Water supply bed

KR103003630B1Active Publication Date: 2026-08-12윤재상
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Patent Information

Authority / Receiving Office
KR · KR
Patent Type
Patents
Current Assignee / Owner
Filing Date
2022-11-04
Publication Date
2026-08-12

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Abstract

The present invention has the following composition. Water-receiving flowerbed border section capable of holding water; The above-mentioned water-receiving flower bed border is configured at the edge of the flower bed, and In order to continuously supply water to the plants inside the water-receiving flowerbed border section, a water supply section is configured on the inner surface of the water-receiving flowerbed border section, and The present invention relates to a water supply flower bed characterized by configuring a water channel cover portion on the upper part of the water receiving flower bed rim portion to receive rainwater in the water receiving rim portion during rainy weather, and to continuously supply water to plants through the water supply portion when it is not raining.
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Description

Technology Field

[0001] The present invention relates to storing rainwater to supply water to a flower bed during the dry season, and is a water supply flower bed. Background Technology

[0002] As illustrated in FIG. 9, the background invention relates to a flower bed on the rooftop of a building, comprising: a flower bed (10) installed on the rooftop of the building and formed in the center to store water, and a growth section (30) formed around the storage tank (20) where plants are planted in the soil and grow; a flow pipe that penetrates horizontally through the wall of the storage tank (20) and is connected in multiple numbers from the upper side to the lower side to flow water inside the storage tank (20) to the outside; a supply pipe connected to the flow pipe and buried inside the soil of the growth section (30) to supply water flowing in from the flow pipe to the soil; and a water level measuring section installed penetrating from the upper center of the storage tank (20) into the storage tank (20) to check the water level of the water stored inside the storage tank (20). The device is configured to include: a water level sensor installed at multiple locations inside the storage tank (20) to measure the water level of the water stored inside the storage tank (20); a moisture sensor installed at multiple locations underground in the growth section (30) to detect the concentration of moisture; a control valve installed in the flow pipe to regulate the amount of water flowing into the supply pipe; a control unit connected to the water level sensor, the moisture sensor, and the control valve to control the water level sensor, the moisture sensor, and the control valve; and an external water supply device (110) connected to the control unit to supply water when the water level inside the storage tank (20) drops above a certain level.

[0003] As illustrated in FIG. 7, the background invention is largely composed of a flower bed (10) consisting of a storage tank (20) in which water is stored and a growth section (30) in which plants are planted in the soil and grow, a supply pipe for supplying water to the growth section (30), a control unit connected to a water level sensor and a moisture sensor installed in the storage tank (20) and the growth section (30), and a water supply device for supplying water to the storage tank (20).

[0004] At this time, a plurality of flow pipes are horizontally penetrated and connected from the upper side to the lower side of the wall of the storage tank (20), and a supply pipe for supplying water to the soil is buried in the soil on one side of the flow pipe in a horizontal direction.

[0005] And, as shown in Fig. 7, a water level measuring unit is vertically installed at the center of the upper side of the storage tank (20) to indicate the water level, so that the water level inside the storage tank (20) can be visually checked.

[0006] The present invention was developed to solve the disadvantages of the above invention, which requires many parts, cannot store rainwater, and causes the drainage passage to be blocked by soil, fallen leaves, and impurities, including rainwater flowing down from the flowerbed. Prior art literature

[0007] Korean Intellectual Property Office Patent Registration No. 10-2138933 (July 28, 2020) Korean Intellectual Property Office Patent Registration No. 10-0895339 (May 7, 2009) Korean Intellectual Property Office Patent Registration No. 10-1218385 (January 3, 2013) Korean Intellectual Property Office Patent Publication No. 10-2013-0134662 (December 10, 2013) The problem to be solved

[0008] The first problem that the invention aims to solve is the problem of continuously supplying moisture to plants planted in flowerbeds by storing water during the rainy season, even when it is not the rainy season.

[0009] The second problem that the invention aims to solve is to eliminate the cause of waterway blockage by preventing soil and leaf runoff from flowerbeds during the rainy season.

[0010] The third problem that the invention aims to solve is to ensure that fallen leaves accumulated in the flowerbed become fertilizer and provide nutrients for the planted plants to grow.

[0011] The fourth problem that the invention aims to solve is to save labor costs for cleaning the road by ensuring that the water-receiving flowerbed border is formed higher than the ground of the flowerbed so that fallen leaves and the like are not scattered by the wind. means of solving the problem

[0012] To solve the above-mentioned problem, it has the following configuration.

