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Droplet Evaporation In A Turbulent Environment At Elevated Pressure And Temperature Conditions

机译:高压和高温条件下在湍流环境中的液滴蒸发

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A three-dimensional numerical model is developed to assess the effect of freestream turbulence on the vaporization of n-heptane droplet, which is exposed to a freestream of nitrogen at elevated pressure and subcritical temperature conditions. The freestream pressure, temperature and turbulence intensity are varied in the range of 0.5-10 MPa, 324-502 K, and 0%-60%, respectively. Variable thermophysical properties, the unsteadiness behavior of the gas and liquid phases, as well as heat transfer by radiation are all considered. In addition, non-ideality behavior of the gas phase, solubility of the gas into the droplet and pressure dependence of the gas-phase thermophysical properties are also accounted for. The turbulence terms in the conservation equations of the gas-phase are modeled by using the shear-stress transport (SST) model. The results show that, for the temperature range (T_∞ < T_c) explored in the present study, the droplet lifetime increases, and thereby the vaporization rate decreases, as pressure rises. However, the effect of pressure gradually diminishes as the ambient temperature increases and vanishes when T_∞ approaches the critical temperature of n-heptane, T_c. Moreover, the effect of freestream turbulence intensity, which is found to enhance droplet heat and mass transfer, weakens as pressure increases. Finally, droplet turbulent heat and mass transfer correlations are proposed which account for all the aforementioned parameters.
机译:建立了一个三维数值模型,以评估自由流湍流对正庚烷液滴蒸发的影响,正庚烷液滴在高压和亚临界温度条件下暴露于氮气的自由流中。自由流压力,温度和湍流强度分别在0.5-10 MPa,324-502 K和0%-60%的范围内变化。各种可变的热物理性质,气相和液相的不稳定行为以及通过辐射的热传递都被考虑了。另外,还考虑了气相的非理想行为,气体在液滴中的溶解度以及气相热物理性质的压力依赖性。气相守恒方程中的湍流项通过使用剪切应力传输(SST)模型进行建模。结果表明,在本研究中探索的温度范围内(T_∞

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