Supporting device for planting pool
By designing a support device for the planting pool, the support inner core part consists of support feet with wide upper and narrow lower bottom and hollow structure, the problem of plant root rot is solved, the separation between plants and liquid is achieved, and the number of planting and planting experience is improved.
Patent Information
- Application Number
- CN202422276249.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-14
- Publication Date
- 2025-08-22
- Estimated Expiration
- 2034-09-14
AI Technical Summary
In the prior art, when planting plants in a flower pot or a petri dish, the plant roots are prone to rot, which affects the planting enthusiasm of planting enthusiasts and the number of plants is limited.
A support device for a planting pool is designed, including a support inner core part, the support inner core consists of a first support inner core and a second support inner core. The support inner core includes a support panel and a support foot. The support foot is a wide upper and narrow upper structure. The hollow part is in communication with the receiving cavity. The support inner core can lay soil in the planting pool to prevent the plant roots from soaking in liquid for a long time.
The separation of the plants and the liquid in the planting pond is achieved, preventing root rot, and improving the number of planting and planting experience.
Smart Images

Figure CN223247130U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of plant planting, in particular to a supporting device for a planting pool. Background Art
[0002] With the improvement of living standards, more and more planting enthusiasts like to grow and cultivate plants at home or on the balcony. However, the common practice is to use flower pots or culture dishes to cultivate plants. Not only is the number of plants that can be cultivated limited, but the roots of the plants in the flower pots or culture dishes are often immersed in liquid for a long time, which causes the roots to rot easily, which is not conducive to plant growth and greatly affects the enthusiasm of planting enthusiasts. Therefore, there is an urgent need to provide a support device for a planting pool to improve the user's planting experience. Summary of the Invention
[0003] In order to overcome the shortcomings of the prior art, the present invention provides a support device for a planting pool, comprising:
[0004] The supporting inner core part includes a first supporting inner core, and the first supporting inner core is used to support the inner wall of the first accommodating cavity of the planting pool body; the first supporting inner core includes a first supporting panel and a first supporting foot, and the first supporting foot is connected to the first supporting panel; the first supporting foot includes a plurality of first supporting units, and the plurality of first supporting units are connected to the first supporting panel, and the plurality of first supporting units are arranged around the first supporting panel at intervals.
[0005] As an improvement of the present invention, the first supporting panel has a plurality of first hollow mesh openings, which are arranged in sequence and spaced apart from each other along the transverse and longitudinal directions of the first supporting panel; the first supporting foot has a first accommodating opening and a fourth accommodating cavity, the fourth accommodating cavity is formed by the side wall of the first supporting foot, and the first accommodating opening is connected to the fourth accommodating cavity; the first supporting foot is a first supporting foot that is wide at the top and narrow at the bottom, and the fourth accommodating cavity is a fourth accommodating cavity that is wide at the top and narrow at the bottom, and the fourth accommodating cavity has the same shape as the first supporting foot.
[0006] As an improvement of the present invention, a first hollow portion is provided on the lower side of the first supporting leg, and the first hollow portion is communicated with the fourth accommodating cavity; the number of the first hollow portions is at least 2, and at least 2 first hollow portions are respectively provided on the left and right sides of the first supporting leg; a first hollow hole is provided on the bottom of the first supporting leg, and the first hollow hole is communicated with the fourth accommodating cavity.
[0007] As an improvement of the present invention, the first supporting panel has a first front edge, a first rear edge, a first left edge and a first right edge, the first front edge has a first splicing groove, the first rear edge has a first splicing protrusion, and the shapes of the first splicing protrusion and the first splicing groove complement each other; 4. The first left edge also has a second splicing groove, and the shape of the second splicing groove is the same as that of the first splicing groove.
[0008] As an improvement of the present invention, the supporting core part also includes a second supporting core, which is arranged in the first accommodating cavity, and the second supporting core is supported on the inner wall of the first accommodating cavity; the second supporting core includes a second supporting panel and a second supporting foot, and the second supporting foot is connected to the second supporting panel; the first supporting panel and the second supporting panel are connected through a first connecting part; the first connecting part has a plurality of concave fold parts.
