Plant Holder and Method
20220232784 ยท 2022-07-28
Inventors
Cpc classification
A01G27/02
HUMAN NECESSITIES
A01G9/042
HUMAN NECESSITIES
International classification
A01G27/02
HUMAN NECESSITIES
A01G9/02
HUMAN NECESSITIES
Abstract
An improved plant holder for providing water to a plant while, optionally, reducing the ability of mosquitos and other pests to access the water.
Claims
1. A plant holder comprising: an outer sidewall extending upwardly from a base to at least partially define a fluid reservoir for retaining water inwardly of the outer sidewall; an inner sidewall extending upwardly to retain a plant and being positioned inwardly of the outer sidewall at an elevated position above the base such that a lower end of the inner sidewall is spaced above the base; a fluid aperture bridge positioned within the outer sidewall above the base and extending inwardly from the outer sidewall to mechanically support the inner sidewall at said elevated position spaced above the base, the fluid aperture bridge defining a plurality of fluid flow apertures extending between the fluid reservoir defined between the base and the fluid aperture bridge and a cavity defined between the outer sidewall and the inner sidewall.
2. The plant holder of claim 1, wherein each of the outer sidewall and inner sidewall defines a hexagonal interior space.
3. The plant holder of claim 1, wherein each of the outer sidewall and inner sidewall defines a rectangular interior space.
4. The plant holder of claim 1, wherein each of the outer sidewall and inner sidewall defines a circular interior space.
5. The plant holder of claim 1, wherein the outer sidewall further comprises a drain aperture extending from the cavity to an exterior of the outer sidewall in a direction transverse to a central vertical axis of the base.
6. The plant holder of claim 5, wherein the aperture is located at a height on the outer sidewall above the base that is greater than a height at which the fluid aperture bridge extends from the outer sidewall.
7. The plant holder of claim 6, wherein the outer sidewall, the inner sidewall, and the fluid aperture bridge are a unitary structure.
8. The plant holder of claim 7, wherein an upper end of the outer sidewall is positioned at a same height above the base as an upper end of the inner sidewall above the base.
9. The plant holder of claim 8, further comprising a planter pot removably seated within the inner sidewall such that the planter pot slidably engages the inner sidewall while being spaced inwardly from the outer sidewall.
10. A system for retaining a plant, comprising: a plant holder comprising: a base defining a central vertical axis; a first sidewall surrounding the central vertical axis and having an axial height extending upwardly from the base; a second sidewall surrounding the central vertical axis and being axially aligned the first sidewall, wherein the second sidewall is positioned inwardly of the first sidewall at an elevated position above the base such that a lower end of the second sidewall is spaced above the base; a fluid aperture bridge positioned within the first sidewall above the base and extending inwardly from the first sidewall to mechanically support the second sidewall at said elevated position spaced above the base, the fluid aperture bridge defining a plurality of fluid flow apertures extending between a fluid reservoir defined between the base and the fluid aperture bridge and a cavity defined between the first sidewall and the second sidewall; and a plant supported by the second sidewall such that a lowermost end of the plant is positioned above the base and spaced inwardly from the first sidewall.
11. The system of claim 10, wherein the plant is seated within a planter pot having a supporting lip that is removably engaged with an upper end of the second sidewall.
12. The system of claim 10, wherein the second sidewall further comprises a plurality of plant supporting struts extending from an interior face of the second sidewall in an axial direction transverse to the central vertical axis.
13. The system of claim 10, wherein each of the first and second sidewalls defines one of a hexagonal interior space, a rectangular interior space, and a circular interior space.
14. The system of claim 13, wherein the first sidewall further comprises a drain aperture extending from an exterior of the first sidewall to a cavity defined between the first sidewall and the second sidewall.
15. A method of watering a plant, comprising: inserting a plant into an interior space at least partially defined by an inner sidewall of a plant holder such that a lowermost end of the plant is positioned above a base of the plant holder and spaced inwardly from an outer sidewall of the plant holder that surrounds both the inner sidewall and a central vertical axis of the base; and delivering water between the first and second sidewall such that water contacts a fluid aperture bridge of the plant holder positioned within the outer sidewall above the base and extending inwardly from the outer sidewall at a position above the base to mechanically support the inner sidewall at an elevated position spaced above the base, wherein said water flows from a cavity defined between the outer sidewall and the inner sidewall, through a plurality of fluid flow apertures defined by the fluid aperture bridge, and into a fluid reservoir defined between the base and the fluid aperture bridge.
16. The method of claim 15, wherein each of the outer sidewall and inner sidewall defines one of a hexagonal interior space, a rectangular interior space, and a circular interior space.
17. The method of claim 16, wherein said inserting the plant includes inserting a planter pot that contains the plant into removable engagement with the inner sidewall.
18. The method of claim 17, wherein the planter pot includes a supporting lip that is removably seated upon an upper end of the inner sidewall.
19. The method of claim 17, wherein the planter pot has a cross-sectional shape in a plane transverse to the central vertical axis that is the same shape as said one of the hexagonal interior space, the rectangular interior space, and the circular interior space defined by the inner sidewall.
Description
DESCRIPTION OF DRAWINGS
[0012]
[0013]
[0014]
[0015]
[0016]
[0017]
[0018] Like reference symbols in the various drawings indicate like elements.
DETAILED DESCRIPTION OF ILLUSTRATIVE EMBODIMENTS
[0019] Referring now to
[0020] In certain embodiments, such as shown in
[0021] In particular implementations, sidewall 101 may be fitted with a number of mounting apertures through sidewall 101 (not shown). For example, in some embodiments, a user may use such apertures to attach hooks, string, or other media so as to hang plant holder 100 from another structure, such as a roof, awning, hook, or similar device.
[0022] Referring now to
[0023] Still referring to
[0024] In particular embodiments, supporting bridge 215 may have one or more apertures 225 that extend through the body of supporting bridge 215, as shown in
[0025] As shown in
[0026] As shown in more detail with respect to
[0027] In other embodiments, planter 510 may be omitted. In some such implementations, sidewall 102 may be further fitted with an apparatus for supporting plant 505 (not shown). For example, in some implementations, sidewall 102 may contain plant support rods extending between the inner surfaces of sidewall 102. Optionally, such plant support rods may be located proximate the lower end of sidewall 102, or in other embodiments, such plant support rods may be located at another axial height below lip 105.
[0028] In use, the embodiments depicted in
[0029] In one example, during operation, a user may place a plant 505 or planter 510 into the cavity formed by sidewall 102. The user may then optionally pour water into cavity 220 so as to fill water reservoir 210 with water (by flowing through apertures 225 in bridge 215) and provide water for plant 505. If the user pours sufficient water into cavity 220 so as to fill water reservoir 210, any additional or excess water poured by the user may, in some embodiments, flow out of plant holder 100 through drain 230. In some embodiments, the user may fill cavity 220 with rocks, pebbles, or other material.
[0030] A number of embodiments have been described. Nevertheless, it will be understood that various modifications may be made without departing from the scope of the following claims.