Composite irrigation system
By designing a composite irrigation system, the problems of insufficient lighting, poor privacy and uneven watering in the planting pots were solved, and uniform lighting, enhanced privacy and automated precise watering were achieved, promoting the healthy growth of plants.
Patent Information
- Application Number
- CN202422319425.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-23
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2034-09-23
AI Technical Summary
In existing composite irrigation systems, insufficient lighting, poor privacy, and uneven irrigation in planting pots lead to uneven root dryness and wetness, affecting plant growth.
A composite irrigation system is designed, including a frame, a planting module, and irrigation components. The projected area of the planting module completely blocks the installation surface. The planting box is designed to be rectangular or triangular, with vertical irrigation holes, planting holes, and ventilation holes. An automated irrigation system is used, using a water pump and a suction rope to achieve uniform irrigation. Baffles and water channels are combined to optimize water distribution.
It enhances privacy and aesthetics, ensures that the roots of plants receive light evenly, avoids uneven dryness and humidity, realizes automated and precise watering, and improves the uniformity and efficiency of the plant growth environment.
Smart Images

Figure CN223437597U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of potted plant irrigation, and in particular to a composite irrigation system. Background Art
[0002] When planting aerial root climbing plants (such as Dendrobium and Phalaenopsis), they are usually planted in planting pots. However, aerial root climbing plants have high requirements for ventilation, air permeability and humidity. The roots in a closed planting pot are difficult to be in a very airy environment, which will cause the roots to dry out.
[0003] For the sake of beauty and privacy, a watering system for plants with aerial roots will be installed indoors to create the effect of a screen or curtain wall to provide a certain degree of shielding and avoid privacy leaks. Secondly, it can also increase the coverage of indoor green plants and purify the air.
[0004] However, this composite irrigation system needs to pay attention to several issues during use:
[0005] 1. When setting up a compound irrigation system, the planting box needs to have sufficient light to provide for plant growth. However, the current compound irrigation system uses a barrel-shaped planting pot, which can only be set vertically. During the process of receiving light, it can only receive partial light, which cannot meet the plant's demand for light.
[0006] 2. Since the barrel-shaped planting pots are larger at the top and smaller at the bottom, there is a gap between the two adjacent planting pots. From the side facing the composite irrigation system, the bracket and the space on the other side can be directly seen, and the privacy on the other side of the composite irrigation system cannot be blocked.
[0007] 3. The existing watering method is manual watering. Since the pot is in a closed state, the dryness and wetness in the pot may be uneven after manual watering, causing the roots of the plants to rot or suffer from oxygen deficiency, which makes it impossible for the roots of the plants to grow better.
[0008] 4. It is difficult to control the amount of watering when watering by manual watering. If the number of watering times or the amount of watering is too large, the roots will be immersed in liquid for a long time, making it impossible for the roots to breathe; and if the amount of watering is too little, the roots will become dehydrated, thus affecting the growth of the roots. Utility Model Content
[0009] In view of this, it is necessary to provide a composite irrigation system to solve the above problems.
[0010] An embodiment of the present application provides a composite irrigation system, comprising:
[0011] A rack body extends in a vertical direction away from the ground, and has a mounting surface;
[0012] A planting module is arranged on the mounting surface, and the projection area of the planting module completely covers the projection area of the mounting surface in a direction perpendicular to the mounting surface.
[0013] In at least one embodiment of the present application, the planting module has a plurality of planting boxes, and the projection area of an upper planting box partially covers the projection area of a lower planting box in the vertical direction.
[0014] In at least one embodiment of the present application, the planting module further comprises:
[0015] A shielding member is arranged at one end of the rack body away from the ground;
[0016] In a direction perpendicular to the mounting surface, the projection area of the plurality of planting boxes and the shielding member completely covers the projection area of the mounting surface.
[0017] In at least one embodiment of the present application, the planting box has a frame body and a planting plate, the planting plate is arranged on the frame body, the planting plate is provided with a first irrigation hole, a planting hole and a ventilation hole, the first irrigation hole, the planting hole and the ventilation hole are all in communication, and the first irrigation hole, the planting hole and the ventilation hole are arranged perpendicular to each other in the direction of opening;
[0018] The composite irrigation system further comprises:
[0019] An irrigation member is in communication with the first irrigation hole and irrigates roots in the first irrigation hole.