[0009] As an improvement of the present invention, the first connecting portion further has a second hollow portion, which is located between the plurality of folded portions; and the plurality of first supporting units are connected by a plurality of first reinforcing ribs on the lower side of the first supporting panel.
[0010] As an improvement of the present invention, the supporting core part also includes a second supporting core, which is arranged in the first accommodating cavity, and the second supporting core is supported on the inner wall of the first accommodating cavity; the second supporting core includes a second supporting panel and a second supporting foot, and the second supporting foot is connected to the second supporting panel; the second supporting panel has a second front edge, a second rear edge, a second left edge and a second right edge, the second front edge has a third splicing groove, the second rear edge has a third splicing protrusion, and the shape of the third splicing protrusion and the third splicing groove complement each other; the second right edge also has a fourth splicing protrusion, and the shape of the fourth splicing protrusion is the same as that of the third splicing protrusion; the second left edge is connected to the first right edge through the first connecting part.
[0011] As an improvement of the present invention, the first splicing protrusion is a first splicing protrusion that is narrow in front and wide in the back, and the first splicing groove is a first splicing groove that is wide in front and narrow in the back; the first splicing groove has a groove opening, and first stop blocks are arranged on both sides of the groove opening. The side wall of the first splicing protrusion has a first narrow groove, and the shapes of the first narrow groove and the first stop block complement each other.
[0012] As an improvement of the present invention, the second supporting foot includes a plurality of second supporting units, a plurality of the second supporting units are connected to the second supporting panel, and a plurality of the second supporting units are arranged around the second supporting panel at intervals; the second supporting panel has a plurality of second hollow mesh openings; the second supporting foot has a second accommodating opening and a fifth accommodating cavity, the fifth accommodating cavity is formed by the side wall of the second supporting foot, and the second accommodating opening is connected to the fifth accommodating cavity; the second supporting foot is a second supporting foot that is wide at the top and narrow at the bottom, and the fifth accommodating cavity is a fifth accommodating cavity that is wide at the top and narrow at the bottom, the fifth accommodating cavity has the same shape as the second supporting foot, and the shape of the second supporting foot is the same as that of the first supporting foot.
[0013] As an improvement of the present invention, a third hollow portion is provided on the lower side of the second supporting leg, and the third hollow portion is communicated with the fifth accommodating cavity; a second hollow hole is provided at the bottom of the second supporting leg, and the second hollow hole is communicated with the fifth accommodating cavity; the number of the third hollow portions is at least 2, and at least 2 third hollow portions are respectively provided on the left and right sides of the second supporting leg.
[0014] The beneficial effects of the present invention are as follows: the present invention provides a support device for a planting pool, which comprises: a support inner core part, the support inner core part comprises a first support inner core, the first support inner core is used to support the inner wall of the first accommodating cavity of the planting pool main body; the first support inner core comprises a first support panel and a first support foot, the first support foot is connected to the first support panel; the first support foot comprises a plurality of first support units, the plurality of first support units are connected to the first support panel, and the plurality of first support units are arranged around the first support panel at intervals, so that the support inner core part is supported in the first accommodating cavity of the planting pool main body, soil can be laid on the first support panel of the support inner core part to cultivate plants, and the plants can be separated from the liquid in the first accommodating cavity of the planting pool main body to prevent the plants from being soaked in the liquid for a long time and causing root rot. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the following briefly introduces the drawings required for use in the description of the embodiments. The drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.
