Indoor ecological landscape integration device

Through the design of adjustable connecting rods and fixed pipelines, combined with automatic watering device, the problem of space waste caused by different plant heights is solved, the landscape layout of high and low and efficient watering is achieved, the integration and space utilization is improved, and aquatic animal excrement is used as fertilizer.

CN120360049AInactive Publication Date: 2025-07-25WUHAN UNIV OF TECH
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Patent Information

Application Number
CN202510613960.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-13
Publication Date
2025-07-25
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

In the existing indoor ecological landscape integration device, due to the different heights and growth spaces of different plants, the plant landscape wastes space on the same partition, reducing the integration and space utilization rate.

Method used

The adjustable connecting rod and fixed pipeline design are adopted. By adjusting the length of the adjustable connecting rod, the vertical and horizontal position of the breeding pot is changed, combined with the automatic watering device to achieve the staggered layout of the plant landscape, and one-time watering is achieved through the overflow pipeline.

Benefits of technology

It improves the integration and space utilization of plant landscapes, simplifies the watering process, and uses aquatic animal excrements as plant fertilizers to improve the overall aesthetic effect.

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Abstract

The invention discloses an indoor ecological landscape integration device which comprises a support, the support comprises stand columns, a bottom plate and a top plate, every two of the four stand columns form a group, the four stand columns are fixedly connected between the bottom plate and the top plate, a plurality of supporting rods are fixedly installed between the two stand columns of each group, and plant integration is installed on the supporting rods; the plant integration comprises a plurality of cultivation pots, and belongs to the technical field of ecological landscapes. By adjusting the length of the adjustable connecting rod, not only can the vertical height of the culture pot be changed, but also the horizontal position of the culture pot can be changed, so that the mounting height of the corresponding culture pot can be adjusted in a targeted manner according to the height of different plants and the subsequent growth space requirements; therefore, after various plant landscapes are integrated together, the effects of different heights and well-arranged arrangement can be achieved, the transverse space layout of the cultivation pot can be adjusted, and the overall integration degree and the space utilization rate are further improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of ecological landscapes, and particularly to an indoor ecological landscape integration device. Background Art

[0002] Indoor ecological landscape integration is a technology that combines natural elements with modern design, aiming to create a multi-functional and low-maintenance indoor ecological space through structural innovation, ecological cycle, and aesthetic integration. It vertically integrates elements such as fish tanks, flower pots, and green plants through a column support structure, reducing the floor area.

[0003] When the existing indoor ecological landscape integration device is in use, the plant landscapes are usually placed on fixed partitions. Due to the different heights of different plants or the different spaces required for growth, a large amount of space on the partition will be wasted for different plants placed on the same partition, thus reducing the integration degree and space utilization rate. Moreover, in the arrangement of plant landscapes, it is more beautiful to have different heights and be scattered in an orderly manner, and at the same time, it can improve the space utilization rate and overall integration degree. Summary of the Invention

[0004] The purpose of the present invention is to solve the drawback that different plants placed on the same partition in the prior art will waste a large amount of space on the partition, thereby reducing the integration degree and space utilization rate, and to propose an indoor ecological landscape integration device.

[0005] The present invention adopts the following technical scheme: An indoor ecological landscape integration device includes a bracket. The bracket includes columns, a bottom plate, and a top plate. The four columns are grouped in pairs and fixedly connected between the bottom plate and the top plate. A plurality of support rods are fixedly installed between the two columns in each group. A plant integration is installed on the support rods. The plant integration includes a plurality of cultivation pots. Four transfer rods in pairs are fixedly connected to each of the plurality of cultivation pots. An adjustable connecting rod is installed between the transfer rods on the same side and the support rods. A fixing device for fixedly connecting them together is installed between the plurality of cultivation pots. An aquatic animal integration is fixedly installed on the bottom plate. The aquatic animal integration includes a fish tank fixedly installed on the bottom plate. A storage tank is fixedly installed on the inner surface of the fish tank. An air inlet pipe fixedly installed on the storage tank and connected to an oxygenation pump through a conduit.

