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Liquid film dryout in a boiling channel under flow oscillation conditions

机译:在流动振荡条件下沸腾通道中的液膜变干

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A simple theory was developed to elucidate the influence of sinusoidal oscillation of the inlet flow rate on the occurrence of liquid film dryout in an annular two-phase flow regime in a boiling channel. The theory assumes that the critical heat flux (CHF) under an oscillatory condition can be calculated from values in steady states provided that the effect of axial mixing of the liquid film is appropriately considered. The trends of CHFs calculated using a one-dimensional three-fluid model and those experimentally measured under atmospheric pressure were in reasonable agreement with the proposed theory. However, the CHF values measured under oscillatory conditions were usually higher in the experiment than in the numerical simulation, which indicated that axial liquid transport induced by disturbance waves might enhance axial mixing of the liquid film.
机译:发展了一种简单的理论来阐明入口流速的正弦振荡对沸腾通道中环形两相流态中液膜变干的影响。该理论假设,只要适当考虑液膜轴向混合的影响,就可以根据稳态下的值计算出在振荡条件下的临界热通量(CHF)。使用一维三流体模型计算的CHF趋势和在大气压下实验测量的CHF趋势与所提出的理论合理吻合。然而,在振荡条件下测得的CHF值通常比数值模拟中的要高,这表明由扰动波引起的轴向液体传输可能会增强液膜的轴向混合。

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