WO2011065566A1 - 植栽容器 - Google Patents
植栽容器 Download PDFInfo
- Publication number
- WO2011065566A1 WO2011065566A1 PCT/JP2010/071367 JP2010071367W WO2011065566A1 WO 2011065566 A1 WO2011065566 A1 WO 2011065566A1 JP 2010071367 W JP2010071367 W JP 2010071367W WO 2011065566 A1 WO2011065566 A1 WO 2011065566A1
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- WO
- WIPO (PCT)
- Prior art keywords
- water
- planting
- supply
- flow path
- water storage
- Prior art date
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Classifications
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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
- A01G27/00—Self-acting watering devices, e.g. for flower-pots
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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
- A01G27/00—Self-acting watering devices, e.g. for flower-pots
- A01G27/02—Self-acting watering devices, e.g. for flower-pots having a water reservoir, the main part thereof being located wholly around or directly beside the growth substrate
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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
- A01G9/00—Cultivation in receptacles, forcing-frames or greenhouses; Edging for beds, lawn or the like
- A01G9/02—Receptacles, e.g. flower-pots or boxes; Glasses for cultivating flowers
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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
- A01G9/00—Cultivation in receptacles, forcing-frames or greenhouses; Edging for beds, lawn or the like
- A01G9/02—Receptacles, e.g. flower-pots or boxes; Glasses for cultivating flowers
- A01G9/033—Flat containers for turf, lawn or the like, e.g. for covering roofs
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- E—FIXED CONSTRUCTIONS
- E04—BUILDING
- E04D—ROOF COVERINGS; SKY-LIGHTS; GUTTERS; ROOF-WORKING TOOLS
- E04D11/00—Roof covering, as far as not restricted to features covered by only one of groups E04D1/00 - E04D9/00; Roof covering in ways not provided for by groups E04D1/00 - E04D9/00, e.g. built-up roofs, elevated load-supporting roof coverings
- E04D11/002—Roof covering, as far as not restricted to features covered by only one of groups E04D1/00 - E04D9/00; Roof covering in ways not provided for by groups E04D1/00 - E04D9/00, e.g. built-up roofs, elevated load-supporting roof coverings consisting of two or more layers, at least one of the layers permitting turfing of the roof
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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
- Y02A—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
- Y02A30/00—Adapting or protecting infrastructure or their operation
- Y02A30/24—Structural elements or technologies for improving thermal insulation
- Y02A30/254—Roof garden systems; Roof coverings with high solar reflectance
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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
- Y02B—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
- Y02B80/00—Architectural or constructional elements improving the thermal performance of buildings
- Y02B80/32—Roof garden systems
Definitions
- the present invention includes an inlet for receiving planting water supplied from the outside and an outlet for discharging the planting water to the outside, and includes a water storage unit capable of storing planting water, and the water storage unit has a water-absorbing planting plant.
- the present invention relates to a planting container provided with a flooring storage unit for installing a planting material.
- Patent Document 1 shown below as prior art document information related to this type of planting container.
- the planting container described in Patent Document 1 is composed of a unit composed of a water supply tray and a planting box placed on the water supply tray, and a plurality of water supply trays can be connected to each other in the front, rear, left, and right directions by joints. It has become.
- the bottom of the planting box is divided into four rectangular parts by a water supply pipe extending in a cross shape, and a container-like convex part projects downward at the center of each rectangular part.
- Planting flooring is installed on the inside and bottom of the convex part of the planting box, and the soil can be placed on the planting flooring.
- the planting water supplied by the water supply pipe penetrates into the planting floor material at the bottom through the porous wall surface of the water supply pipe. Therefore, the water supply pipe is arranged below the soil and the planting floor material and cannot be basically seen during the growth. Rainwater that penetrates the soil and the planting floor during heavy rainfall accumulates at the bottom of the water supply tray, and penetrates into the planted floor through the slit formed at the bottom of the convex when the planting box dries. To do.
- JP-A-8-116811 paragraphs 0034-0036, FIG. 1, FIG. 6)
- the object of the present invention is not to provide a special water supply pipe formed of a porous material in view of the problems given by the above-described conventional planting containers, and most of planting floor materials or necessary places.
- An object of the present invention is to provide a planting container that can be sufficiently infiltrated in a relatively short time.
- the first characteristic configuration of the planting container according to the present invention is: It has a water reservoir that can store water for planting, A planting container provided with a flooring storage unit for installing a water-absorbing planting flooring in the water storage unit, The water storage part is provided with an enclosed water supply channel surrounding the entire circumference of the floor material storage part, A supply / discharge channel for supplying planting water from the outside to the water storage unit and discharging the planting water of the water storage unit to the outside is provided in communication with the surrounding water supply channel.
- the planting container according to the first characteristic configuration of the present invention since the water for planting from the outside immediately reaches the floor material storage part of the water storage part via the supply / discharge channel, the special water supply formed of the porous material There is no need to provide a tube.