[0016] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0017] Figure 1 It is a structural diagram of the planting pool body, water inlet device and liquid level control valve;
[0018] Figure 2 yes Figure 1 A magnified view of point A;
[0019] Figure 3 yes Figure 2 Enlarged view of point B;
[0020] Figure 4 It is a schematic diagram of the structure supporting the inner core part;
[0021] Figure 5 This is a schematic diagram of the structure of the first supporting inner core and the second supporting inner core
[0022] Figure 6 is a schematic structural diagram of a plurality of first supporting inner cores stacked on each other;
[0023] Figure 7 is a cross-sectional view taken along the first supporting inner core when a plurality of first supporting inner cores are stacked on each other; DETAILED DESCRIPTION
[0024] Reference Figures 1 to 7 , a planting pond, comprising:
[0025] The planting pool body 1 has a side wall surrounding a first accommodating cavity 11 for accommodating liquid.
[0026] The water inlet device 2 has a first water inlet 21 and a first water outlet 22, and the first water outlet 22 is located above the first accommodating chamber 11; a first liquid channel 23 is further provided between the first water inlet 21 and the first water outlet 22, and the first water inlet 21 and the first water outlet 22 are connected through the first liquid channel 23; the water inlet device 2 also includes a first mounting side wall 24 and a second mounting side wall 25 provided between the first water inlet 21 and the first water outlet 22, and the lower side of the first mounting side wall 24 is connected to the upper side of the second mounting side wall 25; the upper side of the first mounting side wall 24 has a first mounting opening 241, and the second mounting side wall 25 is surrounded by a second accommodating chamber 251, and a second liquid channel 2511 is provided on the lower side of the second accommodating chamber 251; the second accommodating chamber 251 is further provided with a first guide column 25122512 and a first mounting portion 2513;
[0027] The liquid level control valve 3 is connected to the water inlet device 2, and the liquid level control valve 3 is used to control the liquid level of the liquid in the first accommodating chamber 11; the liquid level control valve 3 includes a leather cup 31, the leather cup 31 is located below the first liquid channel 23, the leather cup 31 is connected to the upper side of the first installation side wall 24 to cover the first installation opening 241, and a third accommodating chamber 32 is formed between the leather cup 31 and the first installation side wall 24. The bottom of the third accommodating chamber 32 is provided with a water-permeable and air-permeable hole 321, and the leather cup 31 can slide on the first installation side wall 24; a water injection hole 311 is provided on the leather cup 31, the first water inlet 21, the first water outlet 22, and the first liquid channel 23. The liquid level control valve 3 further comprises a hollow float 33 and a cantilever 34. The hollow float 33 is located in the second accommodating chamber 251 and is sleeved on the first guide post 2512. The hollow float 33 can slide on the first guide post 2512. One end of the cantilever 34 is rotatably connected to the first mounting portion 2513, and the other end of the cantilever 34 is connected to the hollow float 33. A sealing rubber plug 341 is provided on the cantilever 34 and is located below the water-permeable air hole 321.
[0028] When the liquid in the first accommodating chamber 11 reaches the preset liquid level, the liquid entering the second accommodating chamber 251 through the second liquid channel 2511 pushes the hollow float 33 to float up along the first guide column 2512 to drive the cantilever 34 to rotate, and the sealing plug 341 rotates with the cantilever 34 to seal the water-permeable and air-permeable hole 321; when the liquid level in the third accommodating chamber 32 reaches the preset liquid level, the liquid entering the third accommodating chamber 32 through the water injection hole 311 pushes the leather cup 31 to float up to seal the first liquid channel 23, so that the leather cup 31 separates the first water outlet 22 from the first water inlet 21.