[0020] In at least one embodiment of the present application, the irrigation member comprises:
[0021] A water storage member has a water storage cavity formed inside;
[0022] A first water pump is arranged in the water storage cavity;
[0023] A first irrigation assembly is in communication at one end with the first water pump and at the other end with the first irrigation hole.
[0024] In at least one embodiment of the present application, the first irrigation assembly comprises:
[0025] A first communication pipe is in communication at one end with the first water pump;
[0026] A first water supply pipe is in communication with the first communication pipe;
[0027] A water absorption rope is in communication with the first water supply pipe at one end and is arranged in the first irrigation hole and penetrates the first irrigation hole along the axis of the first irrigation hole to irrigate the roots in the planting hole.
[0028] In at least one embodiment of the present application, the frame body is provided with a second irrigation hole;
[0029] The irrigation member further comprises:
[0030] A second water pump is arranged in the water storage cavity;
[0031] A second irrigation assembly is in communication with the second water pump at one end and is in communication with the second irrigation hole at the other end to irrigate the surface of the planting plate.
[0032] In at least one embodiment of the present application, the second irrigation assembly comprises:
[0033] A second communication pipe is in communication with the second water pump at one end;
[0034] A second water supply pipe is in communication with the second communication pipe.
[0035] In at least one embodiment of the present application, the frame body is provided with a baffle, and the baffle is arranged obliquely with the planting plate;
[0036] In the axial direction of the second water supply pipe, the baffle shields the second water supply pipe, and the extension line of the axis of the second water supply pipe intersects the baffle to make the liquid flowing out of the second water supply pipe pass through the baffle to the surface of the planting plate.
[0037] In at least one embodiment of the present application, the composite irrigation system further comprises:
[0038] A frame body is arranged on the water storage member at one end and extends away from the water storage member in the vertical direction;
[0039] The first irrigation assembly and the second irrigation assembly are arranged on the frame body;
[0040] The planting box is rotatably arranged on the frame body.
[0041] In at least one embodiment of the present application, the frame body is provided with a first fixing part and a second fixing part, one end of the frame body is rotatably connected with the first fixing part, and the other end of the frame body is telescopically connected with the second fixing part.
[0042] In at least one embodiment of the present application, the first fixing part is provided with a rotating member;
[0043] The second fixing part is provided with a telescopic rod, one end of the frame body is rotationally connected to the rotating piece, and the other end of the frame body is arranged at one end of the telescopic rod away from the second fixing part.
[0044] The telescopic rod is telescopically adjusted to drive the planting box to rotate around the rotating piece to adjust the angle of the planting box.
[0045] In at least one embodiment of the present application, a water receiving channel is formed by inwardly recessing a side of the water storage piece close to the planting box, and the water receiving channel is in communication with the water storage cavity.
[0046] The composite irrigation system implemented according to the embodiment has at least the following beneficial effects:
[0047] The composite irrigation system provided above has the following beneficial effects: the projection area of the planting module completely blocks the projection area of the mounting surface in the direction perpendicular to the mounting surface, so that the planting module in the composite irrigation system completely blocks the frame body in the direction perpendicular to the mounting surface, thereby avoiding the frame body and the space behind the frame body being directly visible through the mounting surface, and the privacy of the composite irrigation system is enhanced. BRIEF DESCRIPTION OF DRAWINGS
[0048] Figure 1 FIG. 1 is a perspective view of a composite irrigation system in an embodiment;
[0049] Figure 2 FIG. 2 is a partial structure exploded view of the composite irrigation system in FIG. 1; Figure 1
[0050] Figure 3 FIG. 3 is a perspective view of a partial structure of the composite irrigation system in FIG. 1; Figure 1
[0051] Figure 4 FIG. 4 is a partial structure exploded view of the composite irrigation system in FIG. 1; Figure 2
[0052] Figure 5 FIG. 5 is a perspective view of a plate planting plate in FIG. 1; Figure 2
[0053] Figure 6 FIG. 6 is a partial structure perspective view of the composite irrigation system in FIG. 1. Figure 2 100, composite irrigation system;
[0054] 110, planting box; 111, frame body; 111a, second irrigation hole; 1111, baffle; 112, plate planting plate; 112a, first irrigation hole; 112b, planting hole; 112c, air vent;
[0055]
[0056] 120, irrigation member; 121, water storage member; 121a, water storage cavity; 122, first water pump; 123, first irrigation assembly; 1231, first communication pipe; 1232, first water supply pipe; 1233, water absorption rope; 124, second water pump; 125, second irrigation assembly; 1251, second communication pipe; 1252, second water supply pipe; 121b, water receiving channel;
[0057] 130, frame body; 131, first fixing part; 132, second fixing part; 133, rotating part; 134, telescopic rod; 130a, mounting surface;
[0058] 140, shielding member. DETAILED DESCRIPTION
[0059] The embodiments of the present application will be described below in conjunction with the drawings of the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, not all the embodiments of the present application.
