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首页> 外文期刊>International Journal of Heat and Mass Transfer >Transient behavior near liquid-gas interface at supercritical pressure
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Transient behavior near liquid-gas interface at supercritical pressure

机译:超临界压力下液-气界面附近的瞬态行为

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Numerical heat and mass transfer analysis of a configuration where a cool liquid hydrocarbon is suddenly introduced to a hotter gas at supercritical pressure shows that a well-defined phase equilibrium can be established before substantial growth of typical hydrodynamic instabilities. The equilibrium values at the interface quickly reach near-steady values. Sufficiently thick diffusion layers form quickly around the liquid-gas interface (e.g., 3-10 mu m for the liquid phase and 10-30 mu m for the gas phase in 10-100 mu s), where density variations become increasingly important with pressure as mixing of species is enhanced. While the hydrocarbon vaporizes and the gas condenses for all analyzed pressures, the net mass flux across the interface reverses as pressure is increased, showing that a clear vaporization-driven problem at low pressures may present condensation at higher pressures. This is achieved while heat still conducts from gas to liquid. Analysis of fundamental thermodynamic laws on a fixed-mass element containing the diffusion layers proves the thermodynamic viability of the obtained results. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在超临界压力下将液态液态碳氢化合物突然引入较热的气体的结构的数值传热和传质分析表明,在典型的流体动力学不稳定性大幅增长之前,可以建立明确定义的相平衡。界面处的平衡值很快达到接近稳定的值。在液-气界面周围会迅速形成足够厚的扩散层(例如,液相在3至10微米,气相在10至100毫秒内为10至30微米),密度随压力的变化变得越来越重要随着物种混合的增强。尽管在所有分析压力下烃都蒸发并且气体冷凝,但随着压力的增加,界面上的净质量通量会反转,这表明在低压下明显的蒸发驱动问题可能会在较高压力下出现冷凝。这是在热量仍然从气体传导到液体的同时实现的。对包含扩散层的固定质量元素的基本热力学定律的分析证明了所得结果的热力学可行性。 (C)2018 Elsevier Ltd.保留所有权利。

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