- the planting water supplied through the supply / discharge channel continues to enter the enclosed water supply channel that surrounds the entire circumference of the flooring storage part, The entire circumference is surrounded by the water for planting, and the effect that most of the planting floor material or a necessary portion can be sufficiently infiltrated in a relatively short time is obtained.
- the planting container according to the present invention can be used by connecting a plurality of planting containers to each other, in that case, the planting water supplied exceeding the water absorption rate of the planting floor material has a supply / discharge channel. To the downstream planting container.
- Another feature of the present invention is that a first dam member for controlling the direction of rotation of planting water is provided in the enclosed water supply channel.
- the supply / discharge flow path has a grooved supply / discharge flow path disposed adjacent to one side surface of the water storage section.
- the state in which the water for planting is introduced through the supply / discharge channel is not concealed below the planting floor material, and flowers and leaves on the side of the planting floor material It becomes possible to observe from between. It can be confirmed visually. That is, whether or not the planting water is properly supplied, the planting water is not leaking between the planting containers connected to each other, or the planting water discharged from the planting container is abnormally contaminated Since it is possible to visually determine whether or not there is, it becomes easier to manage the plant.
- Another characteristic configuration of the present invention includes a second dam member that divides the supply / discharge flow path into two of a first flow path on the upstream side and a second flow path on the downstream side with respect to the flowing water direction, and the supply / discharge flow
- a partition wall that partitions the path from the water storage unit, A first opening that communicates the first flow path of the supply / discharge flow path with the upstream side of the surrounding water supply path, and the second flow path of the supply / discharge flow path of the surrounding water supply path.
- the second opening that communicates with the downstream side is formed so as to be separated from each other.
- the water for planting supplied to the supply / discharge channel enters the upstream side of the enclosed water supply channel from the upstream side of the supply / discharge channel, and the surrounding water supply channel passes around the planting floor material. It reaches the downstream side and returns to the downstream side of the supply / discharge flow path from there. Therefore, since the lower part of the planting floor material is quickly surrounded by the planting water over the entire circumference, most of the planting floor material reaches a wet state in a shorter time. In addition, even after the planting floor material has reached a steady state where it has been sufficiently moistened, the entire amount of the supplied planting water enters the enclosed water supply channel without flowing into the downstream planting container as it is. The planting water is always easily replaced with fresh water.
- the water storage section includes two water storage sections arranged adjacent to each other so as to sandwich the supply / discharge flow path.
- the supply / discharge flow path is extended so as to flow between the two right and left water storage units. Therefore, if the planted flower grows in a sufficient range, it is planted on at least two planting floor materials on the left and right.
- the supply / discharge flow path can be seen through only between the florets. Therefore, the aesthetics of the flower bed made with the planting container which accepted the florets are further improved.
- a plurality of the water storage portions are arranged adjacent to each other along the supply / discharge flow path, and a third dam member capable of storing water for planting between the plurality of water storage portions is provided. It is in the point provided.
- the planting flooring installed in both the upstream and downstream water storage units can be uniformly and efficiently brought into an appropriate wet state.
- Another characteristic configuration of the present invention includes a second dam member that divides the supply / discharge flow path into two of a first flow path on the upstream side and a second flow path on the downstream side with respect to the flowing water direction, and the supply / discharge flow
- a partition wall that partitions the path from the water storage unit, A first opening for communicating the first flow path of the supply / discharge flow path with the upstream water storage section, and the surrounding water supply for the second flow path of the supply / discharge flow path on the downstream side;
- a second opening for communicating with the road is formed.
- the planting water supplied to the supply / discharge flow path is first upstream from the upstream side of the supply / discharge flow path. Enter the surrounding water supply channel of the water storage section on the side, enter the surrounding water supply channel of the upstream water storage section while turning around the planting floor material, Return downstream. Therefore, since the lower part of the upstream and downstream planting floor materials is quickly surrounded by the planting water over the entire circumference, most of the planting floor materials reach a wet state in a shorter time.
- the entire amount of the supplied planting water enters the enclosed water supply channel of each water storage unit without flowing out into the downstream planting container as it is. Therefore, the water for planting in the water storage section is always easily replaced with fresh water.
- Another feature of the present invention is that an engaging portion for detachably attaching the auxiliary dam to a position adjacent to the upstream side or the downstream side of the third dam member is provided.
- the slope of a floor will be large by attaching an auxiliary dam so that it may be suitable for the slope of the floor which installs a planting container (however, it exceeds the height of the 3rd weir member). Even in this case, an appropriate water supply function can be obtained.
- Another feature of the present invention is that a weir member is provided between the second opening and the second flow path so as to store water for planting in a downstream water storage section.
- FIG. 1 It is a partially broken perspective view which shows the example of the flower bed comprised with the planting container which concerns on this invention. It is a perspective view which shows the planting container which concerns on this invention. It is a top view which shows the effect
- FIG. 1 shows an example of a flower bed that can be installed outdoors including the rooftop of a building, etc., and a plurality of planting containers 1 made by integral molding of resin and planting floor materials installed in the planting container 1 20 and a water supply facility 30 for supplying water for planting to the planting container 1.
- each planting container 1 has a substantially square shape in plan view.