[0060] It should be noted that when one component is considered to be "connected" to another component, it can be directly connected to the other component or a middle component can exist at the same time. When one component is considered to be "provided on" another component, it can be directly provided on the other component or a middle component can exist at the same time. The terms "top", "bottom", "upper", "lower", "left", "right", "front", "back", and the like used herein are for illustrative purposes only.
[0061] Some embodiments of the present application will be described in detail below in conjunction with the drawings. The following embodiments and features in the embodiments can be combined with each other without conflict.
[0062] The embodiments of the present application provide a composite irrigation system, comprising:
[0063] The frame body 130 extends in a vertical direction away from the ground, and the frame body 130 has a mounting surface 130a.
[0064] A planting module (not labeled in the figure) is provided on the mounting surface, and the projection area of the planting module completely covers the projection area of the mounting surface in a direction perpendicular to the mounting surface.
[0065] The composite irrigation system provided above, because the projection area of the planting module completely covers the projection area of the mounting surface 130a in a direction perpendicular to the mounting surface 130a, the planting module inside the composite irrigation system completely covers the frame body 130 in a direction perpendicular to the mounting surface, thereby avoiding being able to directly see the frame body 130 and the space behind the frame body 130 through the mounting surface, so as to enhance the privacy of the composite irrigation system.
[0066] In at least one embodiment of the present application, the planting module has a plurality of planting boxes 110, and in the vertical direction, the projection area of the previous planting box 110 partially covers the projection area of the next planting box 110.
[0067] It should be noted that the general shape of the planting box 110 is rectangular, and in other embodiments, it can be triangular or parallelogram-shaped, etc. to form a cover to avoid being able to directly see the shelf 130 behind the mounting surface and the space behind the shelf 130 through the planting module.
[0068] By adopting the projection area of the previous planting box 110 partially covering the projection area of the next planting box 110 in the vertical direction, the liquid (water or nutrient solution) on the previous planting box 110 can drip or flow along the edge of the previous planting box 110 to the next planting box 110 during subsequent irrigation or drip irrigation, to continuously irrigate. Secondly, it avoids the impact of liquid splashing on indoor environmental hygiene, etc.
[0069] Due to the adoption of the projection area of the previous planting box 110 partially covering the projection area of the next planting box 110 in the vertical direction, the planting boxes 110 from top to bottom can further guide the excess water into the water receiving channel and into the water storage member during subsequent irrigation or drip irrigation, to realize water circulation of excess liquid and avoid waste of water resources.
[0070] In at least one embodiment of the present application, the planting module further comprises:
[0071] The cover 140 is provided at one end of the shelf 130 away from the ground;
[0072] In the direction perpendicular to the mounting surface, the projection area of the plurality of planting boxes 110 and the cover completely covers the projection area of the mounting surface.
[0073] Please refer to Figures 1-6 In this embodiment, the cover is a decorative plate, which can be triangular, vertical, and other shapes, and in this embodiment, it is triangular. Its role is to cover the uppermost shelf 130 to avoid being able to see the space on the other side of the shelf 130 through the uppermost shelf 130.
[0074] Due to the projection area of the plurality of planting boxes 110 and the cover completely covering the projection area of the mounting surface in the direction perpendicular to the mounting surface, the composite irrigation system can be used as a curtain wall, a decorative partition, or a screen, etc. to increase the aesthetics and privacy of the indoor.
