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Engineering analysis of measured rotational ground motions at GVDA

机译:GVDA处测得的旋转地面运动的工程分析

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Characteristics of rotational earthquake ground motions and their effects on structural response are not yet well-defined. Recording rotational ground motions directly in free field is in its infancy, and simultaneous six-component earthquake measurements are being accumulated slowly. A six-degree-of-freedom (6DOF) ground motion observation system was installed in the Garner Valley Downhole Array (GVDA), a very well-characterized and well-instrumented geotechnical array in Southern California. Since 2008, six-component free-field earthquake ground motions have been recorded from hundreds of earthquakes with a relatively wide range of hypocentral distances and magnitudes. In this paper, analysis was conducted to develop the characteristics of these measured rotational ground motions. Linear relationships between peak rotation velocity and peak ground acceleration were found, similar to previous 6DOF measurements in Taiwan and Japan. Ratios of rotation to translation as a function of hypocentral distance show larger ground rotations at closer distance, and that rotational ground motions tend to attenuate more rapidly than corresponding translational ground motions. Measured rotational motions show differences from estimations using elastic plane wave theory when using simple local apparent wave velocities. Finally, preliminary empirical relationships for rotational response spectra are estimated for earthquake engineering applications. (C) 2016 Elsevier Ltd. All rights reserved.
机译:旋转地震地面运动的特征及其对结构响应的影响尚未明确。直接在自由场中记录旋转地面运动尚处于初期阶段,同时进行的六分量地震测量也正在缓慢地累积。六自由度(6DOF)地面运动观测系统安装在Garner Valley井下阵列(GVDA)中,Garner井下阵列是南加州非常有特色且仪器齐全的岩土工程阵列。自2008年以来,已经记录了数百次地震的六分量自由场地震地震动,震中距离和震级相对较大。在本文中,进行了分析以开发这些测得的旋转地面运动的特征。发现峰值转速与峰值地面加速度之间的线性关系,类似于之前在台湾和日本进行的6DOF测量。旋转与平移的比例作为下心距的函数,在更近的距离处显示较大的地面旋转,并且旋转的地面运动比相应的平移地面运动倾向于更快地衰减。当使用简单的局部视在波速时,测得的旋转运动显示出与使用弹性平面波理论进行估计的差异。最后,为地震工程应用估计了旋转响应谱的初步经验关系。 (C)2016 Elsevier Ltd.保留所有权利。

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