- a water inlet 2A for receiving the planting water in the planting container 1 is arranged, and a second side member E2 facing this.
- a water outlet 2B for discharging excess water for planting from the planting container 1 is disposed at the center of.
- An axial center X connecting the midpoints of the two side members E1 and E2 extends in parallel with the remaining side members E3 and E4 at the center of the planting container 1, and is linear along the axial center X.
- the supply / discharge channel 3 is extended.
- the water inlet 2A and the water outlet 2B are located at both ends of the supply / discharge channel 3, and a beak-shaped spout 2F protrudes laterally from the water outlet 2B.
- the planting flooring 20 is made of a porous material having a function of supporting a plant while allowing root growth and a function of absorbing and holding water for planting necessary for the growth, as shown in FIGS. 1 and 5.
- it is comprised by the lower flooring 20A which absorbs the supplied planting water, and the upper flooring 20B which is mounted on the lower flooring 20A and supports a plant.
- a recess 21 for planting seedlings such as florets is formed in the upper flooring 20B.
- the planting flooring 20 (20A, 20B) used here is composed of a mixture of urethane and crushed wood chips, etc., and can keep moisture and air in a well-balanced manner from the top to the bottom in a balanced manner. Necessary air is easily kept.
- each planting section 4 includes a single water storage container 5 (an example of a water storage unit) that can store water for planting. Therefore, the supply / discharge flow path 3 is a grooved supply / discharge flow path disposed adjacent to one side surface of each water storage container 5, and the two water storage containers 5 are disposed adjacent to each other so as to sandwich the supply / discharge flow path 3. It has become.
- the water storage container 5 is generally provided with eight wall surfaces 5b extending in a bowl shape obliquely upward from the outermost peripheral portion of the octagonal bottom 5a.
- the water storage container 5 has the side members E1, E2, and E2 through the upper ends of only the four wall surfaces 5b extending substantially in parallel with any of the four side members E1, E2, E3, E4. It is connected to E3 and E4.
- Four lower plate-like protrusions 6 are erected upwardly toward the center by a predetermined length from the outermost peripheral portion of the bottom surface 5a of the water storage container 5.
- the generally octagonal region inside the plate-like protrusion 6 constitutes a floor material storage portion 7 for installing the lower floor material 20A.
- One of the roles of the plate-like protrusions 6 is to fix the lower floor material 20A at the center of the bottom surface 5a by fixing the lower end portion of the lower floor material 20A in a substantially fitting manner inside these plate-like protrusions 6. It is to fix the position in the correct posture.
- the outer side of the plate-like protrusion 6 constitutes an enclosed water supply path 8 that surrounds the entire circumference of the lower end portion of the lower flooring 20A.
- the surrounding water supply path 8 is an area where the lower flooring 20A does not exist and the water for planting is basically easily accessible.
- the upper flooring 20B has a larger outer diameter than the lower flooring 20A.
- the outer peripheral surface of the upper flooring 20B is a water storage container. 5 is positioned in a state of being almost fitted to the inner surfaces of the eight wall surfaces 5b. Accordingly, a tunnel-like water flow path is formed below the upper floor material 20B so as to surround the lower floor material 20A on the entire circumference.
- the supply / discharge flow path 3 is divided into an upstream first flow path 3A and a downstream second flow path 3B at an intermediate portion of the supply / discharge flow path 3 in the flowing direction.
- 2nd dam member 3D for storing the water for planting in the 1st flow path 3A by the predetermined
- a flat partition wall 10 is provided between the supply / exhaust flow path 3 and the water storage container 5 to partition the two regions.
- the partition wall 10 includes a first opening 10 ⁇ / b> A that allows the first flow path 3 ⁇ / b> A of the supply / discharge flow path 3 to communicate with the surrounding water supply path 8 of the upstream planting section 4, and the second flow path of the supply / discharge flow path 3.
- the 2nd opening part 10B which connects 3B with the surrounding water supply path 8 of the planting section 4 of the downstream is formed in the notch shape.
- the second dam member 3D extends in a straight line from the downstream end of the first opening 10A to the upstream end of the second opening 10B.
- a continuous opening 11 is formed between the upstream water storage container 5 and the downstream water storage container 5 juxtaposed along the supply / discharge flow path 3 to enable the water for planting to go back and forth.
- the continuous opening 11 is provided with a third weir member 11D capable of storing water for planting at a predetermined depth.
- a part of each surrounding water supply channel 8 is provided with a first dam member 8D that controls the rotation direction of planting water entering from the water inlet 2A through the first opening 10A and the second opening 10B. .
- Two first dam members 8D provided in the surrounding water supply channels 8 of the upstream and downstream water storage containers 5 extend in parallel with the axis X in the front-rear direction across the third dam member 11D, In view, they are arranged symmetrically about the third dam member 11D.
- the first weir member 8D provided in the upstream water storage container 5 is a plate-like protrusion 6 located in the lower left in the drawing. Is provided in a shape that connects the vicinity of the downstream side end portion to the closest wall surface 5b.