[0075] The embodiment of the present application provides a composite irrigation system 100, which comprises:
[0076] The planting box 110 has a frame 111 and a planting plate 112 arranged on the frame 111, the planting plate 112 is provided with a first irrigation hole 112a, a planting hole 112b and a ventilation hole 112c, the first irrigation hole 112a, the planting hole 112b and the ventilation hole 112c are communicated, and the first irrigation hole 112a, the planting hole 112b and the ventilation hole 112c are arranged perpendicular to each other in pairs.
[0077] The irrigation member 120 is communicated with the first irrigation hole 112a and irrigates the roots in the first irrigation hole 112a.
[0078] Please refer to Figures 1-5 In the embodiment, the roots of the plants are placed into the planting box 110 through the planting hole 112b and the plants are fixed.
[0079] Ensure that there is enough water in the water storage member 121, and the irrigation member 120 is connected, so that the irrigation member 120 can effectively transmit water to the first irrigation hole 112a, and the irrigation member 120 directly delivers water to the first irrigation hole 112a, so that the roots of the plants are evenly and appropriately irrigated.
[0080] The first irrigation hole 112a, the planting hole 112b and the ventilation hole 112c are arranged perpendicular to each other in pairs, which optimizes the distribution of water and the circulation of air, avoids the interference of water and air in the same plane, and improves the overall efficiency of the system.
[0081] Ensure that the water can be evenly delivered to the roots of the plants, and avoid the problem of uneven dryness and humidity under the traditional irrigation method.
[0082] The arrangement of the ventilation hole 112c ensures the air circulation of the roots of the plants during irrigation, avoiding the problem of root rot or poor growth caused by oxygen deficiency.
[0083] The first irrigation hole 112a, the planting hole 112b and the ventilation hole 112c are arranged perpendicular to each other in pairs, which optimizes the distribution of water and air, so that the roots can both get sufficient water and maintain good ventilation.
[0084] Automatic irrigation is realized, which reduces the inconvenience and error of manual operation and ensures the accurate control of the irrigation amount.
[0085] It should be noted that the first irrigation hole 112a, the planting hole 112b and the ventilation hole 112c are all through holes.
[0086] It should be noted that the first watering holes 112a, the planting holes 112b and the air holes 112c can be interconnected in pairs. When the three are interconnected in pairs, the ventilation and moisturizing effects of the roots and stems planted in the planting box 110 through the planting plate 112 will be better. Of course, the first watering holes 112a, the planting holes 112b and the air holes 112c can be disconnected in pairs, but the moisture reaching the surface of the planting plate 112 through the first watering holes 112a can indirectly penetrate into the planting box 110 from the first watering holes 112a that penetrate the surface of the planting plate 112b. Figure 1 、 Figure 2 、 Figure 5 、 Figure 6 As shown, the first irrigation holes 112a at the top of the planting plate 112 not only distribute water to the surface of the planting plate 112, but also transport water to the surface of the next planting box 110 through the first irrigation holes 112a that run from top to bottom. Users can reasonably select, match, and configure the entire composite irrigation system based on the aerial root climbing plants they plant. For each specific planting box 110, users can configure the planting plate 112 according to their preferences.
[0087] In at least one embodiment of the present application, the pouring component 120 includes:
[0088] The water storage member 121 has a water storage chamber 121a formed therein;
[0089] A first water pump 122 is provided in the water storage chamber 121a;
[0090] One end of the first watering assembly 123 is connected to the first water pump 122 , and the other end is connected to the first watering hole 112 a .
[0091] Please refer to Figures 1-5 In this embodiment, the water storage chamber 121a of the water storage member 121 is first filled with water to ensure that the connection between the first water pump 122, the first irrigation assembly 123 and the first irrigation hole 112a is firm and unobstructed.
[0092] When started, the first water pump 122 starts to work and pumps water out of the water storage chamber 121a.
[0093] Water is pumped to the first watering assembly 123 by the first water pump 122 .
[0094] The water is delivered to the first watering holes 112a through the first watering assembly 123 and then evenly watered to the roots of the plants.
[0095] By using the first water pump 122, the compound irrigation system 100 can automatically perform irrigation, improving irrigation efficiency and reducing labor input and errors of manual irrigation.
