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A new approach of selecting real input ground motions for seismic design: The most unfavourable real seismic design ground motions

机译:为地震设计选择真实输入地震动的新方法:最不利的真实地震设计地震动

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This paper presents a new way of selecting real input ground motions for seismic design and analysis of structures based on a comprehensive method for estimating the damage potential of ground motions, which takes into consideration of various ground motion parameters and structural seismic damage criteria in terms of strength, deformation, hysteretic energy and dual damage of Park & Ang damage index. The proposed comprehensive method fully involves the effects of the intensity, frequency content and duration of ground motions and the dynamic characteristics of structures. Then, the concept of the most unfavourable real seismic design ground motion is introduced. Based on the concept, the most unfavourable real seismic design ground motions for rock, stiff soil, medium soil and soft soil site conditions are selected in terms of three typical period ranges of structures. The selected real strong motion records are suitable for seismic analysis of important structures whose failure or collapse will be avoided at a higher level of confidence during the strong earthquake, as they can cause the greatest damage to structures and thereby result in the highest damage potential from an extended real ground motion database for a given site. In addition, this paper also presents the real input design ground motions with medium damage potential, which can be used for the seismic analysis of structures located at the area with low and moderate seismicity. The most unfavourable real seismic design ground motions are verified by analysing the seismic response of structures. It is concluded that the most unfavourable real seismic design ground motion approach can select the real ground motions that can result in the highest damage potential for a given structure and site condition, and the real ground motions can be mainly used for structures whose failure or collapse will be avoided at a higher level of confidence during the strong earthquake.
机译:本文提出了一种新的选择实际输入地震动用于地震设计和结构分析的方法,该方法基于一种综合的估计地震动破坏潜力的方法,该方法考虑了各种地震动参数和结构地震破坏准则。强度,变形,磁滞能量和Park&Ang破坏指数的双重破坏。所提出的综合方法充分考虑了地震动的强度,频率含量和持续时间以及结构动力特性的影响。然后,介绍了最不利的真实地震设计地震动的概念。根据这一概念,根据结构的三个典型周期范围,选择了对岩石,硬土,中土和软土场地条件最不利的真实地震设计地震动。所选的真实强运动记录适用于重要结构的地震分析,这些重要结构在强震期间可以较高的置信度避免故障或倒塌,因为它们可能对结构造成最大的破坏,从而导致最大的潜在破坏。给定站点的扩展的真实地面运动数据库。此外,本文还提出了具有中等破坏潜力的实际输入设计地震动,可用于地震活动程度较低和中等的结构的地震分析。通过分析结构的地震响应,可以验证最不利的真实地震设计地震动。得出的结论是,最不利的真实地震设计地震动方法可以选择对于给定结构和场地条件可能导致最高破坏潜力的真实地震动,并且真实地震动可以主要用于破坏或倒塌的结构在强烈地震期间将以更高的置信度避免使用。

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