[0006] Preferably, the fixing device includes a fixing pipeline. The fixing pipeline is composed of a plurality of connecting pipelines. Two positioning holes are symmetrically opened on the outer surface of the cultivation pot. The two ends of the connecting pipeline are respectively fixedly installed in the positioning holes on the two cultivation pots.

[0007] Preferably, the height of the positioning hole is close to the upper end surface of the breeding basin, and the plurality of connecting pipelines connect the plurality of breeding basins together in sequence from high to low.

[0008] Preferably, an automatic water replenishing device is installed between the plant integration and the aquatic animal integration, and the automatic water replenishing device includes a suction cylinder fixedly installed on the inner surface of the fish tank, a second piston plate is slidingly connected in the suction cylinder, a reset spring is fixedly connected between the bottom surface of the second piston plate and an inner surface of the suction cylinder, a limiting hole is opened on the second piston plate, a drain pipe is sealingly and slidingly connected in the limiting hole, the bottom end of the drain pipe is fixedly connected to an inner surface of the suction cylinder, an empty groove is opened on the bottom end of the drain pipe, a delivery pipe is fixedly installed between the top end of the drain pipe and one of the positioning holes on the breeding basin located at the highest point, a plurality of exhaust holes connected to the storage cylinder are opened on the upper surface of the storage cylinder, a first piston plate is slidingly connected in the storage cylinder, a fixing rod is fixedly connected between the bottom surface of the first piston plate and the upper end surface of the second piston plate, a water inlet connected to the suction cylinder is opened on the outer surface of the suction cylinder, and a first check valve and a second check valve are respectively installed in the water inlet and the drain pipe.

[0009] Preferably, a water suction pipe facing the water inlet and connected to the water inlet is fixedly installed on the outer surface of the suction cylinder, the water suction pipe is dispersedly laid in the fish tank, and a plurality of water suction holes are opened on the water suction pipe at equal intervals.

[0010] Preferably, the adjustable connecting rod includes a lower tube body and an upper threaded rod, a first ring rotatably connected to the transfer rod is fixedly installed on one end of the lower tube body, a second ring rotatably connected to the support rod is fixedly installed on one end of the upper threaded rod, one end of the upper threaded rod is slidably connected in the lower tube body, a limiting convex ring is fixedly installed on the end of the lower tube body away from the first ring, a rotating handle is rotatably connected to the limiting convex ring, and a threaded groove threadably connected to the upper threaded rod is opened in one end of the rotating handle.

[0011] Preferably, a plurality of equally spaced mounting holes are provided on the surfaces of the two columns facing each other in each group, and both ends of the support rod are fixedly mounted in the mounting holes on the two columns.

