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Thermal-hydraulic simulation and evaluation of a natural circulation thermosyphon loop for a reactor cavity cooling system of a high-temperature reactor

机译:高温反应堆腔冷却系统自然循环热虹吸回路的热工仿真与评估

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The investigation into a full-scale 27?m high, by 6?m wide, thermosyphon loop. The simulation model is based on a one-dimensional axially-symmetrical control volume approach, where the loop is divided into a series of discreet control volumes. The three conservation equations, namely, mass, momentum and energy, were applied to these control volumes and solved with an explicit numerical method. The flow is assumed to be quasi-static, implying that the mass-flow rate changes over time. However, at any instant in time the mass-flow rate is constant around the loop. The boussinesq approximation was invoked, and a reasonable correlation between the experimental and theoretical results was obtained. Experimental results are presented and the flow regimes of the working fluid inside the loop identified. The results indicate that a series of such thermosyphon loops can be used as a cavity cooling system and that the one-dimensional theoretical model can predict the internal temperature and mass-flow rate of the thermosyphon loop.
机译:对一个全尺寸高27?m,宽6?m的热虹吸回路进行了研究。该仿真模型基于一维轴向对称控制量方法,该方法将环路分为一系列离散的控制量。将三个守恒方程(质量,动量和能量)应用于这些控制量,并通过显式数值方法求解。假定流量是准静态的,这意味着质量流量会随时间变化。但是,在任何时刻,质量流量在环路周围都是恒定的。调用了boussinesq逼近,并获得了实验结果与理论结果之间的合理相关性。给出了实验结果并确定了回路内工作流体的流动方式。结果表明,一系列这样的热虹吸回路可以用作腔冷却系统,并且一维理论模型可以预测热虹吸回路的内部温度和质量流量。

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