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A physical model of dryout and prediction of critical heat flux in flow boiling of a saturated liquid in a channel

机译:饱和液体流沸腾临界热通量的干沟和预测的物理模型

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A physical model of dryout in flow boiling in channels is presented The model is based on the assumption that the dryout occurs when a liquid film under a vapor conglomerate evaporates completely within a residence time for the conglomerate on the heat transfer surface. Its using, in particularly, for flow boiling of saturated liquids in channels at high pressures with a great density of nucleation sites, low wall superheat, and low rates of vapor bubble growth, yielded correllations for the critical heat flux. Predictions by the proposed correlations are in good agreement with experimental data on the critical heat flux for water and nitrogen for relative pressures of P/Pcr>0.45, mass flow rate rw of 100 to 8000 kg/(m{sup}2s), and flow quality x > 0.
机译:介绍了在通道中流动沸腾的干沟的物理模型,该模型基于假设当蒸汽集光凝聚下的液体膜完全蒸发在传热表面上的集合中的停留时间内时发生干扰。 特别地,其使用,特别是在具有较大密度的成核位置,低壁过热和蒸气气泡生长的低速率下的高压下的饱和液体的流动沸腾,得到临界热通量的刻图。 所提出的相关性的预测与对P / PCR> 0.45的相对压力的水和氮的临界热通量的实验数据吻合良好,质量流量RW为100至8000kg /(m {sup} 2s), 流量质量x> 0。

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