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The influence of Fischer–Tropsch-biodiesel–diesel blends on energy and exergy parameters in a six-cylinder turbocharged diesel engine

机译:Fischer-Tropsch-Biodiesel-柴油机对六缸涡轮增压柴油发动机能量和出电参数的影响

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This investigation explores the influence of oxygenated fuels on different energy and exergy parameters first and the second law of thermodynamics. The parameters were estimated based on the experimental data using thermodynamic Equations. Due to similar fuel properties to diesel, a Fischer–Tropsch fuel (FT100) was used as a base fuel (reference fuel) in the current investigation. Three biodiesel blends were prepared with Fischer–Tropsch fuel. Non-edible Jatropha biodiesel ( Jatropha curcas ) was selected to avoid food versus fuel conflict. All blends were prepared on a volumetric basis. The first blend was prepared using 25% of biodiesel and 75% of Fischer–Tropsch fuel and termed as B25. The second blend was made with 50% biodiesel and 50% Fischer–Tropsch fuel and designated as B50. The third and the final blend was formulated with 75% biodiesel and 25% Fischer–Tropsch fuel and abbreviated as B75. The three blends were also termed as oxygenated blends as they contain 3 wt%, 5.9 wt% and 8.7 wt%, respectively oxygen content in their molecule. Neat biodiesel (B100) was not targeted in this investigation. A new parameter “oxygen ratio” was used to make a correlation between different energy and exergy parameters with oxygen ratio. Instead of showing different energy and exergy parameters against equivalence ratio or excess air ratio, for better understanding, it is worth showing those parameters with oxygen ratio as all blends are inherently oxygenated. The results show almost insignificant variations in different parameters with the three oxygenated blends when compared to those of the FT100.
机译:本调查探讨了含氧燃料对不同能量和排出参数的影响和热力学的第二律。使用热力学方程基于实验数据估计参数。由于柴油的燃料特性相似,在电流研究中使用Fischer-Tropsch燃料(FT100)作为基础燃料(参考燃料)。用Fischer-Tropsch燃料制备三种生物柴油混合物。选择不可食用的麻醉药生物柴油(Joatropha Curcas)以避免食物与燃料冲突。所有混合物都以体积的基础制备。使用25%的生物柴油和75%的Fischer-Tropsch燃料制备第一混合物并称为B25。第二种混合物用50%生物柴油和50%Fischer-Tropsch燃料制成并指定为B50。第三种和最终共混物用75%的生物柴油和25%费 - 托燃料配制,并缩写为B75。三种共混物也称为含氧共混物,因为它们含有3wt%,5.9wt%和8.7wt%,分子分别氧含量。整洁的生物柴油(B100)没有针对这一调查。新参数“氧气比”用于在不同能量和氧气比率之间进行相关性。为了更好地理解,不显示对等当量比或过量的空气比率,而不是显示不同的能量和漏胀参数,而是为了更好的理解,值得将这些参数显示出所有混合物本质上的氧化。结果表明,与FT100相比,三种含氧共混物的不同参数几乎微不足道的变化。

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