[0029] With the above structure, when a user uses the planting pool to plant plants, they can precisely control the liquid level of the planting pool through the liquid level control valve 3, so that the liquid level of the planting pool is suitable for plant growth, thereby facilitating plant cultivation. When the liquid in the first accommodating chamber 11 reaches the preset liquid level H, the liquid entering the second accommodating chamber 251 through the second liquid channel 2511 pushes the hollow float 33 to float along the first guide column 2512, thereby driving the cantilever 34 to rotate. The sealing plug 341 rotates with the cantilever 34 until it seals the water-permeable and air-permeable hole 321. When the liquid level in the third accommodating chamber 32 reaches the preset liquid level, the liquid entering the third accommodating chamber 32 through the water injection hole 311 pushes the leather cup 31 to float until it seals the first liquid channel 23, so that the leather cup 31 isolates the first water outlet 22 from the first water inlet 21, and no longer discharges water from the first water outlet 22, thereby maintaining the liquid level in the planting pool at the preset level. When the liquid in the first accommodating chamber 11 is lower than the preset liquid level, the hollow float 33 sinks along the first guide column 2512 to drive the cantilever 34 to rotate, and the sealing plug 341 sinks with the rotation of the cantilever 34 to separate from the water-permeable and air-permeable hole 321, and the leather cup 31 sinks to separate from the first liquid channel 23 and opens the first liquid channel 23, so that the liquid flowing in from the first water inlet 21 can flow into the planting pool through the first liquid channel 23, the first water outlet 22, the water injection hole 311, the water-permeable and air-permeable hole 321 and the second liquid channel 2511 to raise the liquid level in the planting pool to the preset liquid level.
[0030] In this embodiment, the sidewalls of the hollow float 33 define a sealed cavity 331. The hollow float 33 has a sleeve opening 332. The hollow float 33 is sleeved onto the first guide post 2512 through the sleeve opening 332, with the cavity 331 surrounding the sleeve opening 332. This structure, with its rational design, simple structure, and secure connection, effectively facilitates the installation of the hollow float 33, allowing the hollow float 33 to slide up or down along the first guide post 2512.
[0031] In this embodiment, the edge of the leather cup 31 has a slide groove 312, and the upper side of the first mounting side wall 24 has a slider 242, and the slide groove 312 and the slider 242 are slidably connected. With this structure, the slide groove 312 of the leather cup 31 can slide up and down along the slider 242 to open or close the first liquid channel 23.
[0032] In this embodiment, a third side wall 26 and a fourth side wall 27 extend from the inner wall of the water inlet device 2. The third and fourth side walls 26 and 27 are located between the first water inlet 21 and the first water outlet 22, forming a first liquid channel 23 between the third and fourth side walls 26 and 27. A sealing plug 341 protrudes from the surface of the cantilever 34. A first mounting portion 2513 protrudes from the inner wall of the second accommodating chamber 251. A first guide post 2512 is connected to the inner wall of the second accommodating chamber 251 and extends from the upper side of the second accommodating chamber 251 to the lower side of the second accommodating chamber 251. The cantilever 34 includes a first connecting arm 342 and a second connecting arm 343. The first connecting arm 342 is connected to the second connecting arm 343 and is rotatably connected to the first mounting portion 2513. The second connecting arm 343 is connected to the top of the hollow float 33. The first connecting arm 342 and the second connecting arm 343 are arranged at an angle. Through the structure described in the book, the setting of the first liquid channel 23 and the cantilever 34 is effectively realized, so that the cantilever 34 can rotate up and down with the hollow floating block 33, so that the sealing plug 341 on the cantilever 34 can open or close the water-permeable and air-permeable hole 321.
[0033] In this embodiment, the second liquid channel 2511 is located below the first water outlet 22. The second liquid channel 2511 includes a first liquid opening 25111 and a second liquid opening 25112 located on the lower side of the second accommodating chamber 251. The first liquid opening 25111 and the second liquid opening 25112 are spaced apart from each other. This structure facilitates rapid synchronization of the liquid level in the second accommodating chamber 251 with the liquid level in the first accommodating chamber 11, thereby precisely controlling the liquid level in the first accommodating chamber 11.
