首页> 外文会议>International conference on the physics of reactors;PHYSOR 2010 >FAST SENSITIVITY RANKING AND RELIABILITY ANALYSIS OF PASSIVE THERMAL HYDRAULIC SAFETY SYSTEM BY AUTOMATIC DIFFERENTIATION
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FAST SENSITIVITY RANKING AND RELIABILITY ANALYSIS OF PASSIVE THERMAL HYDRAULIC SAFETY SYSTEM BY AUTOMATIC DIFFERENTIATION

机译:被动热工液压安全系统的快速灵敏度排序与可靠性分析

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摘要

A method for efficient estimation of passive safety system reliability and sensitivity ranking of input parameters has been developed. It is based on generating linear response surface about the design point using the technique of Automatic Differentiation, which is subsequently used for propagating input uncertainty through the best estimate thermal hydraulics code by importance sampling Markov Chain Monte Carlo simulation in the most probable failure region. Results on the application of the method to a simplified model of the passive residual heat transport system in fast reactors, is presented to demonstrate the gain in computational time and improved prediction of low values of failure probability.
机译:已经开发了一种有效估计被动安全系统可靠性和输入参数灵敏度等级的方法。它基于使用自动微分技术在设计点周围生成线性响应面的基础,该技术随后用于通过在最可能的故障区域进行重要性抽样的马尔可夫链蒙特卡罗模拟,通过最佳估计热力学代码来传播输入不确定性。将该方法应用到快速反应堆被动余热传输系统简化模型中的结果,证明了计算时间的增加和对失败概率低值的改进预测。

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