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EVALUATING THE SEISMIC HAZARDS AND DEVELOPING DESIGN GROUND MOTIONS FOR YUCCA MOUNTAIN, NEVADA, U.S.A

机译:评估美国内华达州尤卡山的地震危险并开发设计地面运动

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Yucca Mountain, Nevada has been recommended and approved for development as the site of the United States' first permanent repository for the disposal of spent nuclear fuel and high-level radioactive waste. As part of the development process, a license application has been prepared and submitted to the U.S. Nuclear Regulatory Commission. The license application describes earthquake ground-motion parameters for the subsurface waste emplacement facility (repository block) and for surface facilities. The ground-motion parameters are used for design of the subsurface and surface facilities, to evaluate safety during the preclosure period, and to assess repository performance during the postclosure period. Development of the ground motion parameters has been performed in three phases: (1) probabilistic seismic hazard analyses (PSHA) for both ground shaking and fault displacement; (2) geotechnical, geophysical, and geologic site characterization of the repository block and Surface Facility Area (SFA) to acquire site-specific data for site-response analysis; and (3) site-response analyses to modify reference rock outcrop ground motions from the PSHA to site-specific conditions and to develop design ground motions. The PSHA was the largest and most comprehensive analysis ever conducted for ground-shaking hazard and was a first-of-a-kind assessment of probabilistic fault displacement hazard.Formal expert elicitation was used to develop inputs for the PSHA. The hazard from the PSHA was conditioned to establish an upper range of extreme ground motions based on geologic and seismological arguments. An integrated program of borehole logging, geophysics, and velocity surveys, spectral-analysis-of-surface-wave surveys, and dynamic laboratory testing was performed to characterize the lithologic, velocity, and dynamic material properties for input into the site-response analysis. Variabilities in site properties were quantified and are accommodated in the ground-motion estimates. Site-response analyses were performed to calculate hazard-consistent ground motions using a random vibration theory-based equivalent-linear approach. Response spectra, time histories, and strain-compatible properties (SFA only) for preclosure analyses were calculated for mean annual frequencies of exceedance (AFE) of 10-3, 5x10-4,and 10-4. For postclosure analyses, ground motions were calculated for mean AFEs between 10-4 and 10-8.
机译:内华达州尤卡山(Yucca Mountain)已被推荐并批准开发为美国第一个永久性处置废核燃料和高放射性废物处置库。作为开发过程的一部分,已经准备了许可证申请,并已提交给美国核监管委员会。该许可证申请描述了地下废物安置设施(储存库)和地面设施的地震地面运动参数。地面运动参数用于地下和地面设施的设计,以评估封闭前的安全性,并评估封闭后的储层性能。地震动参数的开发已分三个阶段进行:(1)针对地震动和断层位移的概率地震危险性分析(PSHA); (2)对储存区块和地面设施区(SFA)进行岩土,地球物理和地质现场表征,以获取特定于现场的数据以进行现场响应分析; (3)场地响应分析,以将参考岩石露头的地震动从PSHA修改为特定地点的条件,并开发设计地震动。 PSHA是有史以来针对地面震动危害进行的最大,最全面的分析,是对概率性断层位移危害的首次评估,并通过正式的专家引证为PSHA进行了开发。根据地质和地震论证,对PSHA的危害进行了条件调整,以建立较高范围的极端地面运动。进行了井眼测井,地球物理和速度调查,表面波频谱分析和动态实验室测试的集成程序,以表征岩性,速度和动态材料属性,以输入到现场响应分析中。量化了场地属性的变化,并将其纳入地面运动估算中。使用基于随机振动理论的等效线性方法,进行了场地响应分析,以计算危险一致的地面运动。计算封闭前分析的响应谱,时间历史和应变兼容特性(仅SFA),得出年平均超出频率(AFE)为10-3、5x10-4和10-4。对于封闭后分析,计算出平均运动量在10-4和10-8之间的地震动。

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