[0096] The first irrigation assembly 123 ensures that water can be uniformly delivered to the first irrigation hole 112a, thereby uniformly irrigating the plant roots and avoiding uneven wetting and drying of the roots.
[0097] Through the stable operation of the first water pump 122, the system can accurately control the water flow, avoiding over-irrigation or insufficient irrigation, and ensuring the healthy growth of plant roots.
[0098] In at least one embodiment of the present application, the first irrigation assembly 123 comprises:
[0099] The first communication pipe 1231 is connected to one end of the first water pump 122;
[0100] The first water supply pipe 1232 is in communication with the first communication pipe 1231;
[0101] The water absorption rope 1233 is in communication with one end of the first water supply pipe 1232, and the other end is arranged in the first irrigation hole 112a and penetrates the first irrigation hole 112a along the axis of the first irrigation hole 112a to irrigate the roots in the planting hole 112b.
[0102] Please refer to Figures 1-5 In this embodiment, the water in the water storage cavity 121a is pumped out by the first water pump 122, the water pumped out by the water pump enters the first water supply pipe 1232 through the first communication pipe 1231, the water flows from the first communication pipe 1231 into the first water supply pipe 1232, the first water supply pipe 1232 is responsible for further delivering water flow to the water absorption rope 1233, the water absorption rope 1233 absorbs water by capillary action and uniformly delivers water along its length direction, the water absorption rope 1233 uniformly delivers water into the first irrigation hole 112a and distributes along the axis of the first irrigation hole 112a, the water in the first irrigation hole 112a is uniformly distributed, ensuring that the water can uniformly penetrate into the plant roots in the planting hole 112b, thereby effectively irrigating.
[0103] The water absorption rope 1233 can accurately control the delivery of water by capillary action, avoiding the problem of excessive or insufficient water in the traditional irrigation method.
[0104] The water absorption rope 1233 penetrates along the axis of the first irrigation hole 112a, so that the water can be uniformly distributed in the first irrigation hole 112a, thereby uniformly irrigating the plant roots and preventing the situation of excessive or insufficient water in a local area.
[0105] Because the water can be evenly distributed and precisely controlled, the dry and wet environment of the plant roots is balanced, thereby improving the growth environment of the roots and promoting the healthy growth of the plant.
[0106] It should be noted that the water absorption rope 1233 is a water absorption fiber rope.
[0107] In at least one embodiment of the present application, the frame 111 is provided with a second irrigation hole 111a;
[0108] The irrigation member 120 further comprises:
[0109] A second water pump 124 is arranged in the water storage cavity 121a;
[0110] A second irrigation assembly 125 is connected to one end of the second water pump 124 and the other end of the second irrigation hole 111a, so as to irrigate the surface of the plate planting plate 112.
[0111] In at least one embodiment of the present application, the second irrigation assembly 125 comprises:
[0112] A second communication pipe 1251 is connected to one end of the second water pump 124;
[0113] A second water supply pipe 1252 is connected to the second communication pipe 1251.
[0114] Please refer to Figures 1-5 In this embodiment, before the system is running, the water storage cavity 121a of the water storage member 121 is filled with water, and the connection between the second water pump 124, the second communication pipe 1251, the second water supply pipe 1252 and the second irrigation hole 111a is firm and unobstructed.
[0115] When starting, the second water pump 124 starts to work, and the water in the water storage cavity 121a is pumped out, and the water is pumped to the second communication pipe 1251 through the second water pump 124, and then is transported to the second irrigation hole 111a through the second water supply pipe 1252.
[0116] The water is evenly sprayed to the surface of the plate planting plate 112 through the second irrigation hole 111a, so as to ensure that the plants on the plate planting plate 112 are evenly supplied with water.
[0117] By increasing the second irrigation hole 111a and the second water pump 124, double irrigation of the plant roots and the surface of the plate planting plate 112 is realized, so as to ensure that each part of the plant can be fully supplied with water.
[0118] The second irrigation assembly 125 ensures that the surface of the plate planting plate 112 is wet, which helps to improve the overall environment for plant growth, especially for the aerial root climbing plant which needs a humid environment.
[0119] Through uniform irrigation on the surface of the plate planting plate 112, the risk of breeding of bacteria is reduced, and the healthy growth of plants is facilitated.
