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首页> 外文期刊>Journal of nuclear science and technology >Assessment of TRAC-PF1 Condensation Heat Transfer Model for Analysis of ECC Water Injection Transients
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Assessment of TRAC-PF1 Condensation Heat Transfer Model for Analysis of ECC Water Injection Transients

机译:用于ECC注水瞬态分析的TRAC-PF1冷凝传热模型评估

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摘要

Direct contact condensation of vapor occurs after injection of emergency core cooling (ECC) water during a loss-of-coolant accident (LOCA) in a light water reactor (LWR). Despite that vapor condensation may have large influences on system thermal-hydraulic responses, it is difficult to predict the condensation rate accurately during ECC water injection. This difficulty sometimes results in considerable discrepancy between predicted and measured system overall transients. For instance, analyses of PWR reflood tests with the TRAC-PF1/MOD1 code predicted non-physical large flow oscillations because the code largely overpredicted the condensation rate.In an attempt to resolve this shortcoming of TRAC, a sensitivity study was carried out on the condensation heat transfer Stanton number, that is assumed to be a constant in TRAC, by analyzing the broken-loop hot leg responses to ECC injection in a combined injection test conducted at the Cylindrical Core Test Facility (CCTF). Based on this sensitivity study, it is recommended to use a Stanton number of 0.0035, which is about six times smaller than the value used in the current version of TRAC, to predict LWR system responses during an ECC water injection transient.
机译:在轻水反应堆(LWR)的冷却液失水事故(LOCA)期间注入紧急堆芯冷却(ECC)水后,会发生蒸汽的直接接触冷凝。尽管蒸汽冷凝可能会对系统的热-液压响应产生很大影响,但在ECC注水期间很难准确预测冷凝速率。这种困难有时会导致预测的和测量的系统总体瞬态之间的巨大差异。例如,使用TRAC-PF1 / MOD1代码对PWR驱油测试进行分析可预测非物理大流量振荡,因为该代码大大预测了凝结率。为解决TRAC的这一缺点,试图对TRAC进行敏感性研究。通过在圆柱芯测试设施(CCTF)进行的组合注入测试中分析对ECC注入的断环热支管响应,可以确定冷凝水传热Stanton数在TRAC中是恒定的。基于此敏感性研究,建议使用Stanton数0.0035(比当前版本的TRAC使用的值小六倍)来预测ECC注水瞬态期间的LWR系统响应。

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