WO2012099351A2 - Appareil de culture de plante fonctionnel présentant une fonction de fourniture d'eau automatique - Google Patents

Appareil de culture de plante fonctionnel présentant une fonction de fourniture d'eau automatique Download PDF

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Publication number
WO2012099351A2
WO2012099351A2 PCT/KR2012/000114 KR2012000114W WO2012099351A2 WO 2012099351 A2 WO2012099351 A2 WO 2012099351A2 KR 2012000114 W KR2012000114 W KR 2012000114W WO 2012099351 A2 WO2012099351 A2 WO 2012099351A2
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WO
WIPO (PCT)
Prior art keywords
container
fluid
plant
plant cultivation
supply
Prior art date
Application number
PCT/KR2012/000114
Other languages
English (en)
Korean (ko)
Other versions
WO2012099351A3 (fr
Inventor
이훈재
이경자
Original Assignee
Lee Hun-Jae
Lee Gyoung-Ja
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from KR1020110005837A external-priority patent/KR101344914B1/ko
Priority claimed from KR1020110079016A external-priority patent/KR20130016853A/ko
Priority claimed from KR1020110101563A external-priority patent/KR101136612B1/ko
Application filed by Lee Hun-Jae, Lee Gyoung-Ja filed Critical Lee Hun-Jae
Publication of WO2012099351A2 publication Critical patent/WO2012099351A2/fr
Publication of WO2012099351A3 publication Critical patent/WO2012099351A3/fr

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    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01GHORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
    • A01G27/00Self-acting watering devices, e.g. for flower-pots
    • A01G27/003Controls for self-acting watering devices
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01GHORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
    • A01G27/00Self-acting watering devices, e.g. for flower-pots
    • A01G27/04Self-acting watering devices, e.g. for flower-pots using wicks or the like

