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Performance and scaling analysis for a two-phase natural circulation loop

机译:两相自然循环回路的性能和结垢分析

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摘要

From an analytical solution for the performance of a typical natural circulation loop, which is represented by a normalized flow rate as a function of heat input, density ratio, and pressure loss coefficient, an optimal geometric configuration for a two-phase natural circulation loop under the constraints of a fixed fluid volume and an installation volume, is predicted. It is shown that the optimal configuration does not vary much with the size of the natural circulation loop. The analytical solution clearly predicted the gravity dominated regime and the friction dominated regime depending on the heat input. Also, a scaling criterion in terms of the ratio of the length scale and the ratio of heat input is proposed, which can be utilized for the design of a scaled-down experimental facility.
机译:从典型的自然循环回路性能的解析解决方案(以归一化流量随热量输入,密度比和压力损失系数的函数表示)得出,两相自然循环回路的最佳几何构型在可以预测固定流体量和安装量的限制。结果表明,最佳配置不会随自然循环回路的大小而变化很大。该解析解清楚地预测了取决于热量输入的重力为主状态和摩擦为主状态。此外,提出了一种关于长度比例与热输入比例的比例标准,该比例标准可用于按比例缩小实验设备的设计。

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