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首页> 外文期刊>International Scholarly Research Notices >Thermodynamic Analysis of Evaporation of Levitated Binary and Ternary Liquid Fuel Droplets under Normal Gravity
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Thermodynamic Analysis of Evaporation of Levitated Binary and Ternary Liquid Fuel Droplets under Normal Gravity

机译:重力作用下悬浮的二元和三元液体燃料液滴蒸发的热力学分析

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The present study presents a thermodynamic model for predicting the vaporization characteristics of binary and ternary hydrocarbon fuel droplets under atmospheric pressure and normal gravity conditions. The model employs activity coefficients based on UNIFAC group contribution method and evaluates the vapor-liquid equilibrium of binary and ternary droplets. The gas-phase properties have been evaluated as a function of temperature and mixture molecular weight. The model has been validated against the experimental data available in literature. The validated model is used to predict the vaporization characteristics of binary and ternary fuel droplets at atmospheric pressure under normal gravity. Results show multiple slopes in the droplet surface regression indicating preferential vaporization of fuel components based on their boiling point and volatility. The average evaporation rate is dictated by the ambient temperature and also by composition of the mixture.
机译:本研究提出了一种热力学模型,用于预测大气压力和正常重力条件下二元和三元烃类燃料液滴的汽化特性。该模型使用基于UNIFAC基团贡献法的活度系数,并评估二元和三元液滴的气液平衡。气相性质已作为温度和混合物分子量的函数进行了评估。该模型已针对文献中的实验数据进行了验证。经过验证的模型可用于预测大气压下在正常重力下二元和三元燃料滴的汽化特性。结果显示,液滴表面回归曲线有多个斜率,表明基于其沸点和挥发性的燃料组分优先汽化。平均蒸发速率由环境温度以及混合物的组成决定。

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