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首页> 外文期刊>International Journal of Heat and Mass Transfer >Transient evaporation of moving water droplets in steam-hydrogen-air environment
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Transient evaporation of moving water droplets in steam-hydrogen-air environment

机译:蒸汽-氢气-空气环境中运动水滴的瞬时蒸发

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摘要

During a severe loss of coolant accident in a nuclear reactor, steam and hydrogen are produced by the oxidation of reactor core and get distributed in the containment. A water spray system is employed to cool the mixture as well as to enhance the mixing of the gases to avoid hydrogen accumulation. This paper presents two-phase numerical simulations of transient vaporization of a moving spherical water droplet. The numerical model considers the variation of thermo-physical properties in both liquid- and vapor-phases, as functions of temperature and species concentrations. Multi-component diffusion and surface tension effects are also considered. The model has been validated using experimental results available in literature for hydrocarbon fuel droplet evaporation. Validated model is used to study the evaporation characteristics of moving water droplets under conditions typically observed in nuclear reactor during a loss of coolant accident. The effects of ambient temperature and hydrogen concentration on the vaporization characteristics are studied thoroughly.
机译:在核反应堆中大量冷却剂损失事故中,反应堆堆芯的氧化会产生蒸汽和氢气,并散布在安全壳内。使用喷水系统来冷却混合物以及增强气体的混合以避免氢的积累。本文提出了运动的球形水滴瞬态汽化的两相数值模拟。数值模型考虑了液相和气相中热物理性质的变化,它们是温度和物质浓度的函数。还考虑了多组分扩散和表面张力效应。该模型已使用文献中可用于烃类燃料液滴蒸发的实验结果进行了验证。经过验证的模型用于研究在冷却剂流失事故期间在核反应堆中通常观察到的条件下运动水滴的蒸发特性。深入研究了环境温度和氢浓度对汽化特性的影响。

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