[0012] The beneficial effects of the present invention are: Since the length of the adjustable connecting rod is adjustable and four adjustable connecting rods are installed on each cultivation pot, by adjusting the length of the adjustable connecting rod, not only can the vertical height of the cultivation pot be changed, but also the horizontal position of the cultivation pot can be changed. Therefore, the present invention can not only adjust the installation height of the corresponding cultivation pot according to the height of different plants and the subsequent growth space requirements, so that after a variety of plant landscapes are integrated, an effect of different heights and scattered arrangements can be achieved, but also adjust the horizontal space layout of the cultivation pot, thereby further improving the overall integration degree and space utilization rate; Since the positioning holes are arranged close to the upper end face of the cultivation pot and the multiple connecting pipes forming the fixed pipeline are connected in sequence from high to low in height, when watering the plant landscape, only need to water into the first cultivation pot at the highest position, and the positioning holes can play the role of overflow holes, discharging the excess water downward through the connecting pipes, so that the whole fixed pipeline plays the role of an overflow pipe. Through the overflow method and with the help of the connecting pipes, it is convenient to complete the watering of the whole plant landscape at one time; Utilize the process of regularly aerating the fish tank every day, with the help of the storage tank and the suction tank, and in cooperation with the positioning holes and the fixed pipeline, to realize the automatic watering of the whole plant landscape; With the help of the water suction pipe and the water suction holes, when the suction tank pumps water into the fish tank through the water inlet for subsequent watering of the plant landscape, the excrement of the aquatic animals in the fish tank can be sucked into the suction tank together with the water. Therefore, during subsequent watering, the excrement of the aquatic animals can be sent into the cultivation pot together and used as fertilizer for the growth of the plant landscape. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 is a schematic structural diagram of an indoor ecological landscape integration device proposed by the present invention; Figure 2 is a sectional view of an indoor ecological landscape integration device proposed by the present invention; Figure 3 is a schematic structural diagram of a bracket of an indoor ecological landscape integration device proposed by the present invention; Figure 4 is a partial schematic structural diagram of the plant integration of an indoor ecological landscape integration device proposed by the present invention; Figure 5 is a sectional view of an adjustable connecting rod of an indoor ecological landscape integration device proposed by the present invention; Figure 6 is a partial schematic structural diagram of an automatic water replenishing device of an indoor ecological landscape integration device proposed by the present invention; Figure 7 is a schematic structural diagram of a storage tank of an indoor ecological landscape integration device proposed by the present invention; Figure 8Schematic structural diagram of a suction cylinder of an indoor ecological landscape integrated device proposed by the present invention; Figure 9 Schematic connection structure diagram of a first piston plate and a second piston plate of an indoor ecological landscape integrated device proposed by the present invention; Figure 10 Schematic structural diagram of a fixed pipeline and a delivery pipe of an indoor ecological landscape integrated device proposed by the present invention.

[0014] In the figure: 1 bracket, 11 columns, 12 bottom plate, 13 top plate, 14 support rods, 2 plant integration, 21 cultivation pots, 211 adapter rods, 22 adjustable connecting rods, 221 lower pipe body, 222 upper threaded rod, 223 rotating handle, 23 first ring, 24 second ring, 25 positioning holes, 26 fixed pipeline, 3 aquatic animal integration, 31 fish tank, 32 storage tank, 321 intake pipe, 322 exhaust holes, 323 first piston plate, 324 fixing rod, 33 suction cylinder, 331 second piston plate, 332 return spring, 333 drain pipe, 334 delivery pipe, 335 water suction pipe, 336 water suction holes. Detailed implementation manners

[0015] Refer to Figures 1 - 10 , an indoor ecological landscape integrated device, including a bracket 1, the bracket 1 includes columns 11, a bottom plate 12 and a top plate 13, four columns 11 are grouped in pairs and fixedly connected between the bottom plate 12 and the top plate 13, and a plurality of support rods 14 are fixedly installed between the two columns 11 in each group. A plant integration 2 is installed on the support rods 14. The plant integration 2 includes a plurality of cultivation pots 21. Four adapter rods 211 in pairs are fixedly connected to the plurality of cultivation pots 21. An adjustable connecting rod 22 is installed between the adapter rods 211 on the same side and the support rods 14. A fixing device for fixedly connecting them together is installed between the plurality of cultivation pots 21. An aquatic animal integration 3 is fixedly installed on the bottom plate 12. The aquatic animal integration 3 includes a fish tank 31 fixedly installed on the bottom plate 12. A storage tank 32 is fixedly installed on the inner surface of the fish tank 31. An intake pipe 321 fixedly installed on the storage tank 32 and connected to an aeration pump through a conduit.