[0013] Water-receiving flowerbed border section capable of holding water;

[0014] The above-mentioned water-receiving flower bed border is configured at the edge of the flower bed, and

[0015] In order to continuously supply water to the plants inside the water-receiving flowerbed border section, a water supply section is configured on the inner surface of the water-receiving flowerbed border section, and

[0016] A water supply flowerbed is configured such that a water channel cover is formed on the upper part of the water receiving flowerbed rim, allowing rainwater to be collected in the water receiving flowerbed rim during rainy weather, and when it is not raining, the rainwater collected in the water receiving flowerbed rim is continuously supplied to plants through the water supply unit.

[0017] Here, it is preferable that the above-mentioned water channel cover part be configured with an insertion attachment part at the bottom to be attached to the water receiving flower bed border part adjacent to the above-mentioned water receiving flower bed border part.

[0018] Here, it is desirable to configure a water overflow section in the above-mentioned water-receiving flowerbed rim section that includes a water drainage hole so that water can overflow into the flowerbed inside the water-receiving flowerbed rim section during rain.

[0019] Here, it is desirable to configure the water channel cover part with a water filter so that contaminated water, fallen leaves, and contaminants from the outside are not inserted into the water receiving flower bed border part, thereby ensuring that clean water is contained in the inner container of the water receiving flower bed border part during rain.

[0020] Here, it is desirable to configure the water drainage hole section to prevent soil, fallen leaves, or impurities inside the flower bed from being lost.

[0021] Here, it is desirable to form a fastening support at the lower part of the water-receiving flowerbed rim adjacent to the above-mentioned rim to ensure a fixed configuration so that no step difference occurs. Effects of the invention

[0022] The first effect of the invention is to store water during the rainy season, even when it is not, thereby continuously supplying moisture to plants planted in flowerbeds.

[0023] The second effect of the invention is to prevent soil and leaf runoff from flowerbeds during the rainy season, thereby eliminating the cause of waterway blockage.

[0024] The third effect of the invention is that the fallen leaves accumulated in the flowerbed serve as fertilizer, providing nutrients for the growth of planted plants.

[0025] The fourth effect of the invention is that the water-receiving flower bed border is formed higher than the ground of the flower bed, so fallen leaves and the like are not scattered by the wind, which can save labor costs for cleaning the road. Brief explanation of the drawing

[0026] FIG. 1 is a drawing showing a water channel cover formed on the upper part of a water-receiving flower bed rim forming the corner of a flower bed. FIG. 2 is a drawing showing the water channel cover portion configured on the upper part of FIG. 1. Figure 3 is a diagram showing a water channel cover section configured on the upper part of the water-receiving flowerbed rim section forming a straight shape of the flowerbed. FIG. 4a is a drawing showing the water channel cover section configured on the upper part of FIG. 3. FIG. 4b is a drawing showing the back side of the water channel cover of FIG. 4a. Figure 5 is a drawing showing a water-receiving flower bed border section configured in a straight line. FIG. 6 is a drawing showing a water-filling embankment flowerbed rim section comprising a water overflow section and a water drainage hole section. FIG. 7 is a diagram showing a configuration in which the water-receiving flowerbed border and the water-spill flowerbed border are connected with a connecting support to prevent a step difference. Figure 8 is a figure showing a fastening support. Figure 9 is a figure showing the background technology. Specific details for implementing the invention

[0027] The explanation based on the drawings is as follows.

[0028] FIG. 1 is a drawing showing a water channel cover (300) formed on the upper part of a water-receiving flower bed border (100) that forms the corner of a flower bed.

[0029] The water channel cover (300) is configured with a water channel so that rainwater flows into the interior of the water receiving flower bed border (100).

[0030] In addition, a water supply unit (150) is configured in the part of the flower bed filled with soil so that moisture is constantly absorbed by the plants planted in the flower bed.

[0031] The amount of water to be supplied from the water supply section is determined by properly configuring the water filter so that a large or small amount of water is supplied depending on the plant.

[0032] FIG. 2 is a drawing showing that the upper water passage cover part (300) of FIG. 1 is configured with a water passage part (330), a rim part (310), and an insertion fastening part (320).