[0120] It should be noted that, as shown in Figure 1 、 Figure 2 The water is sprayed uniformly to the surface of the plate planting plate 112 of the planting box 110 and the front surface of the planting box 110 through the second irrigation hole 111a. If there is still excess water after being absorbed by the roots and stems of the plants planted in the planting box 110, the water will continue to flow along the front surface of the planting box 110 and the surface of the plate planting plate 112 to the surface of the plate planting plate 112 of the planting box 110 installed in the next layer of the planting box 110 and the front surface of the planting box 110. In this way, the water penetrates layer by layer until the excess water is collected by the water storage cavity 121a of the water storage member 121 arranged at the lowest position.
[0121] In at least one embodiment of the present application, the frame 111 is provided with a baffle 1111, and the baffle 1111 is arranged obliquely with the plate planting plate 112;
[0122] In the axial direction of the second water supply pipe 1252, the baffle 1111 blocks the second water supply pipe 1252, and the extension line of the axis of the second water supply pipe 1252 intersects the baffle 1111, so that the liquid flowing out of the second water supply pipe 1252 passes through the baffle 1111 to the surface of the plate planting plate 112.
[0123] Please refer to Figures 1-5 In this embodiment, the second water pump 124 is started to deliver the water in the water storage cavity 121a through the second water supply pipe 1252. The water flowing out of the second water supply pipe 1252 directly flows onto the baffle 1111. The water flows along the obliquely arranged baffle 1111 and is uniformly distributed on the surface of the baffle 1111. The water flows from the baffle 1111 to the surface of the plate planting plate 112, ensuring that the water can uniformly irrigate the plants on the plate planting plate 112.
[0124] The water flow can be uniformly distributed on the surface of the plate planting plate 112, avoiding the concentration or unevenness of the water flow caused by direct irrigation.
[0125] The existence of the baffle 1111 reduces the impact force of the water flow directly impacting the surface of the plate planting plate 112, protecting the roots and plant materials of the plants and preventing damage caused by too strong water flow.
[0126] The water can be uniformly distributed along the baffle 1111, improving the utilization efficiency of water resources.
[0127] In at least one embodiment of the present application, the composite irrigation system 100 further comprises:
[0128] The frame body 130 is arranged on the water storage element 121 and extends away from the water storage element 121 in a vertical direction.
[0129] The first and second irrigation assemblies 125 are arranged on the frame body 130.
[0130] The planting box 110 is rotatably arranged on the frame body 130.
[0131] In at least one embodiment of the present application, the frame body 130 is provided with a first fixing portion 131 and a second fixing portion 132. One end of the frame body 111 is rotatably connected to the first fixing portion 131, and the other end of the frame body 111 is telescopically connected to the second fixing portion 132.
[0132] In at least one embodiment of the present application, the first fixing portion 131 is provided with a rotating member 133.
[0133] The second fixing portion 132 is provided with a telescopic rod 134. One end of the frame body 111 is rotatably connected to the rotating member 133, and the other end of the frame body 111 is arranged at one end of the telescopic rod 134 away from the second fixing portion 132.
[0134] The telescopic rod 134 is telescoped to drive the planting box 110 to rotate around the rotating member 133, so as to adjust the angle of the planting box 110.
[0135] Please refer to Figures 1-5 In this embodiment, one end of the frame body 130 is fixed on the water storage element 121, and the other end extends to support the first and second irrigation assemblies 125.
[0136] The first and second irrigation assemblies 125 are respectively arranged on the frame body 130.
[0137] The planting box 110 is arranged on the frame body 130 through the rotating member 133 and the telescopic rod 134, forming a rotatable and angle-adjustable structure.
[0138] The rotating member 133 is used to rotate the planting box 110 and adjust the direction of the planting box 110.
[0139] The telescopic rod 134 is used to adjust the angle of the planting box 110, so that the planting box 110 can obtain the best illumination under different light conditions and optimize the plant growth environment.
[0140] It should be noted that the rotating member 133 has a generally "U"-shaped ring shape.
[0141] In at least one embodiment of the present application, the water storage member 121 is recessed inwardly near one side of the planting box 110 to form a water receiving channel 121b, which is in communication with the water storage cavity 121a.
