首页> 外文会议>International conference on nuclear engineering;ICONE17 >NEXT GENERATION SAFETY ANALYSIS METHODS FOR SFRS (2) EXPERIMENTAL ANALYSES BY SIMMER-HI FOR THE INTEGRAL VERIFICATION OF THE COMPASS CODE ON FUEL-PIN DISRUPTION AND LOW- ENERGY DISRUPTED CORE MOTION
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NEXT GENERATION SAFETY ANALYSIS METHODS FOR SFRS (2) EXPERIMENTAL ANALYSES BY SIMMER-HI FOR THE INTEGRAL VERIFICATION OF THE COMPASS CODE ON FUEL-PIN DISRUPTION AND LOW- ENERGY DISRUPTED CORE MOTION

机译:SFRS的下一代安全分析方法(2)用SIMMER-HI进行燃料销和低能扰动运动的罗盘代码的集成验证的实验分析

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This paper describes experimental analyses using the SIMMER-III computer code, which is a two-dimensional multi-component multi-phase Eulerian fluid-dynamics code. Two topics of key phenomena in core disruptive accidents were presented in this paper: fuel-pin disruption, and low energy disrupted core motion. Related experimental database were reviewed to select appropriate experiments. To analyze the fuel-pin disruption behavior, the CABRI-EFM1 and the CABRI-E7 in-pile experiments were selected. The SIMMER-III calculation was in good agreement with the overall fuel-pin disruption and dispersion behavior, which was characterized by a thermal pin-failure mode, observed in the CABRI-EFM1 experiment. Since the code framework of SIMMER-III cannot treat a mechanical deformation and breakup behavior, the SAS4A code was applied to the CABRI-E7 experiment, where a mechanical pin-failure mode was realized. In this study, such a failure mode was also reasonably simulated. The low-energy disrupted core consists principally of fuel particles and liquid steel (or fuel). Under such a mixture condition, significantly reduced melt penetration length was obtained in the THEFIS out-of-pile experiments. SIMMER-III well simulated the melt freezing and blockage behavior observed in the experiment.
机译:本文介绍了使用SIMMER-III计算机代码进行的实验分析,SIMMER-III是二维多组分多相欧拉流体动力学代码。本文介绍了核心破坏性事故中的关键现象的两个主题:燃料销破坏和低能干扰核心运动。审查相关的实验数据库以选择合适的实验。为了分析燃料销破坏行为,选择了CABRI-EFM1和CABRI-E7堆内实验。 SIMMER-III计算与总体燃料销破坏和扩散行为非常吻合,其特征是在CABRI-EFM1实验中观察到热销失效模式。由于SIMMER-III的代码框架无法处理机械变形和断裂行为,因此将SAS4A代码应用于CABRI-E7实验,该实验实现了机械销钉失效模式。在这项研究中,还对这种故障模式进行了合理的模拟。低能干扰堆芯主要由燃料颗粒和液态钢(或燃料)组成。在这种混合条件下,THEFIS堆外实验中的熔体穿透长度大大减少。 SIMMER-III很好地模拟了实验中观察到的熔体冻结和堵塞行为。

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