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STUDY ON MIXING DUE TO TRANSVERSAL FLOW IN A FUEL SUBASSEMBLY OF FAST REACTOR (Sodium Experiment using a 37-Pin Subassembly Model)

机译:快速反应器燃料子组件中横向流动混合的研究(使用37引脚子组件模型的钠实验)

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Estimation of the highest temperature in a fuel subassembly is needed for safety and reliable operation of fast reactors. Cross flow has a significant role for mixing phenomena in the subassembly. Especially, the cross flow will be enhanced in a deformed pin bundle of high burnup core. Such mixing due to the cross flow was investigated. Sodium experiments were carried out using a wire wrapped 37-pin subassembly model. In order to see a cross flow in a simple and clear geometry as an element of mixing phenomena, a blockage was installed in the subassembly. Mixing due to the cross flow was found in the experiment. The subchannel analysis code, ASFRE, was applied to the experimental analyses. Measured axial and transverse temperature distributions in the subassembly were correlated with the cross flow and the wire spacer. The calculated temperature profiles were in good agreement with the experimental results. ASFRE simulated the influence of the wire spacer also. Database for the mixing phenomena with the cross flow was obtained.
机译:需要估计燃料子组件中的最高温度,以确保快速反应器的安全性和可靠操作。交叉流动对子组件中的混合现象具有重要作用。特别地,在高燃烧芯的变形销束中,交叉流程将得到增强。研究了由于交叉流引起的这种混合。使用电线包裹37引脚子组件模型进行钠实验。为了在简单明确的几何形状中看到作为混合现象的元素的交叉流量,在子组件中安装了堵塞。在实验中发现了由于交叉流引起的混合。 ASFRE的子信道分析代码应用于实验分析。子组件中的测量轴向和横向温度分布与交叉流和线间隔物相关。计算的温度曲线与实验结果吻合良好。 asfre也模拟了线间隔物的影响。获得了具有交叉流动的混合现象的数据库。

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