Definitions

  • the present invention relates to an automatic water supplying functional plant cultivator, and more particularly, the fluid in the container is configured to be supplied to the inside of the plant cultivation base only at a certain level, and the fluid supplied to the plant cultivation base through the container is plant It is supplied to the waterway formed in the planting space in the cultivation base, and the fluid supplied to the waterway is prevented from interfering with gravel or soil stored in the planting space through the separator plate seated on the upper portion of the waterway, so that the fluid is uniformly distributed throughout the planting space.
  • the separator can be supplied with a plurality of water supply holes and cut pieces are formed so that the fluid can be supplied to the upper portion of the separator plate to provide a structure for automatically supplying water for a functional plant grower will be.
  • the fluid in the container is configured to be supplied to the inside of the plant cultivation base only at a certain level, and also to the plant cultivation base through the container
  • the supplied fluid is supplied to the waterway formed in the planting space in the plant cultivation base, and the fluid supplied to the waterway is prevented from interfering with the gravel or soil stored in the planting space through the separation plate seated on the upper portion of the waterway.
  • a plurality of water supply holes and cutouts are formed in the separator so that the fluid can be supplied to the upper part of the separator so that the plant can be automatically supplied with moisture.
  • the second object of the present invention can be utilized as hydroponic cultivation or sprout cultivation, and provides a functional plant grower for automatically supplying and discharging fluid capable of supplying and discharging fluid to the container without removing the cap from the container. It is.
  • the first invention relates to a functional plant grower for automatic water supply, fluid supply in a state that does not leave the stopper 2 at the inlet 11 formed in the lower portion
  • This possible container (1) and a planting space (5) is formed inside the plant is planted, the outer lower end plant cultivation main body (3) is coupled to the container holder (4) for seating the container; and, Upper cylinder port 31 formed in the lower portion of the plant cultivation base body to supply the fluid discharged from the container (1) to the planting space (5); and the fluid flowing through the upper cylinder port 31 in the planting space ( A pair of partition walls 52 protruding from the bottom surface of the planting space 5 so that a water channel 51 for guiding to one side of 5) may be formed; And it is seated on the upper portion of the partition wall 52 to block the blockage of the waterway 51, and in addition to supply the fluid to the top and downward to the triangular shape to smoothly provide a supply environment of water as the root of the plant grows. It characterized
  • the second invention is the plant cultivation base (3) is configured to be separated into two components in the height direction are coupled to each other, characterized in that the connecting body 32 is further coupled to the intermediate region separated to enable height adjustment do.
  • each of the partition walls 52 is spaced apart from the wall surface of the planting space 5 so that the fluid flowing into the water channel 51 can flow out to the entire planting space 5 bottom. It is preferably formed.
  • each of the partition wall 52 is preferably connected to the wall surface of the planting space (5) through the connecting rod 53 to prevent sagging of the separator plate (6) seated on the top.
  • a round handle 12 is formed on the upper portion of the container 1 so as to be easily gripped by hand, and extends to the handle 12 and the lower part to be integral with the container 1. It is preferable that it further comprises the bottleneck 13 which consists of.
  • the container (1) is described with a pocket (14) which is detached / detached to the side of the handle (12) so that the handle (12) is wrapped, and the text / advertisement / design (16) is described. It is preferable to further include the character (15).
  • the separator 6 is seated on the upper portion of the waterway 51 in the opposite direction so that the downwardly inclined cutting piece 61 can be inclined upwardly, the waterway 51 It is preferable to further include an absorbing member 63 coupled to the cut piece 61 so that the fluid inside is absorbed by the capillary action can be supplied to the upper portion of the separator plate (6).
  • the container 1 exposed to the incision surface 42 is provided with a text / advertisement / design 16 and a scale 17.
  • the container 1 further comprises a hook clasp 18 and the cub 19 is coupled to the plant cultivation base (3).
  • the stopper (2) the container coupling portion 211 is formed with a female screw that can be coupled to the male screw formed in the inlet of the container 1, the container coupling portion 211
  • the guide portion 212 is spaced apart from the container coupling portion 211 and the flow path portion 215 for the outflow of the fluid in the longitudinal direction, the container coupling portion 211 and the guide portion 212
  • a plug body portion 21 including a connecting portion 213 sealing the space between the container coupling portion 211 and the guide portion 212 while being connected; and one end of the guide portion 212 is in close contact with the fluid
  • a blocking portion 221 formed to cover one end of the guide portion 212 to be blocked, and one end is connected to the blocking portion 221 to extend along the inner circumference of the guide portion 212 and the fluid Slide portion 222 is formed through the through-hole 222a for the passage of, and when the tip is pressed the blocking portion 221 is
  • a fluid entry / exit unit 22 including a switching unit 223 connected to the slide unit 222 so as
