先进试验堆MP-2实验热安全裕度计算

G. Hawkes
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引用次数: 0

摘要

迷你板2 (MP-2)辐照试验是在爱达荷国家实验室(INL)先进试验堆(ATR)的多个试验地点设计的一种燃料实验。该实验是一个插入式测试,其中小型铝包覆燃料板样品(迷你板)由ATR主冷却剂系统(PCS)水直接冷却。MP-2燃料板实验将在ATR的几个不同辐照位置进行辐照。这个燃料实验包含由整体铀钼组成的铝包覆燃料迷你板。四种不同类型的燃料板与燃料肉厚度和包层是MP-2测试的一部分。对MP-2实验进行了热分析。讨论了用商业有限元和传热程序ABAQUS计算反应瞬态过程中离核沸腾比(DNBR)和流动不稳定比(FIR)的方法。在ATR循环开始时,燃料实验的热生成率高,来自外垫片控制缸的热倍率低,而在ATR循环结束时,情况正好相反。在循环过程中,以10天为单位进行热分析,计算反应性瞬态期间的DNBR和FIR。该技术在ATR循环的不同时间计算燃料板表面的DNBR和所有水组件在每个有限元表面和节点的FIR。在由详细的物理分析提供的瞬态计算中,热率随时间变化。氧化生长在燃料板也纳入。用ABAQUS后置处理器显示瞬态计算结果。通过在有限元模型的每个位置计算这些参数,保守性被准确性所取代。这允许更大的余量热液压安全参数。
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Thermal Safety Margin Calculation of the MP-2 Experiment in the Advanced Test Reactor
The Mini-Plate 2 (MP-2) irradiation test is a fueled experiment designed for irradiation in multiple test locations in the Advanced Test Reactor (ATR) at the Idaho National Laboratory (INL). The experiment is a drop-in test where small aluminum-clad fuel plate samples (mini plates) are cooled directly by the ATR Primary Coolant System (PCS) water. The MP-2 fuel plate experiment will be irradiated in several different irradiation locations of the ATR. This fueled experiment contains aluminum-clad fuel mini plates consisting of monolithic U-Mo. Four different types of fuel plates with fuel meat thickness and cladding are part of the MP-2 test. A thermal analysis has been performed on the MP-2 experiment. A method for calculating Departure from Nucleate Boiling Ratio (DNBR) and Flow Instability Ratio (FIR) during a reactivity transient using the commercial finite element and heat transfer code ABAQUS is discussed. At the start of an ATR cycle the heat generation rate of the fueled experiment is high and the heat rate multiplier from the outer shim control cylinders is low, while the reverse is true at the end of the ATR cycle. Thermal analyses at 10-day increments during the cycle calculate the DNBR and FIR during a reactivity transient. This technique calculates DNBR for the fuel plate surfaces and FIR for all water components for each finite element surface and node at various times during the ATR cycle. Heat rates vary with time during the transient calculations that are provided by a detailed physics analysis. Oxide growth on the fuel plates is also incorporated. Results from the transient calculations are displayed with the ABAQUS post processor. By calculating these parameters at each location in the finite element model, conservatism is replaced with accuracy. This allows for a greater margin for the thermal hydraulic safety parameters.
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