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持续强降雨引发水位耦合变化条件下堤防渗流及稳定性分析 被引量:14
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作者 岑威钧 李邓军 和浩楠 《河海大学学报(自然科学版)》 CAS CSCD 北大核心 2016年第4期364-369,共6页
针对江、河、湖泊土质堤防工程在持续强降雨下会导致堤前水位显著变化而可能引发堤防安全隐患,采用水-气二相非饱和渗流模型对堤防进行降雨入渗和堤前水位变化耦合条件下的饱和-非饱和渗流分析。分别开展降雨入渗、堤前水位上升及持续... 针对江、河、湖泊土质堤防工程在持续强降雨下会导致堤前水位显著变化而可能引发堤防安全隐患,采用水-气二相非饱和渗流模型对堤防进行降雨入渗和堤前水位变化耦合条件下的饱和-非饱和渗流分析。分别开展降雨入渗、堤前水位上升及持续强降雨耦合堤前水位上升过程的非稳定渗流有限元仿真分析。在此基础上对堤坡进行抗滑稳定分析,同时考察堤前水位变化及降雨过程中气相和基质吸力对堤坡稳定性的影响。计算结果表明:与单纯的降雨和水位上升相比,降雨耦合堤前水位上升会使堤身渗流及堤坡抗滑稳定性呈现较复杂的变化特性;考虑气相和基质吸力在一定程度上对堤坡稳定分析结果有利。 展开更多
关键词 堤防渗流 堤坡稳定性 持续降雨 径流 水位变化 降雨耦合堤前水位上升 水-气二相流
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Numerical three-dimensional modeling of earthen dam piping failure
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作者 Zhengang Wang 《Water Science and Engineering》 EI CAS CSCD 2024年第1期72-82,共11页
A physically-based numerical three-dimensional earthen dam piping failure model is developed for homogeneous and zoned soil dams.This model is an erosion model,coupled with force/moment equilibrium analyses.Orifice fl... A physically-based numerical three-dimensional earthen dam piping failure model is developed for homogeneous and zoned soil dams.This model is an erosion model,coupled with force/moment equilibrium analyses.Orifice flow and two-dimensional(2D)shallow water equations(SWE)are solved to simulate dam break flows at different breaching stages.Erosion rates of different soils with different construction compaction efforts are calculated using corresponding erosion formulae.The dam's real shape,soil properties,and surrounding area are programmed.Large outer 2D-SWE grids are used to control upstream and downstream hydraulic conditions and control the boundary conditions of orifice flow,and inner 2D-SWE flow is used to scour soil and perform force/moment equilibrium analyses.This model is validated using the European Commission IMPACT(Investigation of Extreme Flood Processes and Uncertainty)Test#5 in Norway,Teton Dam failure in Idaho,USA,and Quail Creek Dike failure in Utah,USA.All calculated peak outflows are within 10%errors of observed values.Simulation results show that,for a V-shaped dam like Teton Dam,a piping breach location at the abutment tends to result in a smaller peak breach outflow than the piping breach location at the dam's center;and if Teton Dam had broken from its center for internal erosion,a peak outflow of 117851 m'/s,which is 81%larger than the peak outflow of 65120 m3/s released from its right abutment,would have been released from Teton Dam.A lower piping inlet elevation tends to cause a faster/earlier piping breach than a higher piping inlet elevation. 展开更多
关键词 3D dam breach model 2D shallow water equations 3D slope stability analysis Piping failure Teton Dam Quail Creek dike
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