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Response Spectrum Analysis of Concrete Gravity Dams Including Dam-Water-Foundation Interaction

机译:考虑重力-水-基础相互作用的混凝土重力坝反应谱分析

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摘要

A response spectrum analysis (RSA) procedure, which estimates the peak response directly from the earthquake design spectrum, is available for the preliminary phase of design and safety evaluation of concrete gravity dams. This analysis procedure includes the effects of dam-water foundation interaction, known to be important in the earthquake response of dams. This paper presents a comprehensive evaluation of the accuracy of this RSA procedure by comparing its results with those obtained from response history analysis (RHA) of the dam modeled as a finite-element system, including dam-water-foundation interaction. The earthquake response of an actual dam to an ensemble of 58 ground motions, selected and scaled to be consistent with a target spectrum determined from a probabilistic seismic hazard analysis for the dam site, was determined by the RHA procedure. The median of the peak responses of the dam to 58 ground motions provided the benchmark result. The peak response was also estimated by the RSA procedure directly from the median response spectrum. Comparison of the two sets of results demonstrated that the RSA procedure estimates stresses to a degree of accuracy that is satisfactory for the preliminary phase in the design of new dams and in the safety evaluation of existing dams. The level of accuracy achieved in the RSA procedure is noteworthy, especially considering the complicated effects of dam-water-foundation interaction and reservoir bottom absorption on the dynamics of the system, and the number of approximations necessary to develop the procedure. (C) 2014 American Society of Civil Engineers.
机译:可直接从地震设计频谱估算峰值响应的响应谱分析(RSA)程序可用于混凝土重力坝的设计和安全评估的初步阶段。该分析程序包括大坝-水基础相互作用的影响,众所周知,这对大坝的地震反应很重要。通过将其结果与建模为有限元系统的大坝响应历史分析(RHA)获得的结果进行比较,本文介绍了该RSA过程的准确性的全面评估,包括大坝-水-基础相互作用。通过RHA程序确定了实际大坝对58种地面运动的地震响应,这些运动的选择和缩放与从大坝现场的概率地震灾害分析确定的目标频谱一致。大坝对58次地面运动的峰值响应的中值提供了基准测试结果。峰响应也可以通过RSA程序直接从中值响应谱估计。两组结果的比较表明,RSA程序对应力的估算准确度足以满足新水坝设计初期阶段和现有水坝安全性评估的要求。 RSA过程中达到的精度水平是值得注意的,特别是考虑到坝-水-基础相互作用和水库底部吸收对系统动力学的复杂影响,以及开发该过程所需的近似值。 (C)2014年美国土木工程师学会。

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  • 来源
    《Journal of structural engineering》 |2015年第8期|04014202.1-04014202.9|共9页
  • 作者

    Lokke Arnkjell; Chopra Anil K.;

  • 作者单位

    Norwegian Univ Sci & Technol, Dept Struct Engn, NO-7491 Trondheim, Norway;

    Univ Calif Berkeley, Dept Civil & Environm Engn, Engn, Berkeley, CA 94720 USA;

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