid dram lower section that liquid dish is separately positioned on each layer cultivating container described in each, under most
The leakage hole for turning to turn described in remaining outside the leakage hole of liquid dish liquid dish described in layer is respectively positioned on described in downside adjacent thereto
The surface of cultivating container and faced with the inlet of cultivating container this described, undermost described leakage hole with it is described
Liquid reserve tank inside be connected;Turn described in neighbouring two in liquid dish, the leakage hole that liquid dish is turned described in upside is located at
Turn the top of liquid dish described in downside.
2. plant cultivating device according to claim 1, it is characterised in that:The leakage hole for turning liquid dish described in orlop leads to
A liquid downstream pip is crossed to be connected with inside described liquid reserve tank.
3. plant cultivating device according to claim 1, it is characterised in that:Described liquid reserve tank is open topped structure,
The leakage hole for turning liquid dish described in orlop is located at the surface of the liquid reserve tank.
4. plant cultivating device according to claim 1, it is characterised in that:Cultivating container described in each layer includes being located at down
The cultivation box in portion and the field planting plate being covered at the top of the cultivation box, described fluid reservoir are located inside the cultivation box, institute
The field planting plate stated is provided with multiple opening portions of implantation plant.
5. plant cultivating device according to claim 4, it is characterised in that:Described inlet is located at described field planting plate
On.
6. plant cultivating device according to claim 1, it is characterised in that:It is described turn liquid dish be fixedly mounted on it is described
Body in.
7. plant cultivating device according to claim 1, it is characterised in that:Liquid trickling inside the cultivating container is logical
The serpentine-like distribution in road.
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Cited By (5)
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CN107318625A (en) * | 2017-07-10 | 2017-11-07 | 深圳前海弘稼科技有限公司 | Cultivation system |
CN108433267A (en) * | 2018-03-28 | 2018-08-24 | 浙江天使之泪珍珠股份有限公司 | A kind of pearl brightening process |
CN111990242A (en) * | 2020-08-11 | 2020-11-27 | 南京汉尔斯生物科技有限公司 | Seed culture system |
CN115623981A (en) * | 2022-12-21 | 2023-01-20 | 北京猫猫狗狗科技有限公司 | Vegetable planting machine and water planting plant planting method |
WO2023096464A1 (en) * | 2021-11-29 | 2023-06-01 | 엘지전자 주식회사 | Plant cultivation apparatus |
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