[0034] Reference Figures 1 to 7A support device for a planting pool is also provided, comprising a support core portion 4, the support core portion 4 including a first support core 41, disposed within a first accommodating cavity 11 and supported on the inner wall of the first accommodating cavity 11; the first support core 41 including a first support panel 411 and a first support leg 412, the first support leg 412 being connected to the first support panel 411; the first support leg 412 including a plurality of first support units 4121, the plurality of first support units 4121 being connected to the first support panel 411 and spaced apart from each other around the first support panel 411. The plurality of first support units 4121 are connected by a plurality of first reinforcing ribs 41211 on the underside of the first support panel. Through the above structure, the supporting inner core part is supported in the first receiving cavity 11 of the planting pool body, and soil can be laid on the first supporting panel of the supporting inner core part to cultivate plants, and the plants can be separated from the liquid in the first receiving cavity 11 of the planting pool body to prevent the plants from being soaked in the liquid for a long time and causing root rot.
[0035] In this embodiment, the first supporting panel 411 has a plurality of first hollow mesh openings 4111, which are arranged in sequence and spaced apart from each other along the transverse and longitudinal directions of the first supporting panel 411; the first supporting foot 412 has a first accommodating opening 4122 and a fourth accommodating cavity 4123, the fourth accommodating cavity 4123 is formed by the side wall of the first supporting foot 412, and the first accommodating opening 4122 is connected to the fourth accommodating cavity 4123; the first supporting foot 412 is a first supporting foot 412 that is wide at the top and narrow at the bottom, and the fourth accommodating cavity 4123 is a fourth accommodating cavity 4123 that is wide at the top and narrow at the bottom, and the fourth accommodating cavity 4123 has the same shape as the first supporting foot 412; a first hollow portion 4124 is provided on the lower side of the first supporting foot 412, and the first hollow portion 4124 is connected to the fourth accommodating cavity 4123. The number of the first hollow portions 4124 is at least two, and the at least two first hollow portions 4124 are respectively provided on the left and right sides of the first support leg 412. Specifically, a first hollow hole 4125 is provided at the bottom of the first support leg 412, and the first hollow hole 4125 is connected to the fourth accommodating cavity 4123. With the above structure, since the first support leg 412 is a first support leg 412 that is wide at the top and narrow at the bottom, and the fourth accommodating cavity 4123 is a fourth accommodating cavity 4123 that is wide at the top and narrow at the bottom, and the fourth accommodating cavity 4123 has the same shape as the first support leg 412, the first support leg 412 of one first support inner core 41 can be inserted into the fourth accommodating cavity 4123 of the first support leg 412 of another first support inner core 41 through the first accommodating opening 4122, so that multiple first support inner cores 41 can be stacked on each other to facilitate the storage and transportation of the first support inner cores 41. Moreover, since the first hollow portion 4124 and the first hollow hole 4125 are connected to the fourth accommodating chamber 4123, water in the fourth accommodating chamber 4123 can be discharged through the first hollow portion 4124 and the first hollow hole 4125, thereby preventing water from accumulating in the fourth accommodating chamber 4123.
[0036] In this embodiment, the first support panel 411 has a first front edge 4112, a first rear edge 4113, a first left edge 4114 and a first right edge 4115. The first front edge 4112 has a first splicing groove 41121, the first rear edge 4113 has a first splicing protrusion 41131, and the shapes of the first splicing protrusion 41131 and the first splicing groove 41121 complement each other; the first left edge 4114 also has a second splicing groove 41141, and the shape of the second splicing groove 41141 is the same as that of the first splicing groove 41121. The first splicing protrusion is narrow in front and wide in back, and the first splicing groove 41121 is wide in front and narrow in back. The first splicing groove 41121 has a groove opening 41122, with first stoppers 41123 disposed on either side of the groove opening 41122. The sidewalls of the first splicing protrusion have first slots 411311, and the shapes of the first slots 411311 and the first stoppers 41123 complement each other. With the above structure, since the shapes of the first splicing protrusion 41131 and the first splicing groove 41121 complement each other, and the first left edge 4114 also has a second splicing groove 41141, which has the same shape as the first splicing groove 41121, the multiple first support cores 41 can be connected to each other into a whole through the first splicing protrusion 41131, the first splicing groove 41121, and the second splicing groove 41141. Moreover, since the first splicing groove 41121 has a groove opening 41122, first stop blocks 41123 are provided on both sides of the groove opening 41122, and the side wall of the first splicing protrusion has a first narrow groove 411311, the shapes of the first narrow groove 411311 and the first stop block 41123 complement each other, which can improve the connection strength between the multiple first support cores 41.
