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Cured soil lattice ridge combined type ecological bank protection structure and construction method
The invention discloses a solidified soil lattice ridge combined type ecological revetment structure and a construction method, and relates to the technical field of water conservancy project river channel revetment construction, pine piles, plastic steel sheet piles and solidified soil are combined, the pine piles serve as main supporting structures of the system and provide supporting force for the whole revetment structure system, and the plastic steel sheet piles serve as main supporting structures of the system and provide supporting force for the whole revetment structure system. The pine pile is connected into the plastic steel plate pile in an inserting and driving mode, the pine pile and the plastic steel plate pile are meshed with each other, the water stopping and soil retaining functions are achieved, northern larch is suitable for being adopted for the pine pile, carbonization prevention treatment is conducted on the portion 1 m below the pile top, the model of the plastic steel plate pile is 718 * 180 * 8 mm, the length of the plastic steel plate pile is 1.5 m, and the soil solidification is achieved by mixing a certain proportion of ISER curing agent into dredged mud. A solidified body with a certain mechanical property is formed through mixing, forming and maintenance, side slopes on the two banks of the river bank can be protected, the stability of the side slopes can be maintained, greening planting can be conducted on solidified soil, and the ecological, environment-friendly, attractive and pollution-free bank protection form is achieved.
本发明公开了一种固化土格梗组合式生态护岸结构及施工方法,涉及水利工程河道护岸施工技术领域,利用松木桩、塑钢板桩、固化土的三者组合,所述松木桩,为该系统的主要支护结构,给整个护岸结构体系提供支撑力,所述塑钢板桩,采用插打的方式将松木桩连接至塑钢板桩中,使两者相互咬合,并具有止水和挡土功能,所述松木桩宜采用北方落叶松,桩顶以下1米进行防碳化处理,所述塑钢板桩型号宜采用718*180*8mm,长度为1.5米,所述固化土是指在疏浚泥中掺入一定比例的ISER固化剂,通过拌合、成型和养护形成一定力学性能的固化体,即能保护河堤两岸边坡,维持边坡稳定,又能在固化土上绿化种植实现生态环保美观无污染的护岸形式。
Cured soil lattice ridge combined type ecological bank protection structure and construction method
The invention discloses a solidified soil lattice ridge combined type ecological revetment structure and a construction method, and relates to the technical field of water conservancy project river channel revetment construction, pine piles, plastic steel sheet piles and solidified soil are combined, the pine piles serve as main supporting structures of the system and provide supporting force for the whole revetment structure system, and the plastic steel sheet piles serve as main supporting structures of the system and provide supporting force for the whole revetment structure system. The pine pile is connected into the plastic steel plate pile in an inserting and driving mode, the pine pile and the plastic steel plate pile are meshed with each other, the water stopping and soil retaining functions are achieved, northern larch is suitable for being adopted for the pine pile, carbonization prevention treatment is conducted on the portion 1 m below the pile top, the model of the plastic steel plate pile is 718 * 180 * 8 mm, the length of the plastic steel plate pile is 1.5 m, and the soil solidification is achieved by mixing a certain proportion of ISER curing agent into dredged mud. A solidified body with a certain mechanical property is formed through mixing, forming and maintenance, side slopes on the two banks of the river bank can be protected, the stability of the side slopes can be maintained, greening planting can be conducted on solidified soil, and the ecological, environment-friendly, attractive and pollution-free bank protection form is achieved.
本发明公开了一种固化土格梗组合式生态护岸结构及施工方法,涉及水利工程河道护岸施工技术领域,利用松木桩、塑钢板桩、固化土的三者组合,所述松木桩,为该系统的主要支护结构,给整个护岸结构体系提供支撑力,所述塑钢板桩,采用插打的方式将松木桩连接至塑钢板桩中,使两者相互咬合,并具有止水和挡土功能,所述松木桩宜采用北方落叶松,桩顶以下1米进行防碳化处理,所述塑钢板桩型号宜采用718*180*8mm,长度为1.5米,所述固化土是指在疏浚泥中掺入一定比例的ISER固化剂,通过拌合、成型和养护形成一定力学性能的固化体,即能保护河堤两岸边坡,维持边坡稳定,又能在固化土上绿化种植实现生态环保美观无污染的护岸形式。
Cured soil lattice ridge combined type ecological bank protection structure and construction method
一种固化土格梗组合式生态护岸结构及施工方法
ZHAO MIN (Autor:in) / GAO CHANG (Autor:in) / ZENG QINGYUAN (Autor:in) / HAN SHUAIBING (Autor:in)
12.11.2024
Patent
Elektronische Ressource
Chinesisch
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