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Reliability-based design of earth-fill dams to mitigate damage due to severe earthquakes

机译:基于可靠性的土石坝设计,以减轻由于强烈地震造成的破坏

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摘要

This paper deals with a strategy for the maintenance of geotechnical structures such as earth-fill dams. Standard penetration test (SPT) N-values are frequently used to determine the soil parameters. For this purpose, a statistical model for the N-values is firstly determined from sounding test results. In this research, however, Swedish weight sounding (SWS) tests are employed as they are simpler than SPTs. The identification of spatial correlation of the soil parameters is very difficult, since the number of sampling points is very limited to model the spatial variability. SWS is advantageous, compared with other major sounding method to identify the spatial correlation structure inside the geotechnical structures, since it makes spatially short-interval exams possible due to its simplicity and compactness. Based on the statistical model for the N-values, the shear strength parameters are derived through the empirical relationships. Then, a reliability analysis of the embankments is conducted considering the variability of the internal friction angle and the seismic hazard. Consequently, the probability of damage to the earth-fill over the next 50 years is calculated, and the effect of improving the earth-fill is evaluated based on this probability.
机译:本文讨论了维护土石坝等岩土结构的策略。标准渗透试验(SPT)的N值通常用于确定土壤参数。为此,首先从探测测试结果中确定N值的统计模型。但是,在这项研究中,采用了瑞典重量探测(SWS)测试,因为它们比SPT更简单。由于采样点的数量非常有限,无法对空间参数进行建模,因此很难确定土壤参数的空间相关性。与其他主要的探测方法相比,SWS具有优势,因为它具有简单性和紧凑性,因此可以在空间上进行短间隔检查,从而可以识别岩土结构内部的空间相关结构。基于N值的统计模型,通过经验关系得出抗剪强度参数。然后,考虑了内摩擦角的变化和地震危险性,对路堤进行了可靠性分析。因此,计算了未来50年内对填土造成破坏的可能性,并根据该概率评估了填土的效果。

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