- the first dam member 8D provided in the downstream water storage container 5 is provided in a shape that connects the vicinity of the upstream end of the plate-like protrusion 6 located in the upper left in the drawing to the closest upstream wall 5b. ing.
- the position of the first dam member 8D is not particularly limited as long as it controls the rotation of the water for planting.
- the first dam member 8D may be disposed at a position closer to the first opening 10A or the second opening 10B than the position illustrated in FIG.
- a generally triangular flange 13 extends horizontally so as to fill the corners of the four corners.
- the lower surface of the flange 13 engages with the four short sides of the upper surface of the upper flooring 20B, thereby holding the upper flooring 20B in the correct position.
- an operator can walk on at least some of the flanges 13 for the purpose of maintaining the florets being grown. is there.
- the supply / discharge flow path 3 may be used in a state of being closed by a detachable rectangular lid (not shown).
- Each flange 13 has an oval through hole 13H extending in parallel with the inclined short side of the bottom surface 5a.
- the flange 13 is disposed at a position higher than the upper end of the wall surface 5b of the water storage container 5, and a gap extending in parallel with the through hole 13H is formed between the flange 13 and the wall surface 5b. From these gaps and through-holes 13H, the surface such as the floor on which the planting container 1 is placed can be seen through.
- FIG. 1 shows two types of connection caps 24 and 25 for realizing connection between planting containers 1.
- the circular connection cap 24 is used to integrate the four planting containers 1
- the semicircular connection cap 25 is used to integrate the two planting containers 1.
- fan-shaped engagement holes or engagement protrusions are formed at the four corners of the planting container 1.
- the four planting containers 1 are arranged so as to form a square as a whole, four engagement holes are arranged in a circle at the center of the square, and the circular coupling cap 24 is locked along this circle. Then, the four planting containers 1 are integrated.
- the two engagement holes are arranged so as to form one semicircle as a whole between the two planting containers 1 arranged in the front-rear or left-right direction, a semicircular connecting cap is formed along this semicircle.
- 25 is locked, the two planting containers 1 are integrated.
- FIG. 1 shows an example in which a fixture 26 having a form in which a bolt 28 is erected on the upper surface of a base plate 27 is used.
- the head of the bolt 28 is welded to the base plate 27.
- the base plate 27 is fixed in advance to a desired location on the floor surface with an adhesive, double-sided tape, or another anchor bolt (not shown), and the bolt 28 is connected to the center of the planting container 1 (one of the second weir members 3D).
- the planting container 1 can be fastened and fixed to the fixing tool 26 by a nut 29 screwed into the bolt 28 after being inserted into the fixing hole 14 formed in the part).
- the water supply facility 30 is interposed between a pipe 31 for supplying planting water to the water inlet 2 ⁇ / b> A of the planting container 1 arranged on the most upstream side, and between the water supply and the pipe 31. And a moisture sensor S inserted into the upper floor material 20B located on the most downstream side, and a controller 33 that switches the solenoid valve 32 on and off based on the detection result of the moisture sensor S. can do.
- Each side member E1, E2, E3, E4 includes a main outer peripheral surface fa that extends straight upward from the lowermost part of the planting container 1, a shoulder portion fb that extends inward from the upper end of the main outer peripheral surface fa, And an auxiliary outer peripheral surface fc extending linearly upward from the portion fb.
- the sub outer peripheral surface fc is located slightly inside the main outer peripheral surface fa. That is, in the connection in the front-rear direction between the planting containers 1 (the supply and discharge flow paths 3 are in series), the main outer peripheral face fa of the first side member E1 and the second side member E2 of each planting container 1 They are bound or adjacent to each other.
- connection in the left-right direction between the planting containers 1 is the main outer peripheral face fa of the third side member E3 and the fourth side member E4 of each planting container 1. They are bound or adjacent to each other.
- the water storage containers 5 adjacent to each other with the side members E1 and E2 or the side members E3 and E4 interposed therebetween are at least spaced by the width x2 of the shoulder portion fb. Will be placed.
- the interval of the width x 2 of the shoulder fb is set to be approximately equal to the width of the supply / discharge channel 3 that separates the water storage containers 5 arranged in the front, rear, left, and right in the planting container 1.
- the upper flooring 20B arranged in each planting section 4 approximates the width x 2 of the shoulder fb without distinguishing between the front-rear direction and the left-right direction. They are arranged at a substantially constant interval.
- the plate-like protrusion 6 also serves as a guide member that guides the water for planting in a certain rotational direction.
- the lower floor material 20A immediately starts to absorb the water for planting, but when the water for planting is supplied at a speed exceeding the water absorption speed of the lower floor material 20A, it overflows the third weir member 11D and opens continuously. It moves from the part 11 to the planting section 4 on the downstream side.
- a single planting container 1 is provided with four water storage containers 5 (water storage sections), but each of the two left and right water storage containers 5 ( The water storage part) can be regarded as one water storage container 5 (water storage part) connected by the continuous opening 11. Therefore, the water supply / discharge channel 3 for supplying planting water from the outside to the water storage container 5 (water storage unit) and discharging the water for planting of the water storage container 5 (water storage unit) to the outside is in communication with the surrounding water supply channel 8. It can be said that this is the configuration provided.
