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Evaluation of soil liquefaction potential using energy approach: experimental and statistical investigation

机译:利用能量法评估土壤液化潜力:实验和统计研究

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Liquefaction has caused many catastrophes during earthquakes in the past . The strain energy-based method is one of the modern methods used to estimate liquefaction potential. In this study, wide-ranging experimental data were gathered from cyclic tests and centrifuge modeling of liquefaction. A model was then developed based on the strain energy needed for liquefaction to occur using the group method of data handling and the gravitational search algorithm. Contributions of the effective variables were evaluated through a sensitivity analysis. To check the accuracy of the developed strain energy model, cyclic triaxial tests were conducted on sandy soil and silty sand specimens. Comparison of the energy required to initiate liquefaction in the tested soil specimens with values predicted by the developed model indicated high accuracy of the energy-based model. Subsequently, the accuracy of the energy model was assessed in field conditions using the amount of strain energy released by real earthquakes in various sites. The ability of the model to distinguish liquefied areas from non-liquefied ones confirms its accuracy in field conditions. Finally, the developed model was compared with some available relationships to estimate the strain energy required for liquefaction to occur.
机译:在过去的地震中,液化造成了许多灾难。基于应变能的方法是用于估算液化潜力的现代方法之一。在这项研究中,从循环试验和液化离心模型中收集了广泛的实验数据。然后,使用数据处理的分组方法和重力搜索算法,根据液化所需的应变能,开发了一个模型。通过敏感性分析评估有效变量的贡献。为了检查所建立的应变能模型的准确性,对砂土和粉砂样本进行了循环三轴试验。将测试的土壤样品中引发液化所需的能量与已开发的模型预测的值进行比较,表明基于能量的模型具有很高的准确性。随后,在野外条件下,使用真实地震在各个地点释放的应变能,评估了能量模型的准确性。该模型区分液化区域和非液化区域的能力证实了其在现场条件下的准确性。最后,将开发的模型与一些可用的关系进行比较,以估计液化发生所需的应变能。

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