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Investigation on scaling law for reactor natural circulation under motion conditions

机译:运动条件下反应堆自然循环定标规律研究

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摘要

For some Pressurized Water Reactors (PWR) operated on automobiles, boats or deep sea vessels, natural circulation simulation is important for understanding their safety during severe accidents, or system characteristics when natural circulation is adopted instead of the primary pumps to drive coolant in their loops. Based on the scaling laws of natural circulation for stationary reactors, the scaling laws for moving conditions are derived in this paper by analyzing accelerations and their distribution in a moving reactor with rigid motion theory, and introducing these accelerations into the momentum equations representing a one-dimensional natural circulation model. With modified equations, a set of motion simulation criteria was obtained, and equal height simulation and unequal height simulation were studied. A reduced height simulation is helpful for ensuring that three-dimensional phenomenon are reproduced, but time scaling is needed in a motion simulation.
机译:对于某些在汽车,轮船或深海船上运行的压水堆(PWR),自然循环模拟对于了解严重事故期间的安全性或采用自然循环代替主要泵驱动回路中的冷却剂时的系统特性非常重要。 。根据固定反应堆自然循环的比例定律,本文通过采用刚性运动理论分析移动反应堆中的加速度及其分布,并将这些加速度引入代表一阶动量方程的动量方程中,得出了运动条件的比例定律。维自然循环模型。利用修正的方程,获得一组运动模拟准则,并研究了等高模拟和不等高模拟。减小高度的模拟有助于确保再现三维现象,但是在运动模拟中需要时间缩放。

著录项

  • 来源
    《Annals of nuclear energy》 |2010年第5期|691-700|共10页
  • 作者单位

    The Guangdong Nuclear Power Company of China, Chengdu 610041, China;

    The Nuclear Power Institute of China, Chengdu 610041, China;

    The Nuclear Power Institute of China, Chengdu 610041, China;

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