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An experimental study of CHF and power transients in flow boiling at low-pressure low-flow conditions

机译:低压低流量条件下沸腾过程中CHF和功率瞬变的实验研究

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Flow boiling experiments were conducted in an annular channel at very low flow rates and atmospheric pressure varying the inlet subcooling from 20 to 40. critical heat flux occurred during the oscillatory flow pattern transition from slug to churn regime. Comparison of low-pressure and low-flow critical heat flux correlations with the present data has shown that these correlations are not applicable for prediction of critical heat flux under oscillatory flow pattern transition from slug to churn. Power transient experiments were also performed at low-pressure and low-flow conditions. Flow regimes and the sequence of events leading to critical heat flux were visually observed using the high-speed camera.
机译:沸腾实验是在环形通道中以非常低的流量和大气压力进行的,入口过冷度从20变为40。临界热通量在振荡流型从团状过渡到搅动状态期间发生。低压和低流量临界热通量相关性与当前数据的比较表明,这些相关性不适用于在从塞子到搅动的振荡流型转变下的临界热通量的预测。功率瞬态实验也在低压和低流量条件下进行。使用高速摄像机以肉眼观察流动状态和导致临界热通量的事件顺序。

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