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Characterizing the rotational components of earthquake ground motion.

机译:表征地震地面运动的旋转分量。

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摘要

Rotational components of ground motion, torsion about the vertical axis and rocking about orthogonal horizontal axes, are not routinely considered in seismic design because such components have not been recorded and their effects on the response of structures are unknown. Rotational recordings are unavailable because instruments are by-and-large unavailable. The characterization of rotational components of ground motion is a focus of this thesis. Because recordings of rotational components are unavailable, procedures are derived to extract rotational components of ground motion from recorded translational data. Two categories of procedures are proposed: Single Station Procedure (SSP) and Multiple Station Procedure (MSP). Single station procedures employ translational data recorded at a single station. Multiple station procedures employ three-component translational acceleration time series recorded in an array of closely spaced but spatially distributed accelerographs.;One of the newly developed MSPs, the Surface Distribution Method (SDM), enables the development of a design procedure for dense seismic arrays, whose primary purpose is to extract rotational ground motions. Design criteria are proposed to determine the length of the array, the number of recording stations and their spatial distribution.;Seismic codes and standards currently recommend the shifting of the center of mass to account for the effect of accidental torsion. This method does not produce the desired result, which is an increase in torsional response with an increase in accidental eccentricity. An improved definition of accidental eccentricity is proposed and studied for a wide range of one-story elastic systems, and nonlinear isolation systems. A preliminary investigation of the effect of rotational ground motions on the response of structures is performed. The rotational excitations are calculated using the SDM. The sample structures are a chimney subjected to horizontal and rocking ground motions, and four-story, base-isolated and fixed-based buildings subjected to horizontal, torsional and rocking ground motions. Rotational components of ground motion significantly affect the response of these structures.
机译:在地震设计中,通常不会考虑地面运动的旋转分量,围绕垂直轴的扭转和围绕正交水平轴的摇摆,因为尚未记录到这种分量,并且它们对结构响应的影响尚不清楚。旋转记录不可用,因为仪器基本上不可用。地震动旋转分量的表征是本文的重点。由于没有旋转分量的记录,因此导出了从记录的平移数据中提取地面运动的旋转分量的过程。提出了两类程序:单站程序(SSP)和多站程序(MSP)。单站程序使用在单站记录的翻译数据。多站程序采用记录在紧密间隔但空间分布的加速度计阵列中的三分量平移加速时间序列;新开发的MSP之一是表面分布方法(SDM),可以开发密集地震阵列的设计程序,其主要目的是提取旋转地面运动。提出了设计标准,以确定阵列的长度,记录站的数量及其空间分布。地震规范和标准目前建议重心的偏移以解决意外扭转的影响。这种方法不能产生理想的结果,即扭转响应的增加和偶然偏心率的增加。提出并研究了一种改进的意外偏心率定义,适用于各种单层弹性系统和非线性隔离系统。初步研究了旋转地面运动对结构响应的影响。使用SDM计算旋转激励。样本结构是经受水平和摇摆地震动的烟囱,以及经受水平,扭转和摇摆地震动的四层,基础隔离和固定式建筑物。地面运动的旋转分量会显着影响这些结构的响应。

著录项

  • 作者

    Basu, Dhiman.;

  • 作者单位

    State University of New York at Buffalo.;

  • 授予单位 State University of New York at Buffalo.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 436 p.
  • 总页数 436
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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