- the planting water that has entered the surrounding water supply channel 8 of the downstream planting section 4 surrounds the outer periphery of the lower flooring 20A and each plate-like protrusion 6 by the action of the first weir member 8D disposed here. 8 flows clockwise and reaches the front of the first dam member 8D, so that the entire circumference of the lower flooring 20A is quickly surrounded by the planting water. A part of the planting water surrounding the lower flooring 20A enters the second flow path 3B.
- the lower floor material 20A immediately starts to absorb the water for planting, but in the state where the water for planting is supplied from the upstream planting section 4 at a speed exceeding the water absorption speed of the lower floor material 20A, the water outlet 2B It overflows from the shed 2F and flows into the water inlet 2A of the planting container 1 on the downstream side.
- Such planting water behavior is performed substantially symmetrically in the left and right planting sections 4 across the supply / discharge channel 3.
- the control apparatus 33 can be set so that excessive water for planting may not be discharged from the mouth 2F of the planting container 1 arranged on the most downstream side.
- the water outlet 2B of the planting container 1 arranged on the most downstream side may be closed with a dedicated plug member.
- the water storage container 5 of the single planting section 4 is provided on one side of the supply / discharge channel 3. It is good also as a form arrange
- the upstream end of the second dam member 3D is adjacent to the upstream side of the surrounding water supply path 8 of the planting section 4, and the downstream end of the second dam member 3D is the surrounding water supply path 8 of the planting section 4 Since it is adjacent to the downstream side, the first opening 10A and the second opening 10B are disposed sufficiently apart from each other.
- the first dam member 8D provided in the planting section 4 extends from the downstream end of the upstream plate-like protrusion 6 to the upstream end of the partition wall 10 so as to intersect the axis X.
- the planting water that has entered the surrounding water supply channel 8 from the first opening 10A is moved to the vicinity of the second opening 10B while rotating the outer periphery of the lower flooring 20A clockwise from the beginning by the action of the first dam member 8D. It reaches.
- the first dam member 8D provided in the upstream planting section 4 is arranged from the downstream end of the upstream plate-like protrusion 6 as shown in FIG. You may extend so that it may cross
- the second dam member 3D may be omitted from the embodiment of FIG.
- the second dam member 3 ⁇ / b> D is omitted, and only a single flow path exists in the supply / discharge flow path 3, and the entire length of this flow path is in communication with the surrounding water supply path 8.
- the planting water necessarily shows the clockwise rotation shown in the figure in the surrounding water supply channel 8
- the planting water that has entered the surrounding water supply channel 8 surrounds the entire circumference of the lower flooring 20A,
- emitted from the surrounding water supply channel 8 to the planting container 1 downstream is implement
- the embodiment of FIG. 7 is not in the form in which the supply / discharge flow path 3 is adjacent to the side of the water storage container 5, but the supply / discharge flow path 3 is included inside the water storage container 5. It is good also as a form.
- the surrounding water supply channel 8 surrounding the entire circumference of the floor material storage unit itself constitutes the supply / discharge channel.
- a single planting floor material in which the lower floor material 20A and the upper floor material 20B are integrated with each other may be used.
- the planting container according to the present invention is not limited to an inclined surface, and can be used by being placed on a horizontal floor surface or the ground. Moreover, it is not restricted to the usage pattern which connected several planting containers, It can be used even with a single planting container.
- the water supply equipment 30 if it is the structure which can supply the water for planting suitably, it will not be limited to said structure.
- the structure which supplies from a water supply tank may be sufficient instead of connecting to a waterworks.
- the structure which is not based on the detection value of a sensor, and the timing of the water supply start and water supply stop may be automatically controlled by the timer which the operator etc. set.
- the third dam member 11D is formed so as to connect the lower ends of a pair of end surfaces 5c provided on the wall surface 5b in order to form the continuous opening 11 (this point also applies to the embodiment shown in FIG. 2).
- the pair of engaging portions 12 are a pair of rib-shaped members formed adjacent to the third dam member 11D at the lower ends of the pair of end surfaces 5c. Since the rib-like engagement portion 12 extends from the pair of end surfaces 5c with a slight length, the engagement portion 12 alone does not affect the flow of water.
- a plate-like auxiliary weir 23 having a height higher than the third dam member 11D is inserted into a vertical groove formed between the rib-like engagement portion 12 and the third dam member 11D, and the lower surface of the auxiliary dam 23 is planted.
- the height of the weir that partitions the continuous opening 11 can be appropriately changed.
- the height of the third dam member 11D is set in accordance with the floor surface having a relatively gentle slope, and installed on a floor surface with a steep slope, the height assist suitable for the slope is set.
- the weir 23 By inserting the weir 23, an appropriate water supply function can be obtained regardless of the inclination.
