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FEASIBILITY OF INCREASING THE ADVANCED TEST REACTOR'S MAXIMUM LOBE POWER BY ADDING AN ACCUMULATOR INJECTION SYSTEM

机译:通过添加蓄能器喷射系统来提高高级测试反应器的最大波瓣功率的可行性

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摘要

The Advanced Test Reactor (ATR) is a 250-MW irradiation facility used to test reactor fuels and other materials, and also to produce radioisotopes. The ATR core is divided into five regions, or lobes, that normally operate at different power levels. To support future irradiation programs, it is desired that the maximum lobe power be increased 10% (from 60 to 66 MW). A modification to ATR's emergency core cooling system is proposed to ensure that adequate safety margins would be maintained during a loss-of-coolant accident (LOCA). The modification being considered is the addition of an accumulator injection system. The RELAP5 thermal-hydraulic code and the SINDA thermal analyzer were used to simulate the two most challenging design-basis LOCAs identified in the ATR Safety Analysis Report. Calculations were performed both with and without accumulator injection. The results indicate that a 10% increase in maximum lobe power is achievable. Minimum thermal margins increased more than 40% when accumulator injection was simulated.
机译:高级测试反应堆(ATR)是一个250兆瓦的辐照设施,用于测试反应堆燃料和其他材料以及生产放射性同位素。 ATR核心分为五个区域或波瓣,它们通常以不同的功率电平工作。为了支持将来的辐照程序,希望将最大波瓣功率增加10%(从60兆瓦增加到66兆瓦)。建议对ATR的应急堆芯冷却系统进行修改,以确保在冷却液损失事故(LOCA)期间保持足够的安全裕度。考虑的修改是增加了蓄能器喷射系统。 RELAP5热工液压代码和SINDA热分析仪用于模拟ATR安全分析报告中确定的两个最具挑战性的设计基础LOCA。在有或没有蓄能器注入的情况下都进行了计算。结果表明,最大波瓣功率可增加10%。模拟蓄能器喷射时,最小热裕度增加了40%以上。

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