[0016] When the existing indoor ecological landscape integrated device is in use, the plant landscapes are usually placed on fixed partitions. Since the heights of different plants are different or the spaces required for growth are different, different plants placed on the same partition will waste a large amount of space on the partition, thereby reducing the integration degree and space utilization rate. And in the placement of plant landscapes, it will be more beautiful with different heights and in a scattered and orderly manner, and at the same time, it can improve the space utilization rate and overall integration degree; To solve the above problems, the present invention provides a support 1, a plant integration 2 and an aquatic animal integration 3. Among them, each cultivation basin 21 is installed between two support rods 14 through four adapter rods 211, four first rings 23, four adjustable connecting rods 22 and four second rings 24. The plant landscape is cultivated in the cultivation basin 21. Through the plant integration 2 composed of multiple cultivation basins 21, the integration of the plant landscape is realized. Since the length of the adjustable connecting rod 22 is adjustable, and four adjustable connecting rods 22 are installed on each cultivation basin 21, by adjusting the length of the adjustable connecting rod 22, not only can the vertical height of the cultivation basin 21 be changed, but also the horizontal position of the cultivation basin 21 can be changed. Therefore, the present invention can not only adjust the installation height of the corresponding cultivation basin 21 according to the height of different plants and the subsequent growth space requirements, so that after multiple plant landscapes are integrated together, they can achieve an effect of different heights and scattered in an orderly manner, but also adjust the horizontal space layout of the cultivation basin 21, thereby further improving the overall integration degree and space utilization rate.

[0017] As Figure 1 , Figure 2 , Figure 4 and Figure 10 shown, the fixing device includes a fixing pipeline 26, which is composed of multiple connecting pipelines. Two positioning holes 25 are symmetrically opened on the outer surface of the cultivation basin 21, and the two ends of the connecting pipeline are respectively fixedly installed in the positioning holes 25 on two cultivation basins 21.

[0018] With the help of the fixing pipeline 26 and the positioning holes 25 on multiple cultivation basins 21, multiple cultivation basins 21 are fixedly connected together, thereby improving the overall stability. The connecting pipeline can be spliced by straight pipes and connecting fittings according to the actual length and angle requirements.

[0019] As Figure 1 , Figure 2 , Figure 4 and Figure 10 shown, the height of the positioning hole 25 is close to the upper end surface of the cultivation basin 21, and multiple connecting pipelines connect multiple cultivation basins 21 together in order from high to low in height.

[0020] After fixing and connecting multiple cultivation basins 21 together through the above connection method, since the positioning holes 25 are arranged close to the upper end surface of the cultivation basin 21, and the multiple connecting pipelines forming the fixed pipeline 26 are connected in sequence from high to low in terms of height, when watering the plant landscape, only need to water the first cultivation basin 21 at the highest position, and the positioning holes 25 can play the role of overflow holes, discharging the excess water downward through the connecting pipelines, making the entire fixed pipeline 26 play the role of an overflow pipe. Through the overflow method, with the help of the connecting pipelines, it is convenient to complete watering of the overall plant landscape at one time. Since there is no need to water one by one, it effectively solves the problem of inconvenient watering caused by the high integration degree of the plant landscape.

[0021] As Figure 2 , Figure 6 , Figure 7 , Figure 8 and Figure 9 shown, an automatic water replenishing device is installed between the plant integration 2 and the aquatic animal integration 3. The automatic water replenishing device includes a suction cylinder 33 fixedly installed on the inner surface of the fish tank 31. A second piston plate 331 is slidably connected in the suction cylinder 33 in a limited manner. A return spring 332 is fixedly connected between the bottom surface of the second piston plate 331 and one inner surface of the suction cylinder 33. A limiting hole is opened on the second piston plate 331, and a drain pipe 333 is slidably connected in the limiting hole in a sealed manner. The bottom end of the drain pipe 333 is fixedly connected to one inner surface of the suction cylinder 33. An empty groove is opened at the bottom end of the drain pipe 333. A delivery pipe 334 is fixedly installed between the top end of the drain pipe 333 and one of the positioning holes 25 on the cultivation basin 21 at the highest position. A plurality of exhaust holes 322 communicating with the storage cylinder 32 are opened on the upper surface of the storage cylinder 32. A first piston plate 323 is slidably connected in the storage cylinder 32 in a limited manner. A fixed rod 324 is fixedly connected between the bottom surface of the first piston plate 323 and the upper end surface of the second piston plate 331. An inlet communicating with the suction cylinder 33 is opened on the outer surface of the suction cylinder 33. A first one-way valve and a second one-way valve are respectively installed in the inlet and the drain pipe 333. The first one-way valve conducts unidirectionally along the direction from the inlet to the suction cylinder 33 and cuts off in the reverse direction. The second one-way valve conducts unidirectionally from bottom to top along the direction of the drain pipe 333 and cuts off in the reverse direction.