[0033] FIG. 3 is a drawing showing a water channel cover (300) configured on the upper part of a water receiving flower bed border (100) and a water overflow embankment flower bed border (200) that form a straight shape of the flower bed. In addition, a water supply unit (150, 250) is configured to supply water to the plants planted inside.

[0034] FIG. 4a is a drawing showing that a water passage section (330) is configured in the upper water passage cover section (300) of FIG. 3.

[0035] When configuring a flower bed in a straight or U-shape so that water does not flow out, a water passage prevention part (340) is provided on the water passage cover part (300) to prevent water from flowing out.

[0036] FIG. 4b is a diagram showing the back side of the upper water channel cover (300) of FIG. 3, showing that a water filter (335a) is formed inside the water channel.

[0037] FIG. 5 is a drawing showing a water receiving flower bed border section (100) and a water moving section (120) configured such that in the water receiving section, which is the interior of the water receiving flower bed border section (100), water can be stored at the same level by penetrating through one or more surfaces of the unit flower bed.

[0038] In the drawing, it is possible to make the lower part of the water-receiving flower bed border (100) open or closed.

[0039] That is, it is configured to be closed so that water does not leak out through the lower part of the water-receiving flower bed border (100).

[0040] In preparation for the case where a large amount of water is stored during the rainy season and the water overflows the water receiving flower bed border (100), the upper part of the water receiving flower bed border (100) is configured so that water flows out to the outside and no more water is stored inside the water receiving flower bed border (100).

[0041] Since it is clean water free from sources of contamination such as fallen leaves or soil, it is sufficient to construct the spillway (170) in the shape of a waist.

[0042] In addition, if there is no water, supplying water to one water-receiving flowerbed border section (100) allows water to be received at the same level in all water-receiving flowerbed border sections (100) constituting the flowerbed, thus providing a convenient advantage when supplying water.

[0043] FIG. 6 is a drawing showing a water-filling flower bed border (200) having a water-filling flower bed border (100) with a water-filling section (260) and a water-draining hole section (265).

[0044] When water wets the flower bed during the rainy season and the water rises, a water overflow section (260) is configured to allow the rainwater to overflow to the outside, and a water discharge hole section (265) is configured to prevent soil or other contaminants from flowing out when the rainwater is discharged to the outside, and a water filter section (265a) is configured.

[0045] FIG. 7 is configured so that the water receiving flower bed border section (100) and the water overflow dike flower bed border section (200) are connected by a connecting support so that no step difference occurs between the flower bed border sections and they are fixed to the ground.

[0046] FIGS. 8a and 8b are drawings showing a binding support (400) configured to receive the flower bed border in the receiving portion (420) so as not to cause a step difference, and the insertion coupling portion (410) functions to hold the flower bed border so as not to move left or right, and the insertion fixing portion functions to fix the flower bed border to the ground.

[0047] A water-receiving flower bed border (100) capable of holding water is constructed.

[0048] The above water-receiving flower bed border part (100) is configured at the edge of the flower bed to form a flower bed.

[0049] In order to continuously supply water to the plants inside the water-receiving flower bed border (100) surrounded by the above water-receiving flower bed border (100), a water supply unit (150) is provided to the flower bed on the inner side of the above water-receiving flower bed border (100).

[0050] A water channel cover (300) is formed on the upper part of the water receiving flower bed border (100) to receive rainwater in the water receiving flower bed border (100) during rainy weather, and when it is not raining, the water supply flower bed is supplied so that the rainwater received in the water receiving flower bed border (100) is continuously supplied to plants through the water supply unit (150).

[0051] The overflow embankment flower bed border section (200) means that the overflow section (260) and the water discharge hole section (265) are configured in the water receiving flower bed border section (100).

[0052] It is desirable to form one or more water spillway flower bed border sections (200) to form one flower bed.

[0053] The name of the water overflow embankment flower bed border section (200) means that the water receiving flower bed border section (100) is configured with a water overflow section (260) and a water discharge hole section (265).

[0054] When forming a flower bed with multiple water-receiving flower bed border sections (100), at least one water-receiving flower bed border section (100) is required to be composed of a water-overflowing embankment flower bed border section (200) that includes a water-overflowing section (260) and a water-discharge hole section (265).

[0055] It is desirable to set the height of the soil within the flower bed lower than the water-holding flower bed border (100).

[0056] To prevent soil runoff, a water filter section (265a) is configured in the water discharge hole section (265).

[0057] The reason is to prevent soil erosion from blocking waterways during the rainy season.