  • the automatic plant moisture supply functional plant it is also possible to easily identify the water level of the container to adjust the replacement time of the supply water (watering) has the advantage of very convenient maintenance.
  • the fluid in the container is configured to be supplied to the inside of the plant cultivation base only at a certain level, there is an effect that can be grown plants without supplying the fluid for a long time.
  • both plants that require a lot of water absorption or plants that require a lot of water absorption can be applied to all plants because the roots are properly extended to adapt to the environment. It also has the effect that can be utilized as hydroponic or sprout cultivation.
  • FIG. 1 is a perspective view of an automatic water supply functional plant grower according to the present invention
  • Figure 2 is an exploded perspective view of Figure 1 (a)
  • FIG. 3 is a perspective view illustrating a state in which the separator extracted in FIG. 2 is seated;
  • FIG 4 is an enlarged perspective view of the stopper extracted in Figure 2
  • FIG. 5 is a cross-sectional view of FIG.
  • FIG. 6 is a partial cutaway perspective view of the main body in the stopper
  • FIG. 7 is an operation diagram showing a state of discharging water from the container through a stopper
  • FIG. 9 is a cross-sectional view showing a stopper of another embodiment
  • FIG. 11 is a cross-sectional view illustrating an installation of the separator plate of FIG. 10.
  • FIG. 1 is a perspective view of a functional plant growing apparatus for automatic water supply according to the present invention
  • Figure 2 is an exploded perspective view of Figure 1 (a)
  • Figure 3 is a perspective view showing the mounting state of the separator extracted in Figure 2 .
  • the present invention is configured such that the fluid in the container (1) is supplied to the inside of the plant cultivation base (3) only at a certain level, and also through the container (1) Fluid supplied to (3) is supplied to the channel 51 formed in the planting space (5) in the plant cultivation base (3), the fluid supplied to the channel 51 is a separator plate 6 seated on top of the channel
  • the separation plate (6) a plurality of water supply holes ( 62) and the incision piece 61 is formed so that the fluid can be supplied to the upper portion of the separator 6, the automatic water supply functional plant planter 9 of the structure that can promote the growth of the plant.
  • the automatic water supply functional plant cultivator 9 is composed of a container 1 in which a fluid composed of two parts is largely stored, and a functional plant cultivation base 3 for automatically supplying moisture by mounting the container 1.
  • the container 1 is configured to enable fluid supply without leaving the plug 2 coupled to the inlet 11 formed at the bottom thereof.
  • the container 1 is configured such that the fluid can be discharged only to a certain level through the stopper 2 to be described later discharged.
  • the upper portion of the container (1) is formed of a round circular handle 12 so as to be easily gripped by hand, extends to the lower portion of the handle 12 is composed of a bottleneck (13) integrally with the container (1). .
  • the container 1 further includes a pocket 14 which is detached / detached to the side of the handle 12 so that the handle 12 is wrapped, and the character 15 in which the text / advertisement / design 16 is described. Configuration.
  • the handle 1 of the container 1 can be easily gripped by the container 1 and separated from the plant cultivation base 3, and is configured to be coupled to the handle 14 after the pocket 14 Advertisement / design 16 is a structure that allows you to inform the phrases and local specialties conveyed through the character 15 described.
  • the container 1 is provided with a scale 17 in addition to the text / advertisement / design 16, so that the level and volume of the fluid in the container 1 can be grasped.
  • the container 1 is configured to continuously supply the fluid to the plant cultivation base (3) without leaving the stopper (2) coupled to the inlet (11) formed at the bottom, the stopper (2) Will be described in detail below.
  • a planting space (5) in which the plant is planted is formed in the inner side of the plant cultivation base (3) a planting space (5) in which the plant is planted, the outer end is configured to combine the container holder (4) for seating the container.
  • the plant cultivation base (3) as shown in Figure 1 (a), is configured to be separated into two pieces in the height direction, as shown in Figure 1 (b), the intermediate region separated to enable height adjustment It is configured to be further coupled to the connection body 32 optionally.
  • FIG. 1 (b) may be configured by coupling the connection body 32 to the plant cultivation base 3 in order to provide a sufficient planting space 5 in the case of bonsai or seedlings with deep landscape water and roots. .
  • the shape of the plant cultivation base 3 is configured in a non-circular shape, and is configured to be screwed through the coupling piece 33 formed on the connecting body 32 and the plant cultivation base 3. .
  • the plant cultivation base (3) is circular, it can be configured to be coupled to the connecting body 32 and screwed.
  • the container (1) has a hook latch 18 and the cub 19 is coupled to the plant cultivation base (3) is a structure that can prevent the container (1) from being separated from the container holder (4).
  • the cubic chamber 19 is a structure formed on the lower side of the container (1), and when the container 1 is seated on the container holder (4) through the cubic chamber (19) is pressed and fixed to the plant cultivation base (3) It is configured to be.
  • the hook clasp 18 is formed on the top of the container (1), when the coupling body 32 is coupled to the plant cultivation base (3), the height of the connection body 32 is higher, which is the hook clasp 18
  • the upper end of the container (1) is configured to be fixed to the plant cultivation base (3).
