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P95 Assessing the Contribution of ERT Monitoring in Karstic Risks Management by Numerical Simulations and Lab Experiments

机译:P95通过数值模拟和实验室实验评估erge监测在岩溶风险管理中的贡献

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Accurate methodologies are required to manage risks linked to land-use planning in covered kart terrains, especially in densely urbanized areas. The main risk lies in the occurrence of a collapse at the base of buildings or infrastructures. These sinkholes often occur suddenly with no warning. The induced damages range from temporary loss of serviceability during repair works to complete destruction and loss of human lives. ERT (electrical resistivity tomography) used in time-lapse mode has shown great promise in monitoring rapid dynamic subsurface processes as the electrical conductivity of.rocks and soils depends on their water content, ionic concentrations and clay content. The efficiency of ERT monitoring in detecting cavities rising to the surface is assessed through numerical simulations and laboratory experiments. The aim of the study is to propose an automated detection strategy to manage these risks based on the comparison of the inverted resistivity of each model block to the range of resistivities expected when nothing is changing of every model blocks. These resistivity ranges will be computed from Monte-Carlo simulations to take into account measurement and inversion errors.
机译:准确的方法是管理与覆盖卡丁车地形中的土地使用规划相关的风险,尤其是在密集城市化的地区。主要风险在于建筑物或基础设施基础的崩溃发生。这些污水孔通常突然发生,没有警告。诱导损害的损失范围从维修工程期间暂时的可维护性损失,以完全破坏和丧失人类生命。在时间流逝模式下使用的ERT(电阻率断层扫描)在监测快速动态地下工艺时,在监测快速动态地下工艺中,因为陆千和土壤的电导率取决于其含水量,离子浓度和粘土含量。通过数值模拟和实验室实验评估了检测到表面上升到表面的空腔的效率。该研究的目的是提出自动检测策略,以基于对预期的每个模型块的倒置电阻率的比较来管理这些风险,当所有模型块中没有改变时,这些模型块的范围。这些电阻率范围将从Monte-Carlo仿真计算,以考虑测量和反转误差。

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