[0142] Please refer to Figures 1-5 In this embodiment, the water storage member 121 is installed with the planting box 110, the watering assembly and other components, the water receiving channel 121b is in communication with the water storage cavity 121a, and the water flow path is ensured to be unobstructed.
[0143] The first and second water pumps 124 are started, and water is delivered from the water storage cavity 121a to the planting box 110 and the surface of the planting plate 112 through the watering assembly for watering.
[0144] Excess water is collected through the water receiving channel 121b and flows back to the water storage cavity 121a.
[0145] It is ensured that excess water can be collected in time, avoiding waste and environmental pollution.
[0146] The collected water returns to the water storage cavity 121a and can be used for watering again after filtration and treatment, realizing the recycling of water resources.
[0147] The above is only an embodiment of the present application, and it should be pointed out that those skilled in the art can make improvements without departing from the creative concept of the present application, but these all belong to the protection scope of the present application.
Claims
1. A composite irrigation system, characterized in that: include: A frame body is formed by extending from the ground in a vertical direction toward a direction away from the ground, and the frame body has a mounting surface; The planting module is arranged on the installation surface, and along a direction perpendicular to the installation surface, the projection area of the planting module completely blocks the projection area of the installation surface.
2. The composite irrigation system according to claim 1, characterized in that: The planting module has a plurality of planting boxes. In the vertical direction, the projection area of the upper planting box partially blocks the projection area of the lower planting box.
3. The composite irrigation system according to claim 2, characterized in that: The implantation module further comprises: A shielding member is provided at one end of the frame away from the ground; Along a direction perpendicular to the installation surface, the projection areas of the plurality of planting boxes and the shielding member completely cover the projection area of the installation surface.
4. The composite irrigation system according to claim 2, characterized in that: The planting box comprises a frame and a planting plate, the planting plate being arranged on the frame, the planting plate being provided with a first watering hole, a planting hole and an air vent, the first watering hole, the planting hole and the air vent being all connected, and the first watering hole, the planting hole and the air vent being arranged perpendicularly to each other in each pair; The composite irrigation system comprises: a watering member, connected to the first watering hole, and used to water the roots in the first watering hole; The pouring component comprises: A water storage component having a water storage cavity formed therein; a first water pump, disposed in the water storage chamber; The first watering assembly has one end connected to the first water pump and the other end connected to the first watering hole.
5. The composite irrigation system according to claim 4, characterized in that: The first pouring assembly includes: a first connecting pipe, one end of which is connected to the first water pump; a first water supply pipe, connected to the first connecting pipe; a water-absorbing rope, one end of which is connected to the first water supply pipe, and the other end of which is disposed in the first watering hole and passes through the first watering hole along the axis of the first watering hole, so as to irrigate the roots in the planting hole; The frame is provided with a second pouring hole; The pouring component also includes: a second water pump, disposed in the water storage chamber; The second watering assembly has one end connected to the second water pump and the other end connected to the second watering hole, so as to water the surface of the board planting plate.
6. The composite irrigation system according to claim 5, characterized in that: The second pouring assembly includes: a second connecting pipe, one end of which is connected to the second water pump; The second water supply pipe is connected to the second connecting pipe.
7. The composite irrigation system according to claim 6, characterized in that: The frame is provided with a baffle, and the baffle is arranged obliquely with the plate planting plate; In the axial direction of the second water supply pipe, the baffle blocks the second water supply pipe, and the extension line of the axis of the second water supply pipe intersects the baffle, so that the liquid flowing out of the second water supply pipe passes through the baffle to the surface of the plate.
8. The composite irrigation system according to claim 6, characterized in that: One end of the frame is arranged on the water storage member, and the other end extends from the vertical direction in a direction away from the water storage member; The first pouring assembly and the second pouring assembly are arranged on the frame; The planting box is rotatably arranged on the frame.
9. The composite irrigation system according to claim 4, characterized in that: The frame is provided with a first fixing portion and a second fixing portion. One end of the frame is rotatably connected to the first fixing portion, and the other end of the frame is telescopically connected to the second fixing portion.
10. The composite irrigation system according to claim 4, characterized in that: A side of the water storage member close to the planting box is inwardly recessed to form a water receiving channel, and the water receiving channel is communicated with the water storage cavity.