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SEISMIC RE-EVALUATION OF THE ARMENIAN NPP UNIT 2 ISSUES AND ENGINEERING APPROACH

机译:地震重新评估亚美尼亚人民国国家统计统计学组织2问题和工程方法

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As part of the overall effort of seismically upgrading the Armenian Nuclear Power Plant (ANPP) - Unit 2, the Armenian Nuclear Regulatory Authority (ANRA) with the technical support of the US NRC is performing a host of independent studies on key seismic issues associated with the nuclear facility. Specifically, by taking into account new information that has been generated by a number of sources on (a) the seismic hazards at the site, (b) the soil condition and layering, (c) the particularities of the reactor foundation design and its interface with the surrounding soil, and (d) structural details of the reactor and generator buildings, a comprehensive effort has been undertaken to independently establish floor response spectra that, in turn, better reflect the seismic reality at the plant. To accomplish the task of generating floor response spectra, that will be used in the seismic upgrade, detailed analyses focusing on (a) the site response using the capabilities of the SHAKE program, (b) the Soil-Structure-Interaction (SSI) aspect of the problem utilizing the SASSI and POROSLAM codes, and (c) the dynamic response of the reactor building through the use of the STARDYNE code were performed. The combined output of the various aspects of the analysis lead to a set of floor spectra at key locations on the structure so that the existing capacity of safety systems can be assessed as well as the need for upgrade to meet their revised seismic margins. While the current effort is work-in-progress, the paper presents preliminary results of this independent study and it attempts to make engineering comparisons with other on-going studies performed on behalf of the nuclear power utility in its effort to seismically upgrade the plant.
机译:作为地震升级亚美尼亚核电站(ANPP)的整体努力的一部分,亚美尼亚核监管机构(ANRA)与美国NRC的技术支持正在执行关于与之相关的关键地震问题的一系列独立研究核设施。具体而言,通过考虑在(a)现场的地震危险(b)土壤条件和分层的地震危害,(b)反应堆基础设计及其界面的特殊性,具体而言通过周围的土壤和(d)反应堆和发电机建筑的结构细节,已经进行了全面的努力,以独立建立地板响应光谱,反过来,更好地反映了植物的地震现实。为了实现生成地板响应谱的任务,将在地震升级中使用,详细分析专注于(a)使用摇动程序的能力,(b)土壤结构 - 交互(SSI)方面的站点响应利用Sassi和Poroslam代码的问题,并进行了(c)通过使用Stardyne代码进行反应堆建设的动态响应。分析的各个方面的组合输出导致结构上的关键位置的一组地板光谱,以便可以评估现有的安全系统容量,以及升级需要满足其修订后的地震边距。虽然目前的努力是正在进行的努力,但本文提出了这项独立研究的初步结果,并试图通过代表核电公司进行核电效力进行工程比较,以便在努力升级工厂。

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