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BWR Parametric Sensitivity Effect of Regional Mode Instability on Stability Boundary

机译:区域模式不稳定性对边界线的BWR参数敏感性影响

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摘要

[[abstract]]Both in-phase (core wide mode) instability and out-of-phase (regional mode) instability are of great concerns in BWR stability issues. Normally, decay ratios for regional mode oscillations are much less than those under core wide conditions. However, under certain observation mode, the regional mode instability has the phenomenon of power increasing in one half of the core and at the same time, it decrease in the other half, so it looks like that the average power remains essentially constant. This research presents a study of fractional change of decay ratio to evaluate parametric effects of regional mode instability on reload core design power/flow stability boundary for the Chinshan Nuclear Power Plant Unit 2 Cycle 21 (BWR4). Making use of LAPUR5.2 and SIMULATE-3 codes, we have established a methodology to conduct such out-of-phase stability analysis. Many important parameters, such as system pressure, core flow rates, moderator void fraction, fuel physical and geometrical properties, have strong influences on regional mode stability. Current investigations have shown that at some operation points along the stability boundary, certain parameters present more sensitive characteristics.
机译:[[摘要]]在BWR稳定性问题中,同相(核宽模式)不稳定性和异相(区域模式)不稳定性都很重要。通常,区域模式振荡的衰减率要比宽磁芯条件下的衰减率小得多。但是,在一定的观测模式下,区域模式的不稳定性在核心的一半上具有功率增加的现象,而在另一半上则有所降低,因此平均功率看起来基本保持恒定。这项研究提出了衰减率的分数变化的研究,以评估区域模式不稳定性对金山核电站2号机组第21循环(BWR4)的重载堆芯设计功率/流量稳定边界的参数影响。利用LAPUR5.2和SIMULATE-3代码,我们建立了一种进行这种异相稳定性分析的方法。许多重要参数,例如系统压力,堆芯流速,减速剂空隙率,燃料物理和几何特性,对区域模式稳定性有很大影响。当前的研究表明,在沿稳定边界的某些操作点上,某些参数具有更敏感的特性。

著录项

  • 作者

    Chang-Lung Hsieh;

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  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 [[iso]]en
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