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Experimental and numerical analysis of an unsaturated volcanic ash deposit for the establishment of an early warning system in a quarry in Costa Rica

机译:建立哥斯达黎加采石场预警系统的非饱和火山灰沉积物的实验和数值分析

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The paper presents the work carried out for the analysis of the hydro-mechanical behaviour of a volcanic ash in unsaturated conditions for the establishment of a landslide early warning system (EWS) in a Costa Rican quarry. Rapid mass movements involving ash material occurred in the greater quarry area during heavy rainfall events. Laboratory testing and numerical analyses were combined to provide a better understanding of the triggering mechanism and to provide guidelines for the EWS. Along with conventional laboratory analyses, the experimental program involved tests carried out under suction control to assess the volumetric response in unsaturated conditions of the material and to highlight potential collapse-upon-wetting phenomena. The behaviour of the material was analysed in a modern framework for soils in unsaturated conditions developed at the EPFL. Numerical simulations were performed with a coupled hydro-mechanical finite elements code in which the mentioned constitutive model is implemented. The analyses allowed a better understanding of the landslide triggering mechanism and provided pore water pressure values which are associated to the failure mechanism and can be used as threshold values for the EWS.
机译:本文介绍了为分析哥斯达黎加采石场滑坡预警系统(EWS)在非饱和条件下分析火山灰的水力力学行为而开展的工作。在暴雨期间,较大的采石场发生了涉及灰分物质的快速质量运动。结合了实验室测试和数值分析,以更好地了解触发机制并为EWS提供指导。除了常规的实验室分析外,该实验程序还涉及在抽吸控制下进行的测试,以评估材料在不饱和条件下的体积响应并突出潜在的润湿时崩塌现象。在EPFL开发的不饱和条件下土壤的现代框架中对材料的性能进行了分析。使用耦合的流体力学有限元代码进行了数值模拟,其中实现了本构模型。通过分析,可以更好地了解滑坡触发机制,并提供与破坏机制相关的孔隙水压力值,并且可以将其用作EWS的阈值。

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