首页> 外文会议>International conference on structural mechanics in reactor technology >DEVELOPING A LOGIC-TREE FOR UPDATING THE PROBABILISTIC SEISMIC HAZARD ASSESSMENT FOR THE ANGRA DOS REIS NUCLEAR POWER PLANT SITE IN BRAZIL
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DEVELOPING A LOGIC-TREE FOR UPDATING THE PROBABILISTIC SEISMIC HAZARD ASSESSMENT FOR THE ANGRA DOS REIS NUCLEAR POWER PLANT SITE IN BRAZIL

机译:开发逻辑树,以更新巴西安格拉迪斯雷斯核电站现场的概率地震危害评估

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The seismic design loads for the existing reactors of the Angra dos Reis nuclear power plant in the state of Rio de Janeiro, SE Brazil, were defined using deterministic seismic hazard analysis. In the 1990s, work began to update the seismic hazard assessment for the site using a probabilistic approach, and characterizing the ground motions in terms of PGA. Following the accident at the Fukushima Daiichi power plant in March 2011, a project was initiated to re-evaluate the site hazard in accordance with modern practices. The new PSHA will characterize the ground motions in terms of response spectral ordinates rather than only PGA, so that uniform hazard spectra can be developed for the site. The most important development is that the hazard assessment is to be conducted within the SSHAC framework (as a Level 1 study) and will develop a logic-tree to capture the epistemic uncertainties in both the seismic source and ground-motion characterization models. In accordance with the SSHAC process, the first stage of the project is to update the geological and seismological databases for SE Brazil, with a particular focus on the earthquake catalog, for evaluation by a Technical Integrator team. The proposed procedure for the study is then to develop a relatively simple initial model that will allow extensive hazard sensitivity calculations to be performed in order to focus the efforts of the team on those elements contributing most strongly to the hazard and/or to the overall uncertainty.
机译:使用确定性地震危害分析定义了在Rio de Janeiro,Se Brazil状态下的现有反应器的地震设计载荷。在20世纪90年代,工作开始使用概率方法更新现场的地震危害评估,并在PGA方面表征地面运动。在2011年3月福岛达奇尼发电厂的事故之后,启动了一个项目,以根据现代实践重新评估网站危害。新的PSHA将在响应光谱条件而不是仅PGA方面表征地面运动,从而可以为该部位开发统一的危险谱。最重要的发展是危害评估将在SSHAC框架内进行(作为1级研究),并将开发一种逻辑树,以捕获地震源和地面运动表征模型中的认知不确定性。根据SSHAC进程,该项目的第一阶段是更新SE Brazil的地质和地震数据库,特别关注地震目录,由技术集成团队进行评估。该研究的提议程序是开发一个相对简单的初始模型,允许进行广泛的危害敏感性计算,以便将团队对危害和/或整体不确定性的贡献最强烈贡献的那些因素集中起来。

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