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A Semi-Mechanistic Model to Predict Spatial Variation of Critical Heat Flux on an Inclined Surface Facing Downward

机译:预测下倾表面上临界热通量空间变化的半力学模型

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On the basis of our recent experimental data and previous works by other investigators, the CHF model has been developed. It is the first model, which can predict the spatial variation of CHF along the flat surface facing downward. The physical framework established by Cheung and Haddad (1997) has been kept in the present modeling. The prediction showed that the most upstream region over the inclined heater surface is mostly susceptible to occurrence of boiling crisis. The present work is expected to contribute to the accurate estimation on the cooling limit of the ex-vessel core catcher cooling channel.
机译:根据我们最近的实验数据和其他研究者的先前工作,开发了CHF模型。这是第一个可以预测CHF沿面向下的平坦表面的空间变化的模型。 Cheung和Haddad(1997)建立的物理框架一直保留在当前模型中。预测表明,倾斜加热器表面上方的最上游区域最容易发生沸腾危机。预期当前的工作将有助于对前容器核心捕集器冷却通道的冷却极限进行准确估计。

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