- the width of the longitudinal groove formed between the rib-shaped engagement portion 12 and the third dam member 11D is set to a dimension generally equal to the thickness of the auxiliary dam 23, and the attached auxiliary If the weir 23 is configured to be in close contact with the surface of the third weir member 11D, as shown in FIG. 10B, the auxiliary weir 23 can be appropriately moved up and down and fixed at an arbitrary height. It is not necessary to provide a plurality of types of auxiliary weirs 23 having different sizes.
- a lower weir member 15 may be provided only in the second opening 10B on the downstream side.
- the dam member 15 may be provided as an optional member that can be press-fitted between the left and right partition walls 10 constituting the second opening 10B and can be removed if unnecessary.
- several types of weir members 15 having different heights may be prepared as optional members.
- a planting container equipped with a water storage part capable of storing water for planting, and a flooring container for installing a water-absorbing planting floor material in the water storage part which is a special container made of a porous material It is not necessary to provide a simple water supply pipe, and it can be used as a planting container that can make the planting floor material sufficiently infiltrated in a short time.
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- Life Sciences & Earth Sciences (AREA)
- Environmental Sciences (AREA)
- Engineering & Computer Science (AREA)
- Architecture (AREA)
- Civil Engineering (AREA)
- Structural Engineering (AREA)
- Water Supply & Treatment (AREA)
- Cultivation Receptacles Or Flower-Pots, Or Pots For Seedlings (AREA)
Abstract
Description
植栽用水を貯留可能な貯水部を備え、
前記貯水部に吸水性の植栽床材を設置するための床材収納部が設けられた植栽容器であって、
前記貯水部に前記床材収納部の全周を取り囲む包囲給水路が設けられ、
植栽用水を外部から前記貯水部に供給し、前記貯水部の植栽用水を外部に排出する給排流路が、前記包囲給水路と連通状に設けられている点にある。
前記仕切り壁に、前記給排流路の前記第1流路を前記包囲給水路の上流側と連通させる第1開口部と、前記給排流路の前記第2流路を前記包囲給水路の下流側と連通させる第2開口部とが互いに離間するように形成されている点にある。
前記仕切り壁に、前記給排流路の前記第1流路を上流側の前記貯水部と連通させる第1開口部と、前記給排流路の前記第2流路を下流側の前記包囲給水路と連通させる第2開口部とが形成されている点にある。
図1はビルの屋上などを含む屋外に設置可能な花壇の一例を示しており、樹脂の一体成形で作られた複数の植栽容器1と、植栽容器1に設置される植栽床材20と、植栽容器1に植栽用水を供給するための給水設備30とを有する。
図2に示すように、個々の植栽容器1の外形は平面視において略正方形状を呈している。植栽容器1の一辺を構成する平板状の第1辺部材E1の中央には、植栽容器1に植栽用水を受け入れるための用水入口2Aが配置され、これと対峙する第2辺部材E2の中央には、植栽容器1から余分な植栽用水を排出するための用水出口2Bが配置されている。
2つの辺部材E1,E2の各中点どうしを結ぶ軸心Xが、植栽容器1の中央に残りの辺部材E3、E4と平行に延びており、この軸心Xに沿って直線状の給排流路3が延設されている。用水入口2Aおよび用水出口2Bはこの給排流路3の両端に位置し、用水出口2Bからはクチバシ状の樋口2Fが横向きに突設されている。
