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A Model for Droplet Vaporization for Use in Gasoline and HCCI Engine Applications

机译:汽油和HCCI发动机应用中的液滴汽化模型

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摘要

A model for unsteady droplet vaporization is presented that considers the droplet temperature range from flash-boiling conditions to normal evaporation. The theory of continuous thermodynamics was used to model the properties and compositions of multicom-ponent fuels such as gasoline. In order to model the change of evaporation rate from normal to boiling conditions more realistically, an unsteady internal heat flux model and a new model for the determination of the droplet surface temperature is proposed. An explicit form of the equation to determine the heat flux from the surrounding gas mixture to the droplet-gas interface was obtained from an approximate solution of the quasi-steady energy equation for the surrounding gas mixture, with the inter-diffusion of fuel vapor and the surrounding gas taken into account. The model was applied to calculate evaporation processes of droplets for various ambient temperatures and droplet temperatures.
机译:提出了一种不稳定的液滴蒸发模型,该模型考虑了从闪蒸条件到正常蒸发的液滴温度范围。连续热力学理论被用来模拟多组分燃料(如汽油)的特性和成分。为了更真实地模拟蒸发速率从正常到沸腾条件的变化,提出了一个不稳定的内部热通量模型和一种确定液滴表面温度的新模型。从周围气体混合物的准稳态能量方程的近似解,以及燃料蒸气和气体的相互扩散,可以确定方程式的显式形式,以确定从周围气体混合物到液滴-气体界面的热通量。考虑到周围的气体。该模型用于计算各种环境温度和液滴温度下液滴的蒸发过程。

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