首页> 外文会议>ASME Pressure Vessels and Piping conference >ESTIMATION ACCURACY OF ABSOLUTE MAXIMUM ELASTO-PLASTIC DISPLACEMENTS OF MDOF OSCILLATORS BASED ON A MODAL COMBINATION RULE WITH POST-YIELDING MODAL PROPERTIES AND LINEAR RESPONSE SPECTRUM VALUES
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ESTIMATION ACCURACY OF ABSOLUTE MAXIMUM ELASTO-PLASTIC DISPLACEMENTS OF MDOF OSCILLATORS BASED ON A MODAL COMBINATION RULE WITH POST-YIELDING MODAL PROPERTIES AND LINEAR RESPONSE SPECTRUM VALUES

机译:基于屈服后模态特性和线性响应谱值的模态组合规则的MDOF振荡器绝对最大弹塑性位移的估计精度

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Taniguchi, et al. [1] developed an analytical method for evaluating the absolute maximum elasto-plastic displacements of multi-degree-of-freedom (MDOF) oscillators under the action of base excitation based on a modal combination. Its essence is that 1) modal frequencies, shapes and damping during yielding of any member of the MDOF oscillators are readily specified by the modal analysis with the secondary stiffness of the members being yielded, 2) assuming that a bilinear hysteresis may describe the force-displacement relationship of each mode, an equivalently linearized system consisting of a single-degree-of-freedom (SDOF) oscillator is introduced to approximate the absolute maximum elasto-plastic displacement of each mode, 3) the absolute maximum elasto-plastic displacement of the MDOF oscillator is evaluated by the Square Root of Sum of Squares rule (SRSS-rule) by combining the maximum elasto-plastic displacement of each mode approximated by the proposed equivalently linearized system. This study first provides small modification in the equivalently linearized system. Then, employing a couple of MDOF oscillators whose spring at arbitrary storey may yield and an accelerogram, the maximum elasto-plastic displacement of the MDOF oscillator is calculated by the proposed method and is compared with that computed by the time history analysis. Their comparison suggests that the proposed method can reasonably evaluate the absolute maximum elasto-plastic displacement of the MDOF oscillator subjected to earthquake excitation as the conventional SRSS-rule does that for the linear MDOF oscillators.
机译:谷口等。 [1]开发了一种分析方法,用于评估基于模态组合的基础激励作用下的多自由度(MDOF)振荡器的绝对最大弹塑性位移。其实质是:1)通过模态分析可以很容易地指定MDOF振荡器的任何构件屈服期间的模态频率,形状和阻尼,并给出构件的次级刚度; 2)假设双线性磁滞可以描述力-每种模式的位移关系,引入由单自由度(SDOF)振荡器组成的等效线性化系统,以近似估计每种模式的绝对最大弹塑性位移; 3)每种模式的绝对最大弹塑性位移。 MDOF振荡器通过平方和规则的平方根规则(SRSS规则)进行评估,方法是将所提出的等效线性化系统所近似的每种模式的最大弹塑性位移相结合。这项研究首先在等效线性化系统中提供了小的修改。然后,使用一对MDOF振荡器,它们的任意层的弹簧都可能产生屈服并产生加速度图,通过所提出的方法计算MDOF振荡器的最大弹塑性位移,并将其与时程分析所计算的值进行比较。他们的比较表明,所提出的方法可以合理地评估地震激励下MDOF振荡器的绝对最大弹塑性位移,就像常规SRSS规则对线性MDOF振荡器所做的那样。

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