[0022] For the aquatic animals cultured in the fish tank 31, it is necessary to use an oxygenation pump to oxygenate the fish tank 31 regularly every day. During the oxygenation process, the oxygenation pump quickly injects air into the storage tank 32 through a conduit and an intake pipe 321. Under the pressure of the storage tank 32, the air in the storage tank 32 enters the water in the fish tank 31 through the exhaust hole 322. Limited by the aperture size of the exhaust hole 322, the speed of air entering the storage tank 32 is greater than the speed of air discharging. Therefore, the air in the storage tank 32 begins to accumulate, and the first piston plate 323 is pushed down by the air pressure. The first piston plate 323 drives the second piston plate 331 to move down in the suction cylinder 33 through the fixing rod 324. Due to the cut-off effect of the first one-way valve, the second piston plate 331 presses the water in the suction cylinder 33 into the drain pipe 333, and through the conduction of the second one-way valve in the drain pipe 333, it is conveyed upward through the conveying pipe 334 and enters the cultivation basin 21 at the highest position in the plant integration 2. Then, the water entering the cultivation basin 21 can automatically supply water to all plant landscapes through the positioning holes 25 and the fixed pipeline 26 by means of overflow. After the oxygenation ends, the air in the storage tank 32 will be slowly exhausted. The second piston plate 331 automatically moves up and resets under the elastic force of the return spring 332. During the upward movement and reset process, with the pressure effect, in cooperation with the cut-off of the second one-way valve and the conduction of the first one-way valve, the water in the fish tank 31 is sucked into the suction cylinder 33 through the water inlet to complete the replenishment of the water in the suction cylinder 33, so as to realize the regular automatic water supply for the plant landscape during the next regular oxygenation process.

[0023] As Figure 8 shown, a water suction pipe 335 that is fixedly installed on the outer surface of the suction cylinder 33 and is opposite to and communicates with the water inlet is provided. The water suction pipe 335 is laid in a decentralized manner in the fish tank 31, and a plurality of water suction holes 336 are equidistantly arranged on the water suction pipe 335.

[0024] With the help of the water suction pipe 335 and the water suction holes 336, when the suction cylinder 33 extracts water from the fish tank 31 through the water inlet for subsequent watering of the plant landscape, the excrement of the aquatic animals in the fish tank 31 can be sucked into the suction cylinder 33 together with the water. Thus, during the subsequent watering, the excrement of the aquatic animals can be sent to the cultivation basin 21 together and used as fertilizer for the growth of the plant landscape.

[0025] As Figure 4 and Figure 5As shown, the adjustable connecting rod 22 includes a lower tube body 221 and an upper threaded rod 222, a first ring 23 rotatably connected to the adapter rod 211 is fixedly installed on one end of the lower tube body 221, a second ring 24 rotatably connected to the support rod 14 is fixedly installed on one end of the upper threaded rod 222, one end of the upper threaded rod 222 is slidably connected in the lower tube body 221, a limiting convex ring is fixedly installed on the end of the lower tube body 221 away from the first ring 23, a rotating handle 223 is rotatably connected to the limiting convex ring, and a thread groove threadedly connected to the upper threaded rod 222 is opened in one end of the rotating handle 223.

[0026] By simply turning the rotating handle 223, the length of the adjustable connecting rod 22 can be adjusted by means of the threaded connection relationship between the threaded groove on the rotating handle 223 and the upper threaded rod 222, and then the vertical and horizontal layouts of the breeding basin 21 can be adjusted according to user needs. The operation is simple and easy to use.

[0027] A plurality of mounting holes with equal spacing are provided on the opposite side surfaces of the two upright posts 11 of each group, and both ends of the support rod 14 are fixedly mounted in the mounting holes on the two upright posts 11 .

