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Robustness based structural design: an integrated approach for multihazard risk mitigation

机译:基于鲁棒性的结构设计:多危险风险缓解的综合方法

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Multi-story building structures can suffer local damage or even structural collapse in case of extreme natural or man-made hazards. While all buildings are at a certain risk, some attributes can reduce the risk by reducing the vulnerability. One such attribute is the use of structural systems which can ensure that, in case of abnormal loads or failure of some elements, the collapse is prevented and the risk to occupants is reduced. Mitigation of some specific hazard can also help to reduce the risk, e.g. protective barriers against impact or stand-off distance against direct effects of blast. Past experience has shown that structures that are designed according to seismic design philosophy can survive to a multiplicity of hazards. The objective of the paper is the adaptation of seismic design methodology to robust design demands of multistory frame buildings prone to multihazard scenarios. The hazard is modeled by removal of critical members. Nonlinear dynamic analyses are carried out in order to evaluate their robustness.
机译:多层建筑结构可能遭受局部损伤或极端自然或人为灾害的情况下,甚至建筑物倒塌。虽然所有的建筑都是在一定的风险,一些属性可以通过降低脆弱性降低的风险。一个这种属性是使用结构系统可以保证的是,在不正常的负荷或一些元件的故障的情况下,防止了解体和风险乘员减小。一些具体的危害的缓解也有助于降低风险,例如防撞击或爆炸针对的直接影响防区外距离保护屏障。过去的经验表明,旨在按照抗震设计理念,结构,能存活到危害的多样性。本文的目的是抗震设计方法,多层框架结构的建筑物容易多危害场景的稳健设计要求的适应。危险通过除去关键部件的建模。非线性动态分析,以便评估其健壮性进行。

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