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Transient temperature gradient in a single-component vaporizing droplet

机译:单组分汽化液滴中的瞬态温度梯度

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The purpose of this work is to analyze the importance of considering internal temperature non-uniformity in modeling droplet evaporation, and to demonstrate performance of simplified methods in which the temperature gradient is approximately taken into account. Based on three characteristic time scales, two dimensionless criteria are identified which determine magnitude of the internal temperature gradient and its effect on the evaporation dynamics. Numerical values of these criteria in a wide range of ambient temperatures show that the effect of the internal temperature gradient is more pronounced in a more volatile liquid at higher ambient temperatures. Although droplet life time predictions are not sensitive to the internal temperature gradient, its effect might be considerable at the initial stages of droplet evaporation, and this substantiates the need in robust and computationally inexpensive methods to take it into account. Three simple and yet accurate approaches (the power law approximation, the higher order polynomial approximation and the integral heat balance method) have been favorably tested and recommended for use in CFD spray modeling.
机译:这项工作的目的是分析在模拟液滴蒸发中考虑内部温度不均匀性的重要性,并演示简化方法的性能,在这种方法中,温度梯度被近似考虑在内。基于三个特征时间标度,确定了两个无量纲标准,这些标准确定内部温度梯度的大小及其对蒸发动力学的影响。这些标准在较宽的环境温度范围内的数值表明,在较高的环境温度下,挥发性较高的液体中内部温度梯度的影响更为明显。尽管液滴的寿命预测对内部温度梯度不敏感,但在液滴蒸发的初始阶段其影响可能会很大,这证实了在健壮且计算便宜的方法中将其考虑在内的需求。三种简单而准确的方法(幂律近似,高阶多项式近似和积分热平衡法)已得到了很好的测试,并推荐用于CFD喷雾建模。

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