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TRANSIENT ANALYSIS OF UO2 AND MOX-FUELED CORES BASED ON MICROSCOPIC REACTOR PHYSICS

机译:基于微观反应器物理学的UO2和MOX燃料芯的瞬态分析

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A transient analysis has been performed for UO2 and MOX-fueled light water reactor cores based on Microscopic Reactor Physics, which treats the detailed distribution of temperature and effective cross section within a rod. Conventionally the volume-averaged temperature and the Rowlands' effective temperature are used to calculate fuel rod-averaged cross sections, and applied to the transient analysis. The present method is considered as a reference and the result is compared with the conventional method for a mini fuel core containing eight fuel rods and a control rod. From numerical results, it is found that the Rowlands' model underestimates the peak power and the volume averaged model produces rather good peak power results. After 1.0 sec, the Rowlands' model yields the similar power as the reference, while the volume averaged model yields less power than the reference one.
机译:基于微观反应器物理学对UO2和MOX燃料的轻型水反应器芯进行了瞬态分析,其处理杆内的温度和有效横截面的详细分布。通常,体积平均温度和划船的有效温度用于计算燃料杆平均横截面,并应用于瞬态分析。本方法被认为是参考,并将结果与​​包含八个燃料棒和控制杆的迷你燃料芯的常规方法进行比较。根据数值结果,发现划船的模型低估了峰值功率,体积平均模型产生了相当良好的峰值功率结果。在1.0秒之后,划船的模型会产生类似的功率作为参考,而体积平均模型产生的功率低于参考。

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