[0058] The above water channel cover (300) is configured with an insertion attachment part (320) at the bottom to be attached to the water receiving flower bed border part (100) adjacent to the above water receiving flower bed border part (100).

[0059] In the drawing, the insertion connection part is configured to have a long edge portion to connect the upper part of the water-receiving flower bed edge portion (100).

[0060] In addition, it also serves the role of connecting adjacent water-receiving flowerbed border sections (100) together.

[0061] The above water-receiving flowerbed border section (100) is configured with a water-overflowing section (260) configured with a water-draining hole section (265) so that water can overflow into the flowerbed inside the above water-receiving flowerbed border section (100) during rain.

[0062] The above water channel cover (300) is configured with a water filter (335a) to prevent contaminated water, fallen leaves, and contaminants from the outside from being inserted into the inner container of the water receiving flower bed border (100), thereby allowing cleaner water to be received inside the water receiving flower bed border (100) during rainy weather.

[0063] The above water discharge hole (265) is configured with a water filter (265a) so that soil, fallen leaves, or impurities inside the flower bed are not lost.

[0064] It is more preferable to form a fixing support (400) at the lower part of the water receiving flower bed border (100) adjacent to the above water receiving flower bed border (100) so that no step difference occurs.

[0065] Terms and words used in this specification and claims should not be interpreted as being limited to their ordinary or dictionary meanings, but should be interpreted in a meaning and concept consistent with the technical spirit of the invention, based on the principle that the inventor can appropriately define the concept of the terms to best describe his invention.

[0066] Therefore, the embodiments described in this specification and the configurations illustrated in the drawings are merely the most preferred embodiments of the present invention and do not represent all of the technical ideas of the present invention; thus, it should be understood that various equivalents and modifications that can replace them may exist at the time of filing this application. Explanation of the symbols

[0067] 100: Water-receiving flowerbed rim 120, 220: Water movement section 150, 250: Water supply section 170: Overflow dike 200: Overflow dike flowerbed rim 260: Overflow section 265: Water discharge hole section 265a: Water filter section 300: Water passage cover section 310: Edge section 320: Insertion fastening section 330: Water passage section 335a: Water filter section 340: Water passage prevention section 400: Fastening support 410: Insertion coupling section 420: Receiving section 430: Insertion fixing section

Claims

Claim 1 A water-receiving flowerbed rim section capable of receiving water; the water-receiving flowerbed rim section is configured at the edge of the flowerbed, and the water-receiving flowerbed rim section is configured with a water overflow section having a water drainage hole section to allow water to overflow into the flowerbed inside the water-receiving flowerbed rim section during rain, and the water drainage hole section is configured with a water filter section to prevent soil, fallen leaves, or impurities inside the flowerbed from being lost, and a water supply section is configured on the inner surface of the water-receiving flowerbed rim section to continuously supply water to the plants inside the surrounding area by arranging multiple water-receiving flowerbed rim sections in various configurations, and a water channel cover section is configured on the upper part of the water-receiving flowerbed rim section to receive rainwater in the water-receiving flowerbed rim section during rain and to continuously supply water to the plants through the water supply section when it is not raining, and the water channel cover section contains externally contaminated water A water supply flowerbed characterized by comprising: a water filtering section configured so that fallen leaves and contaminants are not inserted into the interior of the water receiving flowerbed border section, thereby ensuring that clean water is contained in the inner container of the water receiving flowerbed border section during rain; and a water passage cover section configured with an insertion fastening section at the bottom to fasten the water receiving flowerbed border section adjacent to the water receiving flowerbed border section, and a fastening support section configured at the bottom of the adjacent water receiving flowerbed border section adjacent to the water receiving flowerbed border section to ensure a fixed configuration so as not to cause a step difference, wherein the fastening support section is configured with an insertion receiving section to accommodate the end of the adjacent water receiving flowerbed border section adjacent to the water receiving flowerbed border section together, and an insertion coupling section to connect the side end of the water receiving flowerbed border section and the adjacent water receiving flowerbed border section, respectively. Claim 2 delete Claim 3 delete Claim 4 delete Claim 5 delete Claim 6 delete

Citation Information

Patent Citations

  • Rainwater storage-type flowerpot

    KR101817758B1

  • Prefabricated flower garden

    KR1020180016769A

  • Rainwater infiltration device for flower beds

    KR1020200020543A