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Transient Reactor Test (TREAT) Facility Restart Heat Balance Calibration and Rod Worth Measurements

机译:瞬态反应堆测试(TREAT)设施重新启动热平衡校准和杆身价值测量

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The Transient Reactor Test Facility has been restarted after more than 20 years in a safe standby condition. The plan to bring the reactor back into operation included a typical core characterization that was historically performed every time the core was reconfigured for a new experiment campaign. The core characterization included determining initial critical position of the control rods, a heat balance run for calibration of the nuclear instruments to enable the indication of reactor power, control rod worth measurements, and a series of three temperature-limited transients increasing in the amount of reactivity inserted as a step for the interpolation of set points for the reactor trip system and reactivity insertion limits. The heat balance and control rod worth measurements are discussed in this paper. After critical control rod position was determined, a heat balance operation was used to position the nuclear instruments for correct power indication. This was followed by control rod differential worth measurements to generate the control rod worth curves used by the automatic reactor control system for control of the reactor during transient operations. These restart evolutions are summarized here, and the results are compared to the historic measurements.
机译:经过20多年的安全待机状态后,瞬态反应堆测试设施已重新启动。使反应堆重新投入运行的计划包括一个典型的堆芯表征,该表征历来是每次为新的实验活动而对堆芯进行重新配置时都会执行的。核心特征包括确定控制棒的初始临界位置,进行热平衡以校准核仪器,以指示反应堆功率,控制棒价值的测量以及一系列三个受温度限制的瞬变,这些瞬变的数量增加。插入反应性作为步骤,以插值反应堆跳闸系统的设定值和反应性插入极限。本文讨论了热平衡和控制棒的测量方法。确定关键控制棒的位置后,使用热平衡操作来定位核仪器,以正确指示功率。随后是控制棒价值差测量,以生成控制棒价值曲线,该曲线被自动反应器控制系统用于在过渡运行期间控制反应堆。在这里总结了这些重启过程,并将结果与​​历史测量结果进行了比较。

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