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首页> 外文期刊>Journal of nuclear science and technology >Reactivity Balance for Reactor Diagnosis, (I)Accuracy of Reactivity Balance Technique in Hitachi Training Reactor
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Reactivity Balance for Reactor Diagnosis, (I)Accuracy of Reactivity Balance Technique in Hitachi Training Reactor

机译:用于反应堆诊断的反应性平衡,(I)日立训练反应堆中反应性平衡技术的准确性

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The reactivity balance method commonly used for measuring inserted anomalous reactivities was applied to the HTR (Hitachi Training Reactor).The reactivities taken into consideration included the kinetic reactivity, as well as those associated with the control rod, power feedback, coolant inlet temperature and Xe buildup.The reactivity balance data were obtained to cover start-up operation, as well as at various power levels including full rated power. These results obtained show that the errors associated with power feedback and with Xe buildup reactivity are both below approximately 1¢, these errors being due to the one point approximation and to inaccuracies in the constants used in the equations.The fluctuations of residual reactivity are attributed to power fluctuations, to uncertainties in the measurement of the coolant inlet temperature and in the determination of control rod position. The scattering about the zero reactivity line caused by these fluctuations was evaluated to be within 0.8¢.Anomalous reactivity was inserted artificially by means of shim rod movement, and was detected. The discrepancy between the residual reactivity calculated by this method and the actual worth of the inserted anomalous reactivity, which was a measure of the sensitivity of this technique, was within 1¢.
机译:HTR(日立训练反应堆)采用了通常用于测量插入的异常反应性的反应性平衡方法,其中考虑的反应性包括动力学反应性以及与控制杆,功率反馈,冷却液入口温度和Xe有关的反应性获得反应性平衡数据以涵盖启动操作以及各种功率水平(包括满额定功率)的情况。这些结果表明,与功率反馈和Xe积聚反应性相关的误差均低于1 ¢,这些误差是由于单点近似以及方程中使用的常数的不准确性所致。功率波动,冷却液入口温度测量和控制杆位置确定中的不确定性。由这些波动引起的零反应性线周围的散射估计在0.8 ¢以内。通过垫片杆的运动人工插入异常反应性,并进行检测。用这种方法计算的残留反应性与所插入的异常反应的实际价值之间的差异(该技术的灵敏度指标)在1 within以内。

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