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Failure of riverbank protection structure and remedial approach: A case study in Suraburi province, Thailand

机译:河岸保护结构与补救方法失败 - 泰国泗水省案例研究

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摘要

This paper presents the case study of a collapsed riverbank protection structure, located in the curvature of the watershed along the Pasak river in Saraburi province, Thailand. Although efforts have been made to twice rehabilitate this collapsed structure, the rebuilt protection structures were unstable to prevent progressive collapse damage and the causes of their failure remained elusive. The project team was engaged to carried out the site investigation and finite element analysis prior to providing the remedial approach on the collapsed structure. The outcome from this study reveals that the natural disaster events were the main causes of the structure failure. During the rainy season, water flowed into the river from upstream farmlands by crossing the backfill of the riverbank protection structure. Seepage forces were thus developed in the direction of inflows, which resulted in reduced stability of the riverbank protection structure. Furthermore, the strong currents in the river continuously scoured the banks, undermining the natural slope in front of the riverbank protection structure, resulting in soil erosion in the passive zone and instability of the protection structure. Based on these two causes of failure, a remedial solution was devised using a new bored pile riverbank protection structure with the usage of geocomposites and ripraps. Geocomposites and ripraps were installed at the back and front of the bored pile walls to relieve the structure from seepage forces and to prevent soil erosion, respectively. An adequate factor of safety against the external and internal failure of the new riverbank protection structure was verified by finite element modeling and the results confirmed that the structure was safe.
机译:本文介绍了一个折叠河岸保护结构的案例研究,位于泰国萨拉伯里省的Pasak河曲率曲率。尽管已经努力两次恢复这种折叠结构,但重建的保护结构是不稳定的,以防止进步崩溃损害,并且失败的原因仍然难以捉摸。项目团队在提供折叠结构上的补救方法之前进行现场调查和有限元分析。本研究的结果表明,自然灾害事件是结构失败的主要原因。在雨季期间,通过穿过河岸保护结构的回填,从上游农田流入河流。因此,渗流力在流入方向上发展,这导致河岸保护结构的稳定性降低。此外,河流中强大的电流不断彻底彻底彻底彻底彻底冲破了河岸保护结构前面的自然坡度,导致无源区的土壤侵蚀和保护结构的不稳定性。基于这两种故障原因,使用新的无聊桩河岸保护结构设计了一种补救解决方案,其中包括地理复合材料和撕裂。 Geocom复合材料和RIPRAP安装在钻孔桩墙的后部和前部,以缓解渗流力的结构并分别防止土壤侵蚀。通过有限元建模验证了对新的河岸保护结构的外部和内部故障的适当安全性,并确认结构安全。

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