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Infrared thermography and numerical study of vaporization characteristics of pure and blended bio-fuel droplets

机译:纯和混合生物燃料液滴的红外热成像和蒸发特性的数值研究

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The combustion dynamics and stability are dependent on the quality of mixing and vaporization of the liquid fuel in the pre-mixer. The vaporization characteristics of different blends of bio-fuel droplets injected into the air stream in the pre-mixer have been modeled. Two major alternate fuels analyzed are ethanol and Rapeseed Methyl Esters (RME). Ethanol is being used as a substitute of gasoline, while RME has been considered as an alternative for diesel. In the current work, the vaporization characteristics of a single droplet in a simple pre-mixer has been studied for pure ethanol and RME in a hot air jet at a temperature of 800 K. In addition, the behavior of the fuels when they are mixed with conventional fuels like gasoline and diesel is also studied. Temperature gradients and vaporization efficiency for different blends of bio-conventional fuel mixture are compared with one another. Smaller droplets vaporize faster than larger droplets ensuring homogenous mixture. The model was validated using an experiment involving convection heating of acoustically levitated fuel droplets and IR-thermography to visualize and quantify the vaporization characteristics of different bio-fuel blends downstream of the pre-mixer.
机译:燃烧动力学和稳定性取决于预混合器中液体燃料的混合和汽化质量。已对在预混合器中注入空气流中的生物燃料小滴的不同混合物的汽化特性进行了建模。分析的两种主要替代燃料是乙醇和菜籽油甲基酯(RME)。乙醇被用作汽油的替代品,而RME被认为是柴油的替代品。在当前的工作中,已经研究了简单的预混合器中单个液滴的汽化特性,该热混合器是在800 K的热气流中对纯乙醇和RME进行的。此外,燃料在混合时的行为还研究了使用汽油和柴油等常规燃料的情况。将生物常规燃料混合物的不同混合物的温度梯度和汽化效率相互比较。较小的液滴比较大的液滴蒸发更快,从而确保了均匀的混合物。该模型使用涉及对空悬浮燃料滴的对流加热和红外热成像的实验进行了验证,以可视化和量化预混合器下游不同生物燃料混合物的汽化特性。

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