一种用于室内高空景观绿植的微浇灌及自动排水集成系统

The integrated micro-irrigation and automatic drainage system solves the problem of watering and drainage for indoor high-altitude landscape plants, achieving precise watering and automatic drainage, ensuring healthy plant growth, and reducing human intervention and safety hazards.

CN224504264UActive Publication Date: 2026-07-17CHINA POWER CONSTR GRP ARCHITECTURAL PLANNING & DESIGN INST CO LTD +1

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CHINA POWER CONSTR GRP ARCHITECTURAL PLANNING & DESIGN INST CO LTD
Filing Date
2025-08-25
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Watering indoor high-altitude landscape plants presents challenges such as maintenance difficulties and poor drainage, leading to plant wilting, root rot, and safety hazards. Existing technologies cannot effectively solve these problems.

Method used

It employs micro-irrigation components and automatic drainage components, including drip irrigation pipes, capillary water pipes, water storage and drainage tanks, drainage branch pipes, and control components, to achieve precise irrigation and automatic drainage, and combines soil moisture sensors and water level sensors for intelligent control.

Benefits of technology

It achieves precise irrigation, reduces water waste, avoids leaf diseases, ensures healthy plant growth, automatically drains water to prevent waterlogging, saves space, reduces human intervention, avoids the risks of working at heights, and protects building facilities.

✦ Generated by Eureka AI based on patent content.

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Abstract

本实用新型涉及植物浇灌技术领域,尤其涉及一种用于室内高空景观绿植的微浇灌及自动排水集成系统;包括微浇灌组件和排水组件,微浇灌组件包括给水管、滴灌管和多个毛细分水管,给水管一端连接滴灌管,滴灌管埋入高空景观绿植所在的土壤内,滴灌管沿其轴向连通设置多个毛细分水管,每个毛细分水管都垂直滴灌管的轴向设置;排水组件包括蓄排水槽、排水管和多个排水支管,蓄排水槽位于高空景观绿植的下方,排水管伸入蓄排水槽内部设置,位于蓄排水槽内部的排水管沿其轴向连通设置多个排水支管,每个排水支管都垂直排水管的轴向设置,排水支管向靠近高空景观绿植的方向延伸设置;同时解决了精准浇灌和可靠排水问题。
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Claims

1. A micro-irrigation and automatic drainage integrated system for indoor high-altitude landscape greening plants, characterized in that, The system includes a micro-irrigation assembly and a drainage assembly. The micro-irrigation assembly includes a water supply pipe, a drip irrigation pipe, and multiple capillary water pipes. One end of the water supply pipe is connected to the drip irrigation pipe, which is buried in the soil where the aerial landscape plants are located. Multiple capillary water pipes are connected along the axial direction of the drip irrigation pipe, and each capillary water pipe is perpendicular to the axial direction of the drip irrigation pipe. The drainage assembly includes a water storage and drainage trough, a drainage pipe, and multiple drainage branch pipes. The water storage and drainage trough is located below the aerial landscape plants. The drainage pipe extends into the water storage and drainage trough. Multiple drainage branch pipes are connected along the axial direction of the drainage pipe located inside the water storage and drainage trough. Each drainage branch pipe is perpendicular to the axial direction of the drainage pipe and extends towards the aerial landscape plants.

2. The integrated micro-irrigation and automatic drainage system for indoor high-altitude landscape greening plants according to claim 1, characterized in that, Each of the capillary water pipes is equipped with a dripper at the end away from the drip irrigation pipe, and the dripper extends out of the soil where the high-altitude landscape greenery is located.

3. The micro-irrigation and automatic drainage integrated system for indoor high-altitude landscape plants according to claim 1, characterized in that, The end of the water supply pipe away from the drip irrigation pipe is connected to the water supply pipeline.

4. The micro-irrigation and automatic drainage integrated system for indoor high-altitude landscape plants according to claim 1, characterized in that, The drain pipe extends out of the side wall of the water storage tank and connects to the overflow pipe. The overflow pipe is provided with an overflow port, which is located on the side wall of the water storage tank.

5. The micro-irrigation and automatic drainage integrated system for indoor high-altitude landscape plants according to claim 4, characterized in that, The overflow outlet is positioned above the upper end of the drainage branch pipe.

6. The micro-irrigation and automatic drainage integrated system for indoor high-altitude landscape plants according to claim 5, characterized in that, Each of the drainage branch pipes is provided with a filter layer at its upper end, and the overflow outlet is set above the filter layer.

7. A micro-irrigation and automatic drainage integrated system for indoor high-altitude landscape greening plants according to any one of claims 4-6, characterized in that, The end of the drain pipe furthest from the water storage tank is connected to the outlet pipe; The bottom of the water storage and drainage tank is inclined toward the outlet pipe, or the bottom of the water storage and drainage tank is provided with a guide channel.

8. The integrated micro-irrigation and automatic drainage system for indoor high-altitude landscape greening plants according to claim 1, characterized in that, It also includes a control component, which includes a controller, a water level sensor, a soil moisture sensor, and a solenoid valve. The water level sensor, the soil moisture sensor, and the solenoid valve are respectively connected to a set of connection ports on the controller. The soil moisture sensor is installed in the soil where the high-altitude landscape greenery is located. The water level sensor is installed in the water storage and drainage tank. The solenoid valve is connected in series with the water supply pipe.

9. The micro-irrigation and automatic drainage integrated system for indoor high-altitude landscape plants according to claim 8, characterized in that, The water level sensor is installed at the upper end of the drainage branch pipe.

10. The integrated micro-irrigation and automatic drainage system for high indoor landscape plants according to claim 8, wherein, The controller is located inside a controller box, which is installed in the indoor ceiling.