植栽床材20は植物を根の発育を許しながら支持する機能と、発育に必要な植栽用水を吸水保持する機能とを有する多孔質の材料からなり、図1および図5に示すように、ここでは、供給された植栽用水を吸水する下部床材20Aと、下部床材20Aの上に載置されて植物を支持する上部床材20Bとで構成されている。上部床材20Bには花卉などの苗を植え付けるための凹部21が形成されている。ここで用いられる植栽床材20(20A、20B)は、ウレタンと粉砕された木屑などの混合物からなり、上部から下部までほぼ均一に水分と空気をバランスよく保持でき、且つ、根の生育に必要な空気が保たれ易い。
貯水容器5の底面5aの最外周部よりも所定長さだけ中央寄りには4つの低い板状突起6が上向きに立設されている。
尚、平面視において上部床材20Bは下部床材20Aよりも大きな外径を備えており、下部床材20Aの上に上部床材20Bを載置すると、上部床材20Bの外周面は貯水容器5の8個の壁面5bの内面にほぼフィットした状態で位置決めされる。
したがって、上部床材20Bの下方には下部床材20Aを全周で取り囲むトンネル状の用水流路が形成される。
また、図2から図4に示すように、給排流路3と貯水容器5との間には両領域どうしを仕切る平板状の仕切り壁10が備えられている。仕切り壁10には、給排流路3の第1流路3Aを上流側の植栽セクション4の包囲給水路8と連通させる第1開口部10Aと、給排流路3の第2流路3Bを下流側の植栽セクション4の包囲給水路8と連通させる第2開口部10Bとが切り欠き状に形成されている。第2堰部材3Dは第1開口部10Aの下流側端部から第2開口部10Bの上流側端部まで直線状に長く延設されている。
各包囲給水路8の一部には、用水入口2Aから第1開口部10Aや第2開口部10Bを経て進入する植栽用水の回転方向などを制御する第1堰部材8Dが設けられている。
図3に示すように、軸心Xよりも右側の植栽セクション4のみについて言えば、上流側の貯水容器5に設けられた第1堰部材8Dは、図で左下に位置する板状突起6の下流側端部付近を、最も近接した壁面5bに対して連結する形状で設けられている。下流側の貯水容器5に設けられた第1堰部材8Dは、図で左上に位置する板状突起6の上流側端部付近を、最も近接した上流側の壁面5bに連結する形状で設けられている。
尚、第1堰部材8Dの位置は、植栽用水の回転を制御するものであればよく、特に限定されるものではない。例えば、第1堰部材8Dを図3に例示した位置よりも第1開口部10Aや第2開口部10Bに近接した位置に配置してもかまわない。
また、非常に多数の植栽容器1を前後左右に連結した場合などには、育成中の花卉のメンテナンスを行う目的で、作業者が少なくとも一部のフランジ13の上を伝い歩くことが可能である。給排流路3は着脱自在な矩形の蓋(不図示)で閉じた状態で用いてもよい。
各フランジ13には長円形の貫通孔13Hが底面5aの傾斜した短辺と平行に延設されている。また、フランジ13は貯水容器5の壁面5bの上端よりも更に高い位置に配置されており、フランジ13と壁面5bの間には貫通孔13Hと平行に延びた間隙が形成されている。これらの間隙および貫通孔13Hからは植栽容器1を載置したフロアーなどの表面を透視することができる。
図1には、植栽容器1どうしの連結を実現するための2種類の連結キャップ24、25が示されている。円形の連結キャップ24は4つの植栽容器1を一体化するために用いられ、半円形の連結キャップ25は2つの植栽容器1を一体化するために用いられる。これらの連結キャップ24、25の下端部などを係止するために、植栽容器1の4つの角部には扇型の係合孔または係合突起などが形成されている。
また、植栽容器1を水平な面に載置したときの各堰部材と板状突起6と樋口2Fの間の高さの関係は、「第2堰部材3D>樋口2F>第3堰部材11D=用水入口2A>板状突起6>第1堰部材8D」となるように設定されている。
すなわち、植栽容器1どうしの前後方向(給排流路3どうしが直列状になる)での連結では、各植栽容器1の第1辺部材E1と第2辺部材E2の主外周面faどうしが互いに接当または隣接される。他方、植栽容器1どうしの左右方向(給排流路3どうしが並列状になる)での連結は、各植栽容器1の第3辺部材E3と第4辺部材E4の主外周面faどうしが互いに接当または隣接される。
この肩部fbの幅×2の間隔は、植栽容器1の中で前後左右に並ぶ貯水容器5どうしを隔てている給排流路3などの幅と略同等に設定されているので、植栽容器1どうしを前後左右に連結して用いた場合、各植栽セクション4に配置された上部床材20Bどうしは、前後方向と左右方向の区別なく、肩部fbの幅×2に近似する略一定の間隔を空けて並べられることになる。
図3に示すように、給水設備30によって、最も上流側に配置された植栽容器1の用水入口2Aへの植栽用水の供給を開始すると、先ず、植栽用水は給排流路3の第1流路3Aに入って第2堰部材3Dに衝突して左右に別れ、左右の第1開口部10Aを経て、左右の上流側の植栽セクション4の包囲給水路8(貯水容器5)に進入する。包囲給水路8に進入した植栽用水は、設置面の傾斜度に応じて上流側と下流側のいずれか又は双方に流れる。しかし、下流側に流れた植栽用水が包囲給水路8に配置された第1堰部材8Dに達して以降は、上流側への流れが主体的となって、下部床材20Aおよび各板状突起6の外周を包囲給水路8に沿って時計方向に流れ、第1堰部材8Dの手前まで達することで、下部床材20Aの全周が迅速に植栽用水によって包囲される。このように、板状突起6は植栽用水を一定の回転方向に案内するガイド部材の役割をも果たす。下部床材20Aはこの植栽用水を直ぐに吸水し始めるが、植栽用水が下部床材20Aの吸水速度を超える速度で供給されている状態では、第3堰部材11Dをオーバーフローして連設開口部11から下流側の植栽セクション4に移動する。
このような植栽用水の挙動が給排流路3を挟んで左右の各植栽セクション4で略対称的に行われる。
尚、最も下流側に配置された植栽容器1の樋口2Fから余分な植栽用水が排出されないように制御装置33を設定することができる。但し、最も下流側に配置された植栽容器1の用水出口2Bを専用の栓部材によって塞いでもよい。
