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Experimental investigation of the effect of natural convection on the evaporation characteristics of small fuel droplets at moderately elevated temperature and pressure

机译:自然对流对温度和压力适度升高下小油滴蒸发特性影响的实验研究

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The role of natural convection in droplet evaporation is experimentally investigated for a range of micro-sized alkane fuel droplets at moderately elevated pressure and temperature. This paper assesses the impact of buoyant mass transfer from two perspectives; the resulting variation in steady-state evaporation rate, and the potential relation to non-linear temporal d2 profiles. The steady-state evaporation rate is found to increase linearly with initial droplet diameter at all tested conditions, where the relative improvement in evaporation rate depends upon the fuel type, pressure, and temperature. In addition to modifying the steady-state evaporation rate, the various environmental conditions also impact the occurrence and timing of d~2 deviation, which manifests as a strong reduction in evaporation rate near the end of a droplet's lifetime. Pressure tends to encourage the appearance of d~2 deviation for both heptane and decane by increasing the proportion of evaporation for which natural convection is responsible. The effect of temperature depends upon the droplet volatility, and the results differ between the two test fuels. Overall, the relative importance of natural convection, as compared to pure molecular diffusion, appears to govern both the expected improvement in, and potential deviation from, steady-state evaporation. Proposed Grashof correlations justify the above hypothesis.
机译:实验研究了自然对流在液滴蒸发中在适度升高的压力和温度下对一系列微型烷烃燃料液滴的作用。本文从两个角度评估了浮力传质的影响。稳态蒸发速率的最终变化以及与非线性时间d2分布的潜在关系。发现在所有测试条件下,稳态蒸发速率均随初始液滴直径线性增加,其中蒸发速率的相对提高取决于燃料类型,压力和温度。除了改变稳态蒸发速率外,各种环境条件还影响d〜2偏差的发生和时间,这表现为液滴寿命即将结束时蒸发速率的强烈降低。压力倾向于通过增加自然对流所致的蒸发比例来促使庚烷和癸烷出现d〜2偏差。温度的影响取决于油滴的挥发性,两种测试燃料的结果不同。总体而言,与纯分子扩散相比,自然对流的相对重要性似乎决定着稳态蒸发的预期改善和潜在偏离。拟议的格拉斯霍夫相关性证明了以上假设。

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