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A Simplified Method for Pore Pressure Buildup Prediction: From Laboratory Cyclic Tests to the 1D Soil Response Analysis in Effective Stress Conditions

机译:一种简化的孔隙压力预测方法:从实验室循环测试到有效应力条件下的一维土壤响应分析

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摘要

The importance of predictions of earthquake-induced pore water pressure has been widely recognized for reliable evaluations of strong-motion response of saturated soil. The build-up of excess pore water pressure, in fact, causes reduction in soil stiffness and strength, in some cases leading to liquefaction. Simplified predictive models in the literature are empirically based on the results of cyclic laboratory tests carried out in strain- or stress-controlled conditions. Most of such empirical models require, preliminarily, that the irregular earthquake load is reduced to an equivalent number of cycles of uniform shear stress, in order to reproduce the effect of a laboratory cyclic test. To avoid such conversion, rather complex and not always reliable, a stress-based model is here proposed that allows for the direct generalization of the cyclic test data to irregular stress histories. More realistic predictions should take into account also the dissipation and redistribution of pore pressure within a soil deposit, which can be effectively modelled using the one-dimensional theory of consolidation. The build-up and dissipation models have been incorporated in a program for 1D seismic response analyses in the time domain, in order to carry out coupled dynamic analyses in terms of effective stress. In this paper, after a brief recall of the proposed PWP model, the code performance will be verified with reference to a case history of a dyke damaged during the seismic sequence occurred in Emilia plain (Italy) in May, 2012.
机译:地震引起的孔隙水压力预测的重要性已被广泛认为是对饱和土壤强运动响应的可靠评估。实际上,过高的孔隙水压力的积累会导致土壤刚度和强度降低,在某些情况下会导致液化。文献中的简化预测模型是根据在应变或应力控制条件下进行的循环实验室测试的结果凭经验得出的。多数这样的经验模型首先要求将不规则地震荷载减小到等效剪应力循环的等效数量,以便重现实验室循环测试的效果。为了避免这种相当复杂且并非总是可靠的转换,这里提出了一种基于应力的模型,该模型允许将循环测试数据直接概括为不规则的应力历史记录。更现实的预测还应考虑土壤沉积物中孔隙压力的耗散和重新分布,这可以使用一维固结理论进行有效建模。为了在有效应力方面进行耦合动力分析,已经将建立和耗散模型并入了用于时域一维地震响应分析的程序中。在本文中,在简要回顾了所提出的PWP模型后,将参考2012年5月在意大利艾米利亚平原发生的地震序列中发生的堤坝损坏的案例历史来验证代码的性能。

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