〈1〉必ずしも4つの植栽セクション4が連結された形態で実施する必要はなく、図6に示すように、単一の植栽セクション4の貯水容器5が給排流路3の一側面に隣接配置された形態としてもよい。第2堰部材3Dの上流側の端部は植栽セクション4の包囲給水路8の上流側に隣接し、第2堰部材3Dの下流側の端部は植栽セクション4の包囲給水路8の下流側に隣接しているので、第1開口部10Aと第2開口部10Bとは互いに十分に離間して配置されている。ここでは、植栽セクション4に設ける第1堰部材8Dは、上流側の板状突起6の下流側の端部から仕切り壁10の上流側の端部まで軸心Xと交差するように延設されている。したがって、第1開口部10Aから包囲給水路8に進入した植栽用水は、第1堰部材8Dの作用によって初めから下部床材20Aの外周を時計方向に回転しながら第2開口部10B付近に至る。尚、図2に記された実施形態においても、上流側の植栽セクション4に設ける第1堰部材8Dを、図6のように、上流側の板状突起6の下流側の端部から第1開口部10Aを構成する壁面5bまで軸心Xと交差するように延設させてもよい。
X 軸心
1 植栽容器
2A 用水入口
2B 用水出口
2F 樋口
3 給排流路
3A 第1流路
3B 第2流路
3D 第2堰部材
4 植栽セクション
5 貯水容器(貯水部)
7 床材収納部
8 包囲給水路
8D 第1堰部材
10 仕切り壁
10A 第1開口部
10B 第2開口部
11 連設開口部
11D 第3堰部材
12 係合部
20 植栽床材
20A 下部床材
20B 上部床材
23 補助堰
Claims (9)
- 植栽用水を貯留可能な貯水部を備え、
前記貯水部に吸水性の植栽床材を設置するための床材収納部が設けられた植栽容器であって、
前記貯水部に前記床材収納部の全周を取り囲む包囲給水路が設けられ、
植栽用水を外部から前記貯水部に供給し、前記貯水部の植栽用水を外部に排出する給排流路が、前記包囲給水路と連通状に設けられていることを特徴とする植栽容器。 - 前記包囲給水路に植栽用水の回転方向を制御する第1堰部材が設けられていることを特徴とする請求項1に記載の植栽容器。
- 前記給排流路が前記貯水部の一側面に隣接配置された溝状給排流路を有することを特徴とする請求項1または2に記載の植栽容器。
- 前記給排流路を流水方向に関して上流側の第1流路と下流側の第2流路との2つに分断する第2堰部材と、前記給排流路を前記貯水部に対して仕切る仕切り壁とが備えられ、
前記仕切り壁に、前記給排流路の前記第1流路を前記包囲給水路の上流側と連通させる第1開口部と、前記給排流路の前記第2流路を前記包囲給水路の下流側と連通させる第2開口部とが互いに離間するように形成されていることを特徴とする請求項3に記載の植栽容器。 - 前記貯水部が前記給排流路を挟むように隣接配置された2つの貯水部を含むことを特徴とする請求項3または4に記載の植栽容器。
- 複数の前記貯水部が前記給排流路に沿って隣接配置されており、複数の前記貯水部どうしの間に植栽用水を貯留可能な第3堰部材が設けられていることを特徴とする請求項3から5のいずれか一項に記載の植栽容器。
- 前記給排流路を流水方向に関して上流側の第1流路と下流側の第2流路との2つに分断する第2堰部材と、前記給排流路を前記貯水部に対して仕切る仕切り壁とが備えられ、
前記仕切り壁に、前記給排流路の前記第1流路を上流側の前記貯水部と連通させる第1開口部と、前記給排流路の前記第2流路を下流側の前記包囲給水路と連通させる第2開口部とが形成されていることを特徴とする請求項6に記載の植栽容器。 - 補助堰を前記第3堰部材の上流側または下流側に隣接する位置に着脱自在に追加装着するための係合部が設けられていることを特徴とする請求項6または7に記載の植栽容器。
- 前記第2開口部と前記第2流路との間には、下流側の貯水部に植栽用水を貯留可能な堰部材が設けられていることを特徴とする請求項7に記載の植栽容器。
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- 2010-11-30 WO PCT/JP2010/071367 patent/WO2011065566A1/ja active Application Filing
- 2010-11-30 US US13/511,492 patent/US9655304B2/en not_active Expired - Fee Related
- 2010-11-30 KR KR1020127015552A patent/KR101418842B1/ko active IP Right Grant
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CN104663297A (zh) * | 2015-03-29 | 2015-06-03 | 巫立斌 | 一种用于植物种植箱的底座 |
Also Published As
Publication number | Publication date |
---|---|
KR20120095981A (ko) | 2012-08-29 |
JP5851245B2 (ja) | 2016-02-03 |
US20120297677A1 (en) | 2012-11-29 |
CA2785232A1 (en) | 2011-06-03 |
HK1155903A1 (en) | 2012-06-01 |
US9655304B2 (en) | 2017-05-23 |
EP2508063A1 (en) | 2012-10-10 |
EP2508063A4 (en) | 2014-12-17 |
TW201143603A (en) | 2011-12-16 |
KR101418842B1 (ko) | 2014-07-11 |
CN102124916A (zh) | 2011-07-20 |
CN102124916B (zh) | 2013-11-13 |
JPWO2011065566A1 (ja) | 2013-04-18 |
TWI451836B (zh) | 2014-09-11 |
CA2785232C (en) | 2015-01-06 |
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