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Non-classical damping properties and modal correlation coefficient for dynamic analysis of structures.

机译:用于结构动力分析的非经典阻尼特性和模态相关系数。

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摘要

The seismic response of secondary systems depends, in addition to their uncoupled dynamic characteristics, on the interaction with primary structures supporting them. This dissertation presents a verification study of the formulations to evaluate the seismic response of non-classically damped building-piping systems by modal synthesis approach. The existing studies consider only simple representative primary-secondary systems. No real-life like coupled system such as building-piping was used in these studies. Further, the majority of simple systems considered in these studies do not represent realistic coupled systems with significant effect of non-classical damping as they have either high values of mass ratios or systems with detuned modes.; In this dissertation, different configurations of simple representative systems as well as real-life like building-piping systems are considered. Responses obtained from modal superposition time history analyses as well as response spectrum analyses are compared with the corresponding responses obtained by Brookhaven National Laboratory from the direct integration time history analyses. Modal superposition time history analyses results and direct integration time history analyses results are almost identical. The mean and standard deviation of responses from response spectrum analyses are close to the corresponding values evaluated using direct integration time history analysis. In addition to the verification results, a detailed discussion is also presented on the significance of non-classical damping. It is shown that the effect of non-classical damping is significant in systems that have nearly tuned modes and sufficiently small values of modal mass ratios. It is also illustrated that composite modal damping is an alternate form of classical damping that can result in incorrect responses in non-classically damped systems. Possible reasons for numerical and modeling differences that can occur in real-life like building-piping system are identified and their effect on the dynamic characteristics of the coupled system is illustrated.; In the response spectrum method, the maximum modal responses are combined using an appropriate formulation for the modal correlation coefficient. This dissertation presents a new formulation which is based on the observation that the response spectrum method is a design method such that the statistical values of responses evaluated from multiple time history analyses should be close to the corresponding values obtained from the response spectrum method. Results from a numerical study using several real earthquake records are used to develop the new formulation. Different expressions are proposed for combining modal responses that have same algebraic sign and for those that have opposite algebraic signs.
机译:次级系统的地震响应除了其非耦合的动态特性外,还取决于与支撑它们的主要结构的相互作用。本文通过模态综合方法对非经典阻尼建筑管道系统的地震响应进行了公式验证。现有研究仅考虑简单的代表性初等教育系统。在这些研究中,没有使用像建筑物管道之类的耦合系统这样的现实生活。此外,这些研究中考虑的大多数简单系统并不代表具有非经典阻尼显着影响的现实耦合系统,因为它们具有较高的质量比值或具有失谐模态的系统。本文考虑了简单代表性系统的不同配置以及现实生活中的建筑管道系统。从模态叠加时程分析以及响应谱分析获得的响应与布鲁克海文国家实验室从直接积分时程分析获得的相应响应进行比较。模态叠加时程分析结果和直接积分时程分析结果几乎相同。来自响应频谱分析的响应的平均值和标准偏差接近于使用直接积分时程分析评估的相应值。除了验证结果之外,还对非经典阻尼的重要性进行了详细讨论。结果表明,在具有近似调谐模态和模态质量比值足够小的系统中,非经典阻尼的影响非常明显。还说明了复合模态阻尼是经典阻尼的另一种形式,会在非经典阻尼系统中导致错误的响应。确定了可能在现实生活中发生的数值和模型差异的可能原因,例如建筑管道系统,并说明了它们对耦合系统动态特性的影响。在响应谱方法中,使用模态相关系数的适当公式组合最大模态响应。本文提出了一种新的表述,其基于以下观察:响应谱法是一种设计方法,使得从多个时程分析中评估的响应的统计值应接近从响应谱法获得的相应值。使用几个真实地震记录进行的数值研究结果被用于开发新公式。对于组合具有相同代数符号的模态响应和具有相反代数符号的模态响应,提出了不同的表达式。

著录项

  • 作者

    Bose, Mrinal Kanti.;

  • 作者单位

    North Carolina State University.;

  • 授予单位 North Carolina State University.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 218 p.
  • 总页数 218
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

  • 入库时间 2022-08-17 11:46:43

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