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PREDICTED IMPACT OF POWER COASTDOWN OPERATIONS ON THE WATER CHEMISTRY FOR TWO DOMESTIC BOILING WATER REACTORS

机译:两种国内沸水反应堆功率下降操作对水化学的预期影响

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A theoretical model was adapted to evaluate the impact of power coastdown on the water chemistry of two commercial boiling water reactors (BWRs) in this work. In principle, the power density of a nuclear reactor upon a power level decrease would immediately be lowered, followed by water chemistry variations due to reduced radiolysis of water and extended coolant residence times in the core and near-core regions. It is currently a common practice for commercial BWRs to adopt hydrogen water chemistry (HWC) for corrosion mitigation. The optimal feedwater hydrogen concentration may be different after a power coastdown is implemented in a BWR. A computer code DEMACE was used in the current study to investigate the impact of various power coastdown levels on major radiolytic species concentrations and electrochemical corrosion potential (ECP) behavior of components in the primary coolant circuit of two domestic reactors operating under either normal water chemistry or HWC. Our analyses indicated that under a rated core flow rate the oxidizing species concentrations and the ECP did not vary monotonously with decreases in reactor power level at a fixed feedwater hydrogen concentration. In particular, ECP variations basically followed the patterns of hydrogen peroxide in the select regions and exhibited high values at power levels of 95% and 90% for Chinshan-1 and Kuosheng-1, respectively.
机译:在这项工作中,采用了理论模型来评估功率下降对两个商用沸水反应堆(BWR)的水化学的影响。原则上,功率水平降低后,核反应堆的功率密度将立即降低,随后由于水的辐射分解减少以及冷却剂在堆芯和近堆芯区域的停留时间延长而导致水化学变化。目前,商用BWR的普遍做法是采用氢水化学(HWC)来减轻腐蚀。在BWR中实现功率下降后,最佳给水氢浓度可能会有所不同。当前研究中使用计算机代码DEMACE来研究各种功率下降水平对两个在正常水化学条件下或在常规水化学条件下运行的家用反应堆的主要冷却剂回路中各组分的主要放射性物质浓度和电化学腐蚀势(ECP)行为的影响。 HWC。我们的分析表明,在额定堆芯流速下,在固定给水氢气浓度下,随着反应堆功率水平的降低,氧化物质浓度和ECP不会单调变化。特别是,ECP变化基本上遵循所选区域中过氧化氢的模式,并且对于Chinshan-1和Kuosheng-1分别在95%和90%的功率水平上显示出较高的值。

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