[0028] In the present invention, the plant integration 2 composed of multiple breeding pots 21 is used to realize the integration of plant landscape. By rotating the rotating handle 223, the length of the adjustable connecting rod 22 can be adjusted by means of the threaded connection relationship between the threaded groove on the rotating handle 223 and the upper threaded rod 222. Since each breeding pot 21 is installed between two support rods 14 through four adapter rods 211, four first rings 23, four adjustable connecting rods 22 and four second rings 24, by adjusting the length of the adjustable connecting rod 22, not only the vertical height of the breeding pot 21 can be changed, but also the horizontal position of the breeding pot 21 can be changed. Therefore, the present invention can not only adjust the installation height of the corresponding breeding pot 21 according to the height of different plants and the subsequent growth space requirements, so that after the integration of multiple plant landscapes, different heights and staggered effects can be achieved, but also the horizontal space layout of the breeding pot 21 can be adjusted, thereby further improving the overall integration and space utilization. For the aquatic animals cultured in the fish tank 31, it is necessary to use an oxygenation pump to oxygenate the fish tank 31 regularly every day. During the oxygenation process, the oxygenation pump quickly injects air into the storage tank 32 through a conduit and an intake pipe 321. Under the pressure in the storage tank 32, the air in the storage tank 32 enters the water in the fish tank 31 through the exhaust hole 322. Limited by the aperture size of the exhaust hole 322, the speed of air entering the storage tank 32 is greater than the speed of air discharging. Therefore, the air in the storage tank 32 begins to accumulate, and the first piston plate 323 is pushed downward by the air pressure. The first piston plate 323 drives the second piston plate 331 to move downward in the suction cylinder 33 through a fixed rod 324. Due to the cut-off effect of the first one-way valve, the second piston plate 331 presses the water in the suction cylinder 33 into the drain pipe 333, and through the conduction of the second one-way valve in the drain pipe 333, it is conveyed upward through a delivery pipe 334 and enters the cultivation basin 21 at the highest position in the plant integration 2; For the water entering the cultivation basin 21, since the positioning holes 25 are arranged close to the upper end surface of the cultivation basin 21 and the multiple connecting pipes forming the fixed pipeline 26 are connected in sequence from high to low in height, when watering the plant landscape, only need to water the first cultivation basin 21 at the highest position, and the positioning holes 25 can play the role of overflow holes, discharging the excess water downward through the connecting pipes, making the whole fixed pipeline 26 play the role of an overflow pipe. Through the way of overflow, with the help of the connecting pipes, it is convenient to complete the watering of the whole plant landscape at one time. After the oxygenation ends, the air in the storage tank 32 will be slowly exhausted. The second piston plate 331 automatically moves upward and resets under the elastic force of the return spring 332. During the upward movement and reset process, with the help of the pressure, in cooperation with the cut-off of the second one-way valve and the conduction of the first one-way valve, the water in the fish tank 31 is sucked into the suction cylinder 33 through the water inlet, completing the replenishment of the water in the suction cylinder 33, so as to realize the timed automatic water replenishment for the plant landscape during the next timed oxygenation; With the help of the water suction pipe 335 and the water suction holes 336, when the suction cylinder 33 extracts water from the fish tank 31 through the water inlet for subsequent watering of the plant landscape, the excrement of the aquatic animals in the fish tank 31 can be sucked into the suction cylinder 33 together with the water. Therefore, during the subsequent watering, the excrement of the aquatic animals can be sent to the cultivation basin 21 together and used as fertilizer for the growth of the plant landscape.