  • the lower portion of the plant cultivation base (3) has a structure in which the upper port 31 in communication with the container holder (4) is formed to supply the fluid discharged from the container (1) to the planting space (5). .
  • the plant cultivation base 3 has a bottom of the planting space 5 so that a channel 51 for guiding the fluid supplied through the upper opening 311 into the planting space 5 can be formed.
  • the surface is a structure in which the partition wall 52 which protrudes in pairs is formed.
  • the partition wall 52 is a structure formed at a predetermined distance from the inner wall surface of one side of the planting space 5 so that the fluid introduced into the waterway 51 can flow out to the entire planting space (5) bottom. At this time, each of the partition walls 52 and the wall surface of the planting space 5 through the connecting rod 53 to prevent sagging of the separator plate 6 seated on the upper side while flowing the fluid into the entire planting space 5 It is a structure that is connected.
  • the separation membrane plate 6 is mounted on the partition 52 to block the waterway 51 from being blocked by soil and gravel in the planting space 5.
  • the separator 6 has a structure in which a cut piece 61 capable of supplying fluid to the top and absorbing moisture smoothly as the plant grows. In the embodiment of the present invention, a single incision 61 is formed.
  • the incision 61 is " "It is cut into a downwardly inclined shape and is stored in the waterway 51, blocking foreign matters such as gravel or soil from entering the waterway, but can smoothly absorb moisture as the plant grows. It is configured to be.
  • the separator plate 6 has a plurality of water supply holes 62 in addition to the cut piece 61 so that the fluid can be continuously supplied to the upper portion of the separator plate 6 through the water supply hole 62. It is composed.
  • FIG. 4 is an enlarged perspective view of the stopper extracted from FIG. 2
  • FIG. 5 is a cross-sectional view of FIG. 4
  • FIG. 6 is a partially cutaway perspective view illustrating the main body part from the stopper.
  • the stopper 2 is composed of a main body portion 21, the fluid entry and exit 22 and the spring 23.
  • the main body portion 21 may further include a container coupling portion 211, a guide portion 212, and a connection portion 213, and may further include a cover 214.
  • the container coupling portion 211 is formed on the inner circumference of the female screw that can be coupled to the male screw formed at the inlet of the container (1). Since the container coupling portion 211 is fastened to the inlet of the container 1, it is made of a cylindrical shape as the inlet of the container.
  • the guide part 212 is spaced apart from the container coupling part 211 in the container coupling part 211. Therefore, the diameter of the guide portion 212 should be smaller than the diameter of the container coupling portion 211.
  • the guide unit 212 serves to guide the slide unit 222 to be described below to be moved inside.
  • the guide part 212 is provided with a flow path part 215 for the outflow of the fluid in the longitudinal direction.
  • the flow path portion 215 is formed of a groove portion 215a recessed in the longitudinal direction from the inner peripheral side to the container coupling portion 211 side in the connecting portion 213, the groove portion 215a below the connecting portion 213 It is made of a through portion 215b penetrated while being connected to.
  • the groove 215a is formed only on the inner circumferential side when the blocking portion 221 to be described below is in close contact with one end of the guide portion 212 has a structure in which the outflow of the fluid can be blocked, the introduced fluid Is to be quickly discharged through the incision 215b.
  • connection part 213 seals between the container coupling part 211 and the guide part 212 while connecting the container coupling part 211 and the guide part 212. Therefore, when the container coupling part 211 is fastened to the container 1, the connection part 213 restricts the movement of the container coupling part 211 while the inlet of the container 1 in the region excluding the guide part 212. To close it.
  • the cover 214 extends to the same diameter as the container coupling portion 211, surrounds the switching unit 223 to be described below, and has a through hole 241a for outflow of the fluid.
  • the fluid inlet / out part 22 is composed of the blocking part 221, the slide part 222, and the switching part 223.
  • the blocking part 221 may be in close contact with one end of the guide part 212 to cover one end of the guide part 212 so as to block the entry and exit of the fluid.
  • a sealing material (not shown) may be additionally installed at a point where the blocking part 221 and the guide part 212 face each other to improve a sealing effect when the blocking part 221 is in close contact with the guide part 212. Can be.
  • a cone-shaped wedge 221a protrudes from the inside of the blocking portion 221. This may prevent the fluid from splashing outside of the fluid inlet and outlet 22 by inducing the fluid supplied when storing the fluid into the container 1 through the fluid inlet and outlet 22 to the through hole 222a.
  • the slide part 222 is connected to the blocking part 221 and extends along the inner circumference of the guide part 212, and a through hole 222a is formed for the passage of the fluid.
  • the through hole 222a is formed at a position adjacent to the blocking part 221, and is formed in a slit form to block passage of a relatively large foreign matter, and is formed at a predetermined interval along the circumferential direction of the slide part 222. .
  • the switching unit 223 is connected to the slide unit 222 so that the blocking unit 221 is spaced apart from the guide unit 13 when its tip is pressed. In this case, the switching unit 223 spaces the blocking unit 221 from the guide unit 212 while reversing until it contacts the guide unit 212.
