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Sustainable Earthquake-Resisting System

机译:可持续抗震系统

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摘要

A new design philosophy that leads to efficient earthquake-resisting systems is presented. Commercially available technologies are used to propose an archetype that is capable of damage control, elimination or reduction of residual stresses, collapse prevention (CP), and postearthquake realignment and repairs (PERR). The new approach was inspired by the current state of knowledge and the need to develop sustainable earthquake-resisting systems. As a result, design-led analysis (DLA) was synthesized to develop repairable, earthquake-resistant rocking wall-moment frames (RWMFs). DLA is a displacement-based method of approach with built-in results. Explicit conditions for structural sustainability, CP, and PERR have been developed. The proposed formulae embrace the entire spectrum of seismic response, starting from zero loading to incipient collapse and from incipient collapse to full recovery. A number of generic details have been developed to support the expected performances. The proposed solutions are exact within the bounds of the theoretical assumptions and are ideally suited for preliminary design purposes.
机译:提出了一种导致高效抗震系统的新设计理念。使用可商购的技术来提出一种原型,该原型能够控制损坏,消除或减少残余应力,防止坍塌(CP)以及震后重新排列和修复(PERR)。新方法的灵感来自于当前的知识水平以及开发可持续的抗震系统的需求。结果,合成了设计导向分析(DLA),以开发可修复的,抗震的摇摆壁矩框架(RWMF)。 DLA是具有内置结果的基于位移的方法。已经为结构的可持续性,CP和PERR开发了明确的条件。所提出的公式涵盖了地震响应的整个范围,从零载荷开始到初始坍塌,从初始崩溃到完全恢复。已经开发了许多通用细节来支持预期的性能。所提出的解决方案在理论假设的范围内是精确的,并且非常适合于初步设计目的。

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