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Number of Equivalent Stress Cycles for Liquefaction Evaluations in Active Tectonic and Stable Continental Regimes

机译:活跃构造和稳定大陆地区液化评估的等效应力循环数

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摘要

The number of equivalent cycles (n_(eq)) concept plays an important role in geotechnical earthquake engineering and underlies the accounting for ground-motion duration in simplified liquefaction evaluation procedures, whether explicitly or implicitly. In this regard, several n_(eq) correlations have been proposed over the years that were developed using a similar variant of the Palmgren-Miner (P-M) fatigue theory. The correlations presented herein were developed using an alternative implementation of the P-M theory that better accounts for the nonlinear response of the soil and for multidirectional shaking. The proposed correlations are for shallow crustal earthquakes in both active tectonic and stable continental regimes. Additionally, two forms of the correlations are presented, one being expressed as a function of peak ground acceleration (a_(max)). This relation shows a strong negative correlation between a_(max) and n_(eq), implying that motions with high amplitudes have short durations and vice versa. This negative correlation is not accounted for in most previously proposed n_(eq) correlations, which could result in the erroneous weighting of the unlikely scenarios of high amplitude-longer duration and low amplitude-short duration motions in liquefaction hazard studies.
机译:等效循环数(n_(eq))概念在岩土地震工程中起着重要作用,并在简化的液化评估程序中明确或隐含地动持续时间的计算奠定了基础。就这一点而言,多年来已经提出了几种使用Palmgren-Miner(P-M)疲劳理论的类似变体开发的n_(eq)相关性。本文介绍的相关性是使用P-M理论的另一种实现方式开发的,该方法可以更好地说明土壤的非线性响应和多方向振动。拟议的相关性适用于活跃构造和稳定大陆地区的浅地壳地震。另外,呈现了两种形式的相关性,一种形式表示为峰值地面加速度(a_(max))的函数。这种关系表明a_(max)和n_(eq)之间存在很强的负相关性,这意味着高振幅运动的持续时间较短,反之亦然。在大多数以前提出的n_(eq)相关性中未考虑这种负相关性,这可能导致在液化危害研究中对高振幅较长持续时间和低振幅较短持续时间运动的不太可能的场景进行错误的加权。

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  • 来源
    《Journal of geotechnical and geoenvironmental engineering》 |2017年第4期|04016116.1-04016116.11|共11页
  • 作者单位

    Dept. of Civil and Environmental Engineering, Virginia Polytechnic Institute and State Univ., 200 Patton Hall, Blacksburg, VA 24061;

    Dept. of Civil and Environmental Engineering, Virginia Polytechnic Institute and State Univ., 200 Patton Hall, Blacksburg, VA 24061;

    Dept. of Civil and Environmental Engineering, Virginia Polytechnic Institute and State Univ., 200 Patton Hall, Blacksburg, VA 24061;

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