  • the switching unit 223 preferably has a storage space having a relatively larger diameter than the slide unit 222 to move to the slide unit 23 while the supplied fluid is stored.
  • the switching unit 223 is configured to overcome the elastic force of the spring 23 by the weight of the fluid while storing the fluid flowing in by forming the reservoir space once.
  • a female screw may be formed on the inner circumference of the switching unit 223. This is to use to increase the discharge level by fastening the extension piece 224 of the cylindrical shape and the male thread formed on the outer periphery to the switching unit 223.
  • the spring 23 returns the switching unit 223 to its original position so that the blocking unit 221 is in close contact with the guide unit 212. 213 and the switching unit 223.
  • Such spring 23 is preferably installed in a plurality of places for the stable operation of the switching unit 223.
  • the spring 23 may result in a container 1 according to the degree of compression of the spring 23, even if the container 1 is made of an opaque material.
  • FIG. 7 is an operation diagram showing a state in which water is discharged from the container through a stopper.
  • the container 1 is inserted into the container holder 4 in the direction in which the stopper 2 is coupled. Then, the container 1 is first mounted on the step 41 provided in the container holder 4, and the stopper 2 is switched by the pressing force generated by the contact with the bottom surface of the container holder 4. ) Pushes back so that the blocking portion 221 is spaced apart from the slide portion 222.
  • the fluid contained in the container 1 flows into the flow path part 215 of the guide part 212 and is discharged to the bottom surface of the container holder 4. That is, the fluid flows into the groove portion 215a of the flow path portion 215 and is discharged through the cutout portion 215b.
  • the fluid may be discharged to the through hole 222a of the slide unit 222 when the fluid is discharged.
  • the fluid discharged to the through hole 222a is smoothly discharged because the switching unit 223 is in close contact with the bottom surface. Therefore, although the fluid may be discharged through the through hole 222a, the main discharge is through the flow path part 215.
  • the discharge of the fluid is limited by the level of the fluid accumulated on the floor. That is, when the container 1 is inverted, air is collected at the top of the inverted container 1, and when the fluid is discharged, additional air must be introduced into the top of the container 1. At the initial stage of discharging the fluid, the level of the fluid accumulated on the bottom surface is low, so that air can be supplied to the container 1, but when the space for air between the fluid in the container 1 and the fluid accumulated on the floor disappears, the container (1) As the additional supply of furnace air is restricted, the fluid is no longer discharged.
  • the fluid flowing out of the stopper 2 of the container 1 flows into the channel 51 of the planting space 5 through the upper opening.
  • the fluid flowing into the water channel 51 is supplied to the gravel and soil through the water supply hole 62 and the cut piece 61 of the separator 6, and the end of the partition 52 and the planting space 5 and It is supplied to the whole planting space (5) through the wall surface of the.
  • the fluid is filled from the cap 2 of the container 1 described above, and the fluid can be continuously supplied.
  • the roots gradually lengthening can be introduced directly into the waterway 51 space through the incision piece 61, so that hydroponic cultivation is possible.
  • the reference point (not shown) is indicated on the plant cultivation base 3 and the overall height of the container 1 according to the compression degree of the spring 23 of the stopper 2 described above. It is possible to identify the storage capacity of the fluid stored in the container (1).
  • the following is a cross-sectional view showing a stopper of another embodiment.
  • FIG. 9 is a cross-sectional view illustrating a stopper of another embodiment.
  • a female screw may be formed on an inner circumference of the switching unit 223. This is by fastening the extension piece 224 made of a cylindrical shape, the male thread on the outer periphery to the switching unit 223, it is possible to increase the discharge water level, and consequently to supply more fluid to the planting space (5). .
  • FIG. 10 is a view illustrating an installation of a separator plate installed in another embodiment
  • FIG. 11 is a cross-sectional view illustrating an installation of the separator plate of FIG. 10.
  • the separator 6 may be seated on the upper portion of the waterway 51 in the opposite direction so that the downwardly inclined cut piece 61 may be inclined upward.
  • the fluid in the channel 51 is further configured to further include an absorbing member 63 coupled to the cut piece 61 so that the fluid in the channel 51 can be absorbed by the capillary action and supplied to the upper portion of the separator plate 6.
  • One end of the absorbing member 63 is grounded to the channel 51 to absorb the fluid, and the other end is configured to be exposed to the upper portion of the cut piece 61. This configuration is to allow the fluid in the channel 51 to be absorbed by the capillary phenomenon and supplied to the planting space 5.
  • the absorbent member 63 is fixed by the incision piece 61, there is an effect capable of accurate quantitative irrigation, and of course, it is possible to supply customized moisture by changing the thickness or material of the absorbent member according to the plant.
  • the automatic plant water supplying functional plant growers forming a hook on the side of the plant cultivation base, or accommodates the plant cultivation base and provided with a cradle formed with hooks or clasps to separate the apartment porch or bridge railings Or it can be hung and installed on the wall wall recording of course.

