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A HYDROCARBON DROPLET EVAPORATING IN TURBULENT ENVIRONMENT AT ELEVATED AMBIENT PRESSURE AND TEMPERATURE

机译:在升高的环境压力和温度下湍流环境中的油气滴蒸发

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摘要

This study presents new experimental results on the vaporization process of hydrocarbon droplet in a turbulent environment at elevated ambient pressure and temperature conditions. n-Heptane and n-decane, which provide a wide range of hydrocarbons properties, were tested. The initial droplet diameter was on the order of I mm, and its surrounding ambient consisted of varying turbulence intensity up to 3.10 m/s, pressure up to 16 bar, and temperature up to 150℃. The results revealed that the hydrocarbon droplet followed the d~2-law throughout its entire lifetime under all ambient conditions explored here. Increasing the ambient pressure increases the droplet vaporization lifetime, whereas increasing the ambient temperature reduces the droplet lifetime. More importantly, turbulence becomes more effective as ambient pressure increases, whereas it diminishes with increasing the ambient temperature. The experimental data were used to develop a more comprehensive hydrocarbons droplet mass transfer correlation.
机译:这项研究提出了在湍流环境中在升高的环境压力和温度条件下烃滴蒸发过程的新实验结果。测试了可提供多种烃类性质的正庚烷和正癸烷。初始液滴直径约为1毫米,其周围环境由高达3.10 m / s的湍流强度,高达16 bar的压力和高达150℃的温度组成。结果表明,在这里探索的所有环境条件下,烃滴在整个寿命中都遵循d〜2律。增加环境压力会增加液滴的蒸发寿命,而增加环境温度会降低液滴的寿命。更重要的是,湍流随着环境压力的增加而变得更加有效,而随着环境温度的升高而减小。实验数据用于建立更全面的烃滴传质相关性。

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