论文标题

关于在升高温度和压力下液滴汽化的理论分析

Theoretical analysis on droplet vaporization at elevated temperatures and pressures

论文作者

Yu, Dehai, Chen, Zheng

论文摘要

液滴汽化对液体燃料的燃烧产生了很大的影响,可能会极大地影响发动机性能。液滴汽化行为的物理理解和理论解释是决定性燃烧模型的决定性的。在这项工作中,我们提出了一种完全瞬态的公式,用于在温度和压力的范围内进行液滴汽化。控制方程是通过合适的坐标转换来分析求解的。液滴的表面温度和燃料蒸气的质量分数取决于液态气界面处的匹配条件。因此,根据不稳定因子和液滴汽化寿命,提出了一个理论模型,表征了液滴大小在汽化过程中的时间变化。理论模型成功地揭示了液滴汽化特征的常规识别,其预测的液滴尺寸历史与文献中报道的实验结果非常吻合。此外,基于目前的理论分析,在液滴蒸发时压力对液滴汽化的双重效应进行了实验性观察到的双重影响,并有助于明确的公式,以表明其温度依赖性。

Droplet vaporization has a great impact on combustion of liquid fuels and might greatly affects the engine performance. Physical understanding and theoretical interpretation of the droplet vaporization behavior are decisive to constitute appropriate models for spray combustion. In this work, we proposed a fully transient formulation for the droplet vaporization at wide ranges of temperature and pressure. The governing equations are solved analytically by means of suitable coordinate transformations. The droplet surface temperature and mass fraction of fuel vapor are determined by the matching conditions at the liquid-gas interface. Accordingly, a theoretical model, characterizing the time change of droplet size during its vaporization, is proposed in terms of the unsteadiness factor and droplet vaporization lifetime. The theoretical model successfully reveals the conventional recognition of droplet vaporization characteristics, and its predicted droplet size history agrees well with experimental results reported in the literature. Besides, based on the present theoretical analysis, the experimentally observed dual effect of pressure upon droplet vaporization is analyzed with help of an explicit formula for enthalpy of vaporization indicating its temperature-dependence.

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