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Coupled studies of fluvial erosion and cantilever failure for cohesive riverbanks: Case studies in the experimental flumes and U-Tapao River

机译:粘性河岸河道侵蚀与悬臂破坏的耦合研究:实验河道和乌塔堡河的案例研究

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The main objective of this paper is to introduce a novel coupled method for simulating the fluvial erosion, cantilever failure and bedload sediment transport to describe the overhanging properties of experimental banks and natural riverbanks. For fluvial erosion results, the previous relationships between the critical shear stress, and the erodibility coefficient indicated that they do not follow the values of the experimental works and the U-Tapao River, Thailand. Therefore, it is necessary to determine these relationships locally. The cantilever failure results revealed that the dominant failure mechanism of the experimental works is beam -type failure, while shear-type failure is the dominant failure in the U-Tapao River. Finally, a numerical model was developed based on a triple-grid approach to simulate the behaviour of a cantilever within the framework of fluvial erosion, cantilever failure, and bedload transportation. The simulated results showed good agreement with experimental results, and the U-Tapoa River in terms of the temporal variations of spatially averaged bank width, dominant failure mechanism, and overhanging block dimensions. (C) 2017 International Association for Hydro-environment Engineering and Research, Asia Pacific Division. Published by Elsevier B.V. All rights reserved.
机译:本文的主要目的是介绍一种模拟河流冲刷,悬臂破坏和底泥沙运移的新型耦合方法,以描述实验河岸和天然河岸的悬垂特性。对于河流侵蚀结果,临界剪切应力与可蚀性系数之间的先前关系表明,它们不遵循实验工作和泰国的U-Tapao河的值。因此,有必要在本地确定这些关系。悬臂破坏的结果表明,实验工作的主要破坏机制是梁型破坏,而剪切型破坏是乌塔堡河的主要破坏。最后,基于三重网格方法开发了一个数值模型,以模拟河流冲刷,悬臂破坏和床载运输框架内的悬臂行为。模拟结果与实验结果吻合良好,U-Tapoa河在空间平均河岸宽度,主导破坏机制和悬垂块体尺寸的时间变化方面都表现出很好的一致性。 (C)2017年国际水环境工程与研究协会亚太分会。由Elsevier B.V.发布。保留所有权利。

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