[0037] In this embodiment, the support core portion 4 further includes a second support core 42, which is disposed in the first accommodating cavity 11 and supported by the inner wall of the first accommodating cavity 11; the second support core 42 includes a second support panel 421 and a second support foot 422, the second support foot 422 being connected to the second support panel 421; the first support panel 411 and the second support panel 421 are connected via a first connecting portion 5; the first connecting portion 5 has a plurality of recessed folded portions 51; the first connecting portion 5 also has a second hollow portion 52, the second hollow portion 52 being located between the plurality of folded portions 51. With the above structure, since the first connecting portion 5 has a plurality of recessed folded portions 51, it is convenient for the user to fold and store the first support core 41 and the second support core 42, or the user can cut and separate the first support core 41 and the second support core 42 along the folded portions 51 for use.
[0038] In this embodiment, the second support panel 421 has a second front edge 4211, a second rear edge 4212, a second left edge 4213, and a second right edge 4214. The second front edge 4211 has a third splicing groove 42111, and the second rear edge 4212 has a third splicing protrusion 42121, the shapes of which complement those of the third splicing groove 42111. The second right edge 4214 also has a fourth splicing protrusion 42141, the shape of which is the same as that of the third splicing protrusion 42121. The second left edge 4213 is connected to the first right edge 4115 via a first connecting portion 5. Through the above structure, the plurality of second support cores 42 can be connected to each other into a whole through the third splicing groove 42111, the third splicing protrusion 42121, and the fourth splicing protrusion 42141. Moreover, the third splicing protrusion 42121, the fourth splicing protrusion 42141, the second splicing protrusion, and the first splicing protrusion have the same shape, and the first splicing groove 41121, the second splicing groove 41141, and the third splicing groove 42111 have the same shape, so that the second supporting core 42 and the first supporting core 41 can also be connected into a whole through the fourth splicing protrusion and the first splicing groove 41121 or the second splicing groove 41141.
[0039] In this embodiment, the second support leg 422 has a second accommodating opening 4223 and a fifth accommodating cavity 4224. The fifth accommodating cavity 4224 is formed by the sidewalls of the second support leg 422, and the second accommodating opening 4223 communicates with the fifth accommodating cavity 4224. The second support leg 422 is wide at the top and narrow at the bottom, while the fifth accommodating cavity 4224 is wide at the top and narrow at the bottom. A third hollow portion 53 is provided on the underside of the second support leg 422, communicating with the fifth accommodating cavity 4224. A second hollow hole 4221 is provided at the bottom of the second support leg 422, communicating with the fifth accommodating cavity 4224. The fifth accommodating cavity 4224 has the same shape as the second support leg 422. There are at least two third hollow portions 53, one on each side of the second support leg 422. With the above structure, since the second support leg 422 is wide at the top and narrow at the bottom, and the fifth accommodating chamber 4224 is wide at the top and narrow at the bottom, and the fifth accommodating chamber 4224 has the same shape as the second support leg 422, the second support leg 422 of one second support inner core 42 can be inserted into the fifth accommodating chamber 4224 of the second support leg 422 of another second support inner core 42 through the second accommodating opening 4223, so that multiple second support inner cores 42 can be stacked on top of each other, facilitating the storage and transportation of the second support inner cores 42. Furthermore, since the third hollow portion 53 and the second hollow hole 4221 are in communication with the fifth accommodating chamber 4224, water in the fifth accommodating chamber 4224 can be discharged through the third hollow portion 53 and the second hollow hole 4221, thereby preventing water from accumulating in the fifth accommodating chamber 4224.
