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A two-dimensional, adaptive finite element approach for simulation of backward erosion piping

机译:后向侵蚀管道仿真的二维自适应有限元方法

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Backward erosion piping (BEP) is a type of internal erosion that significantly contributes to internal erosion being a leading cause of levee and dam failures, second only to overtopping. Despite its significance, very few numerical or analytical tools exist for assessing the progression of backward erosion pipes. Further, existing tools do not automatically refine the mesh near the pipe tip, nor do they automatically search for the weakest erosion path in the foundation. Both features are critical for assessing piping when conditions along the pipe path vary due to natural geologic variability or engineered features such as filter trenches and partial cutoff walls. In the present study, a two-dimensional, auto-adaptive, finite element program has been developed that solves the coupled groundwater flow and erosion pipe flow equations in a piecewise, steady-state manner to simulate BEP progression using automated, local mesh refinement. Criteria for pipe advancement and pipe widening are presented that permit pipe growth through the mesh along the path of least resistance, and an approximation to account for foundation depth is introduced. Examples are presented in which BEP progression is simulated beneath a levee to illustrate the analysis method.
机译:向后侵蚀管道(BEP)是一种内部侵蚀,可显着促进内部侵蚀是堤坝和大坝故障的主要原因,仅次于逾期运行。尽管有其重要意义,但存在非常少数数控或分析工具,用于评估后向侵蚀管道的进展。此外,现有工具不会自动改进管道尖端附近的网格,也不会自动搜索基础中最弱的侵蚀路径。当沿管道路径的条件随着自然地质变异性或工程特征如过滤器沟渠和部分截止墙而变化时,这两个特征对于评估管道来说至关重要。在本研究中,已经开发了一种二维,自适应的有限元件,其解决了耦合的地下水流量和侵蚀管道流动方程,以分段,稳态方式使用自动化的本地网格精制模拟BEP进展。提出了管道推进和管道扩展的标准,其允许沿着阻力的路径通过网格生长,并介绍了近似以考虑基础深度的近似。提出了示例,其中在堤坝下模拟BEP进展以说明分析方法。

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