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  • Engineering & Computer Science (AREA)
  • Water Supply & Treatment (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Environmental Sciences (AREA)
  • Cultivation Receptacles Or Flower-Pots, Or Pots For Seedlings (AREA)

Abstract

La présente invention concerne un appareil de culture de plante fonctionnel présentant une fonction de fourniture d'eau automatique. L'appareil de culture de plante fonctionnel comprend : un récipient (11) destiné à fournir un fluide lorsqu'un bouchon (2) n'est pas séparé d'une admission (11) définie dans la partie inférieure de celui-ci ; un corps d'appareil de culture de plante (3) comprenant un espace de culture de plante (5) dans lequel une plante est cultivée, l'extrémité inférieure externe du corps d'appareil de culture de plante (3) étant accouplée à un support de récipient (4) destiné à supporter le récipient (1) ; un trou d'aération supérieur (31) défini dans une partie inférieure du corps d'appareil de culture de plante (3) destiné à fournir le fluide fourni depuis le récipient (1) dans l'espace de culture de plante (5) ; une paire de parois de séparation (52) faisant saillie depuis une surface inférieure de l'espace de culture de plante (5) de manière à définir une trajectoire d'eau (51) pour introduire le fluide évacué par le biais du trou d'aération supérieur (31) dans un côté de l'espace de culture de plante (5) ; et une plaque de membrane de séparation (6) supportée sur les parois de séparation (52) pour empêcher le blocage de la trajectoire d'eau (51), la plaque de membrane de séparation (6) comprenant une pluralité de pièces découpées (61) découpées vers le bas de manière inclinée en une forme triangulaire de manière à permettre une fourniture régulière du fluide vers le haut et à offrir un environnement dans lequel une humidité est appliquée en fonction de la croissance des racines de la plante.
PCT/KR2012/000114 2011-01-20 2012-01-05 Appareil de culture de plante fonctionnel présentant une fonction de fourniture d'eau automatique WO2012099351A2 (fr)

Applications Claiming Priority (6)

Application Number Priority Date Filing Date Title
KR10-2011-0005837 2011-01-20
KR1020110005837A KR101344914B1 (ko) 2011-01-20 2011-01-20 수분 자동 공급장치
KR1020110079016A KR20130016853A (ko) 2011-08-09 2011-08-09 유체 유입 및 배출이 용이한 마개
KR10-2011-0079016 2011-08-09
KR1020110101563A KR101136612B1 (ko) 2011-10-06 2011-10-06 수분 자동 공급 기능성 식물 재배기
KR10-2011-0101563 2011-10-06

Publications (2)

Publication Number Publication Date
WO2012099351A2 true WO2012099351A2 (fr) 2012-07-26
WO2012099351A3 WO2012099351A3 (fr) 2012-12-06

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PCT/KR2012/000114 WO2012099351A2 (fr) 2011-01-20 2012-01-05 Appareil de culture de plante fonctionnel présentant une fonction de fourniture d'eau automatique

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103493716A (zh) * 2013-10-22 2014-01-08 杜林� 一种土壤湿度免监测实时保持装置
NL2011256C2 (en) * 2013-08-02 2015-02-03 Holland Technology B V A method, a plant irrigation system, a device, a plug, a plant irrigation system, a method and a further method.

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20030011020A (ko) * 2002-10-14 2003-02-06 주식회사 셀그린 저면관수용 식물재배기
KR20030094963A (ko) * 2002-06-11 2003-12-18 주식회사 셀그린 수분자동공급용 파티션화분
KR200404231Y1 (ko) * 2005-08-08 2005-12-20 주식회사 제이앤제이통상 자동 급수 화분

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0837962A (ja) * 1994-08-01 1996-02-13 Infuritsuji Kogyo Kk 植物栽培用容器

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20030094963A (ko) * 2002-06-11 2003-12-18 주식회사 셀그린 수분자동공급용 파티션화분
KR20030011020A (ko) * 2002-10-14 2003-02-06 주식회사 셀그린 저면관수용 식물재배기
KR200404231Y1 (ko) * 2005-08-08 2005-12-20 주식회사 제이앤제이통상 자동 급수 화분

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
NL2011256C2 (en) * 2013-08-02 2015-02-03 Holland Technology B V A method, a plant irrigation system, a device, a plug, a plant irrigation system, a method and a further method.
CN103493716A (zh) * 2013-10-22 2014-01-08 杜林� 一种土壤湿度免监测实时保持装置

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