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Vegetation restoration method and restoration device for high and steep rock slope
The invention relates to a vegetation restoration method and device for a high and steep rock slope, and discloses a vegetation restoration method and device for a high and steep rock slope. According to the vegetation restoration method, water guiding and water retention of the high and steep rock slope are more uniform through a porous drip irrigation head and a multi-layer water guiding and water retention fiber net, and the humidity of the multi-layer water guiding and water retention fiber net is monitored in real time through a plurality of humidity sensors; according to the vegetation restoration method and device, automatic irrigation is achieved, and the vegetation coverage rate of the high and steep rock slope can be increased. The multi-hole drip irrigation device is characterized in that the multi-hole drip irrigation device is composed of a water guide fiber net framework, multiple layers of water guide and water retention fiber nets, drip irrigation water conveying pipes, connecting iron wires, multi-hole drip irrigation heads, laying fixing rings and drip irrigation holes, the four corners of the water guide fiber net framework are connected with the corresponding laying fixing rings respectively, and the multiple layers of water guide and water retention fiber nets are laid on the water guide fiber net framework; the multi-layer water-guiding and water-retaining fiber net is connected with the water-guiding fiber net framework through a plurality of connecting iron wires, and the drip irrigation water conveying pipe is arranged on the multi-layer water-guiding and water-retaining fiber net.
本发明一种高陡岩石坡面植被修复方法及修复装置公开了一种通过多孔滴灌头和多层导水保水纤维网使高陡岩石坡面的导水保水更加均匀,通过多个湿度传感器对多层导水保水纤维网的湿度进行实时监测,以实现自动灌溉的植被修复方法及修复装置,能够提高高陡岩石坡面的植被覆盖率。其特征在于由导水纤维网骨架、多层导水保水纤维网、滴灌输水管、连接铁丝、多孔滴灌头、铺设固定环以及滴灌孔组成,导水纤维网骨架的四个角分别与对应的铺设固定环相连接,多层导水保水纤维网铺设于所述导水纤维网骨架上,所述多层导水保水纤维网通过多个连接铁丝与所述导水纤维网骨架相连接,滴灌输水管置于所述多层导水保水纤维网上。
Vegetation restoration method and restoration device for high and steep rock slope
The invention relates to a vegetation restoration method and device for a high and steep rock slope, and discloses a vegetation restoration method and device for a high and steep rock slope. According to the vegetation restoration method, water guiding and water retention of the high and steep rock slope are more uniform through a porous drip irrigation head and a multi-layer water guiding and water retention fiber net, and the humidity of the multi-layer water guiding and water retention fiber net is monitored in real time through a plurality of humidity sensors; according to the vegetation restoration method and device, automatic irrigation is achieved, and the vegetation coverage rate of the high and steep rock slope can be increased. The multi-hole drip irrigation device is characterized in that the multi-hole drip irrigation device is composed of a water guide fiber net framework, multiple layers of water guide and water retention fiber nets, drip irrigation water conveying pipes, connecting iron wires, multi-hole drip irrigation heads, laying fixing rings and drip irrigation holes, the four corners of the water guide fiber net framework are connected with the corresponding laying fixing rings respectively, and the multiple layers of water guide and water retention fiber nets are laid on the water guide fiber net framework; the multi-layer water-guiding and water-retaining fiber net is connected with the water-guiding fiber net framework through a plurality of connecting iron wires, and the drip irrigation water conveying pipe is arranged on the multi-layer water-guiding and water-retaining fiber net.
本发明一种高陡岩石坡面植被修复方法及修复装置公开了一种通过多孔滴灌头和多层导水保水纤维网使高陡岩石坡面的导水保水更加均匀,通过多个湿度传感器对多层导水保水纤维网的湿度进行实时监测,以实现自动灌溉的植被修复方法及修复装置,能够提高高陡岩石坡面的植被覆盖率。其特征在于由导水纤维网骨架、多层导水保水纤维网、滴灌输水管、连接铁丝、多孔滴灌头、铺设固定环以及滴灌孔组成,导水纤维网骨架的四个角分别与对应的铺设固定环相连接,多层导水保水纤维网铺设于所述导水纤维网骨架上,所述多层导水保水纤维网通过多个连接铁丝与所述导水纤维网骨架相连接,滴灌输水管置于所述多层导水保水纤维网上。
Vegetation restoration method and restoration device for high and steep rock slope
高陡岩石坡面植被修复方法及修复装置
YANG JUNPENG (author) / ZHAO PUTIAN (author)
2024-03-12
Patent
Electronic Resource
Chinese
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