Claims

1. An indoor ecological landscape integrated device, comprising a bracket (1), characterized in that, The bracket (1) includes a column (11), a bottom plate (12) and a top plate (13). The four columns (11) are grouped in pairs and fixedly connected between the bottom plate (12) and the top plate (13). A plurality of support rods (14) are fixedly installed between the two columns (11) in each group. A plant assembly (2) is installed on the support rods (14). The plant assembly (2) includes a plurality of cultivation pots (21). Four transfer rods (211) in pairs are fixedly connected to each of the plurality of cultivation pots (21). An adjustable connecting rod (22) is installed between the transfer rod (211) and the support rod (14) on the same side. A fixing device for fixedly connecting the plurality of cultivation pots (21) together is installed between the plurality of cultivation pots (21). An aquatic animal assembly (3) is fixedly installed on the bottom plate (12). The aquatic animal assembly (3) includes an aquarium (31) fixedly installed on the bottom plate (12). A storage tank (32) is fixedly installed on the inner surface of the aquarium (31). An air inlet pipe (321) connected to an aeration pump through a conduit is fixedly installed on the storage tank (32).

2. The integrated indoor ecological landscape device according to claim 1, characterized in that, The fixing device includes a fixing pipeline (26). The fixing pipeline (26) is composed of a plurality of connecting pipelines. Two positioning holes (25) are symmetrically formed on the outer surface of the cultivation pot (21). The two ends of the connecting pipeline are respectively fixedly installed in the positioning holes (25) on the two cultivation pots (21).

3. An indoor ecological landscape integrated device according to claim 2, characterized in that, The height of the positioning hole (25) is close to the upper end surface of the cultivation pot (21). The plurality of connecting pipelines connect the plurality of cultivation pots (21) together in order from high to low in height.

4. The integrated indoor ecological landscape device according to claim 2, wherein An automatic water replenishing device is installed between the plant assembly (2) and the aquatic animal assembly (3). The automatic water replenishing device includes a suction cylinder (33) fixedly installed on the inner surface of the aquarium (31). A second piston plate (331) is slidably connected in the suction cylinder (33) in a limited manner. A return spring (332) is fixedly connected between the bottom surface of the second piston plate (331) and an inner surface of the suction cylinder (33). A limiting hole is formed in the second piston plate (331). A drain pipe (333) is slidably connected in the limiting hole in a sealed manner. The bottom end of the drain pipe (333) is fixedly connected to an inner surface of the suction cylinder (33). An empty groove is formed at the bottom end of the drain pipe (333). A delivery pipe (334) is fixedly installed between the top end of the drain pipe (333) and one of the positioning holes (25) on the cultivation pot (21) at the highest position. A plurality of exhaust holes (322) communicating with the storage tank (32) are formed on the upper surface of the storage tank (32). A first piston plate (323) is slidably connected in the storage tank (32) in a limited manner. A fixing rod (324) is fixedly connected between the bottom surface of the first piston plate (323) and the upper end surface of the second piston plate (331). An inlet is formed on the outer surface of the suction cylinder (33) and communicates with the suction cylinder (33). A first one-way valve and a second one-way valve are respectively installed in the inlet and the drain pipe (333).

5. An indoor ecological landscape integration device according to claim 4, characterized in that, A water suction pipe (335) facing the water inlet and connected to the water inlet is fixedly mounted on the outer surface of the suction cylinder (33). The water suction pipe (335) is dispersedly laid in the fish tank (31), and a plurality of water suction holes (336) are evenly spaced on the water suction pipe (335).

6. The integrated indoor ecological landscape device according to claim 1, characterized in that, The adjustable connecting rod (22) comprises a lower tube body (221) and an upper threaded rod (222); a first ring (23) rotatably connected to the transfer rod (211) is fixedly mounted on one end of the lower tube body (221); a second ring (24) rotatably connected to the support rod (14) is fixedly mounted on one end of the upper threaded rod (222); one end of the upper threaded rod (222) is slidably connected in the lower tube body (221); a limiting convex ring is fixedly mounted on one end of the lower tube body (221) away from the first ring (23); a rotating handle (223) is rotatably connected to the limiting convex ring; a thread groove threadably connected to the upper threaded rod (222) is formed in one end of the rotating handle (223).

7. An indoor ecological landscape integrated device according to claim 1, characterized in that, A plurality of mounting holes at equal intervals are provided on the surfaces of one side of the two upright posts (11) facing each other, and both ends of the support rod (14) are fixedly mounted in the mounting holes on the two upright posts (11).