[0040] In this embodiment, the first support panel 411 and the first support leg 412 are integrally formed. Furthermore, the second support panel 421 and the second support leg 422 are integrally formed. Specifically, the first support core 41, the second support core 42, and the first connecting portion 5 are integrally formed. This integrally formed structure improves the strength of the first and second support cores 41, 42, and the first connecting portion 5, while facilitating production.
[0041] In this embodiment, the second support leg 422 includes a plurality of second support units 4222, which are connected to the second support panel 421. The plurality of second support units 4222 are arranged in an interspaced manner around the second support panel 421. This structure effectively completes the arrangement of the second support leg 422 and effectively improves the support strength.
[0042] In this embodiment, the second support panel 421 has a plurality of second hollow mesh openings 4215. This structure allows the inner support core to be supported within the first receiving cavity 11 of the planting tank body. Soil can be laid on the inner support core to cultivate plants, while also separating the plants from the liquid within the first receiving cavity 11 of the planting tank body, preventing root rot caused by prolonged immersion in the liquid.
[0043] The above descriptions provide one or more embodiments in conjunction with the specific content, and do not limit the specific implementation of the present invention to these descriptions. Any similarity or similarity with the methods, structures, etc. of the present invention, or any technical deduction or substitution based on the concept of the present invention, shall be deemed to be within the scope of protection of the present invention.
Claims
1. A support device for a planting pool, characterized in that: include: A supporting inner core part (4), the supporting inner core part (4) comprising a first supporting inner core (41), the first supporting inner core (41) being used to support the inner wall of the first accommodating cavity (11) of the planting pool body; the first supporting inner core (41) comprising a first supporting panel (411) and a first supporting foot (412), the first supporting foot (412) being connected to the first supporting panel (411); the first supporting foot (412) comprising a plurality of first supporting units (4121), the plurality of first supporting units (4121) being connected to the first supporting panel (411), and the plurality of first supporting units (4121) being arranged around the first supporting panel (411) and spaced apart from each other.
2. A support device for a planting pond according to claim 1, characterized in that: The first supporting panel (411) has a plurality of first hollow mesh openings (4111), and the plurality of first hollow mesh openings (4111) are arranged in sequence and spaced apart from each other along the transverse and longitudinal directions of the first supporting panel (411); the first supporting foot (412) has a first accommodating opening (4122) and a fourth accommodating cavity (4123), and the fourth accommodating cavity (4123) is formed by surrounding the side wall of the first supporting foot (412), and the first accommodating opening (4122) is connected to the fourth accommodating cavity (4123); the first supporting foot (412) is a first supporting foot (412) that is wide at the top and narrow at the bottom, and the fourth accommodating cavity (4123) is a fourth accommodating cavity (4123) that is wide at the top and narrow at the bottom, and the fourth accommodating cavity (4123) has the same shape as the first supporting foot (412).
3. A support device for a planting pond according to claim 2, characterized in that: A first hollow portion (4124) is provided on the lower side of the first supporting foot (412), and the first hollow portion (4124) is communicated with the fourth accommodating cavity (4123); the number of the first hollow portions (4124) is at least 2, and at least 2 first hollow portions (4124) are respectively provided on the left and right sides of the first supporting foot (412); a first hollow hole (4125) is provided on the bottom of the first supporting foot (412), and the first hollow hole (4125) is communicated with the fourth accommodating cavity (4123).
4. A support device for a planting pond according to claim 1, characterized in that: The first supporting panel (411) has a first front edge (4112), a first rear edge (4113), a first left edge (4114) and a first right edge (4115), the first front edge (4112) has a first splicing groove (41121), the first rear edge (4113) has a first splicing protrusion (41131), and the shapes of the first splicing protrusion (41131) and the first splicing groove (41121) are complementary to each other; the first left edge (4114) also has a second splicing groove (41141), and the shape of the second splicing groove (41141) is the same as that of the first splicing groove (41121).
