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A Critique on the Research Activities and Potential Benefits of Dual-Fuel Diesel Engines Run on Biogas and Oxygenated Liquid Fuels

机译:对沼气和含氧液体燃料进行双燃料柴油机的研究活动和潜在益处的批评

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The dual fuel concept of diesel engines is gaining popularity because of their ability to use alternative renewable gaseous fuels (natural gas, biogas, producer gas) and liquid fuels (biodiesel, alcohol, and others) simultaneously. The dual fuel mode (DFM) not only reduces the consumption of diesel or substitutes the diesel fuel, but there is an advantage of operating the engine in pure diesel mode (PDM) in case of shortage of gaseous primary fuel. The uses of renewable fuels in such engines have the positive impact on green ecosystem in terms of reduction in NOx and smoke emissions; however, there is the engine derating as performance penalty in comparison to engines operating under PDM. The most influential parameters in DFM engines are the type and flow rate of inducted gaseous fuel, fuel-air equivalence ratio (Phi(global)), compression ratio (CR), and injection timing (IT). During the last few decades, the researchers have studied the effect of various parameters to improve the overall performance characteristics (performance, combustion, and emission) of DFM engines. This paper makes an in-depth analysis to unveil the physical characteristics of the crucial parameters of DFM engines with specific reference to the use of biogas with ternary blends (TB) of diesel, biodiesel, and ethanol. The paper addresses the issues on how the gaseous fuel flow rate, preheating of the intake charge, compression ratio, injection timing, and the type of oxygenated fuels dominate the overall performance characteristics.
机译:柴油发动机的双燃料概念是越来越受欢迎,因为它们能够同时使用替代可再生气体燃料(天然气,沼气,生产者气体)和液体燃料(生物柴油,酒精和其他)。双燃料模式(DFM)不仅减少了柴油的消耗或替换柴油燃料,但在气体料初级燃料短缺情况下,存在在纯柴油模式(PDM)中操作发动机的优点。在这种发动机中的可再生燃料的用途对NOx和烟雾排放的减少方面对绿色生态系统产生了积极影响;然而,与在PDM下运行的发动机相比,发动机损失为性能惩罚。 DFM发动机中最有影响力的参数是电感的气体燃料,燃料空气等效比(PHI(全球)),压缩比(CR)和喷射正时(IT)的类型和流量。在过去的几十年中,研究人员研究了各种参数的影响,提高了DFM发动机的整体性能特征(性能,燃烧和发射)。本文进行了深入的分析,以了解DFM发动机的关键参数的物理特性,具体参考柴油,生物柴油和乙醇的三元共混物(TB)的使用。本文解决了对气态燃料流量,进气充电,压缩比,注射正时的预热和含氧燃料的类型的问题的问题解决了整体性能特征。

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