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Risk-Targeted versus Current Seismic Design Maps for the Conterminous United States

机译:风险目标与当前的喉部地震设计地图

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The probabilistic portions of the seismic design maps in the NEHRP Provisions (FEMA, 2003/2000/1997), and in the International Building Code (ICC, 2006/2003/2000) and ASCE Standard 7-05 (ASCE, 2005a), provide ground motion values from the USGS that have a 2% probability of being exceeded in 50 years. Under the assumption that the capacity against collapse of structures designed for these "uniform-hazard" ground motions is equal to, without uncertainty, the corresponding mapped value at the location of the structure, the probability of its collapse in 50 years is also uniform. This is not the case however, when it is recognized that there is, in fact, uncertainty in the structural capacity. In that case, site-to-site variability in the shape of ground motion hazard curves results in a lack of uniformity. This paper explains the basis for proposed adjustments to the uniform-hazard portions of the seismic design maps currently in the NEHRP Provisions that result in uniform estimated collapse probability. For seismic design of nuclear facilities, analogous but specialized adjustments have recently been defined in ASCE Standard 43-05 (ASCE, 2005b). In support of the 2009 update of the NEHRP Provisions currently being conducted by the Building Seismic Safety Council (BSSC), herein we provide examples of the adjusted ground motions for a selected target collapse probability (or target risk). Relative to the uniform-hazard ground motions currently used in the NEHRP Provisions, the risk-targeted ground motions for design are smaller (by as much as about 30%) in the New Madrid Seismic Zone, near Charleston, South Carolina, and in the coastal region of Oregon, with relatively little (< 15%) change almost everywhere else in the conterminous U.S.
机译:Nehrp条款(FEMA,2003/2000/1997)和国际建筑码(ICC,2006/2003/2000)和ASCE标准7-05(ASCE,2005A)中的概​​率部分,提供来自USG的地面运动值,50年来具有2%的概率。在假设针对这些“统一危险”的结构的结构崩溃的能力等于,没有不确定的情况下,结构位置的相应映射值,50年内崩溃的概率也是均匀的。然而,这不是这种情况,当认识到,实际上存在结构能力的不确定性。在这种情况下,地面运动危险曲线形状的现场对现场变异导致缺乏均匀性。本文介绍了拟议调整对目前在NEHRP规定中的地震设计地图的统一危险部分的统一危害部分的基础,导致均匀估计的崩溃概率。对于核设施的地震设计,最近在ASCE标准43-05(ASCE,2005B)中定义了类似但专门的调整。支持2009年关于建筑地震安全理事会(BSSC)目前进行的NEHRP规定的更新,在此我们提供了针对所选目标崩溃概率(或目标风险)的调整后地面运动的例子。相对于目前在NEHRP的规定中使用的均匀危险地面运动,新马德里地震区的设计风险目标地面运动较小(多达约30%),靠近Charleston,South Carolina,以及俄勒冈州沿海地区,相对较少(<15%)几乎在孔雀石的其他地方变化

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