5. The support device for a planting pond according to claim 1, characterized in that: The supporting inner core part (4) further comprises a second supporting inner core (42), the second supporting inner core (42) being used for supporting the inner wall of the first accommodating cavity (11) of the planting pool body; the second supporting inner core (42) comprises a second supporting panel (421) and a second supporting foot (422), the second supporting foot (422) being connected to the second supporting panel (421); the first supporting panel (411) and the second supporting panel (421) are connected via a first connecting part (5); the first connecting part (5) has a plurality of concave folded parts (51).
6. The support device for a planting pond according to claim 5, characterized in that: The first connecting portion (5) further comprises a second hollow portion (52), and the second hollow portion (52) is located between the plurality of folded portions (51); the plurality of first supporting units (4121) are connected via a plurality of first reinforcing ribs (41211) on the lower side of the first supporting panel.
7. The support device for a planting pond according to claim 4, characterized in that: The supporting inner core part (4) further comprises a second supporting inner core (42), the second supporting inner core (42) being used for supporting the inner wall of the first accommodating cavity (11) of the planting pool body; the second supporting inner core (42) comprises a second supporting panel (421) and a second supporting foot (422), the second supporting foot (422) being connected to the second supporting panel (421); the second supporting panel (421) has a second front edge (4211), a second rear edge (4212), a second left edge (4213) and a second right edge (4214), the second front edge (4211) has a third splicing groove (42111), the second supporting foot (422) is ...) The second rear edge (4212) has a third splicing protrusion (42121), and the shapes of the third splicing protrusion (42121) and the third splicing groove (42111) are complementary to each other; the second right edge (4214) also has a fourth splicing protrusion (42141), and the shape of the fourth splicing protrusion (42141) is the same as that of the third splicing protrusion (42121); the first supporting panel (411) and the second supporting panel (421) are connected through a first connecting portion (5); the second left edge (4213) and the first right edge (4115) are connected through the first connecting portion (5).
8. The support device for a planting pond according to claim 4, characterized in that: The first splicing protrusion is a first splicing protrusion that is narrow in front and wide in the back, and the first splicing groove (41121) is a first splicing groove (41121) that is wide in front and narrow in the back; the first splicing groove (41121) has a groove opening (41122), and first stop blocks (41123) are provided on both sides of the groove opening (41122); the side wall of the first splicing protrusion has a first narrow groove (411311), and the shapes of the first narrow groove (411311) and the first stop block (41123) complement each other.
9. The support device for a planting pond according to claim 5, characterized in that: The second supporting foot (422) includes a plurality of second supporting units (4222), the plurality of second supporting units (4222) are connected to the second supporting panel (421), and the plurality of second supporting units (4222) are arranged around the second supporting panel (421) at intervals; the second supporting panel (421) has a plurality of second hollow mesh openings (4215); the second supporting foot (422) has a second accommodating opening (4223) and a fifth accommodating cavity (4224), the fifth accommodating cavity (4224) is formed by surrounding the side wall of the second supporting foot (422), and the second accommodating opening (4223) is connected to the fifth accommodating cavity (4224); the second supporting foot (422) is a second supporting foot (422) that is wide at the top and narrow at the bottom, and the fifth accommodating cavity (4224) is a fifth accommodating cavity (4224) that is wide at the top and narrow at the bottom, and the fifth accommodating cavity has the same shape as the second supporting foot, and the shape of the second supporting foot is the same as the shape of the first supporting foot.
10. The support device for a planting pond according to claim 9, characterized in that: A third hollow portion (53) is provided on the lower side of the second supporting leg (422), and the third hollow portion (53) is communicated with the fifth accommodating cavity (4224); a second hollow hole (4221) is provided on the bottom of the second supporting leg (422), and the second hollow hole (4221) is communicated with the fifth accommodating cavity (4224); the number of the third hollow portions (53) is at least 2, and at least 2 third hollow portions (53) are respectively provided on the left and right sides of the second supporting leg (422).