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Effect of engine parameters and type of gaseous fuel on the performance of dual-fuel gas diesel engines-A critical review

机译:发动机参数和气体燃料类型对双燃料汽油柴油机性能的影响-综述

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Petroleum resources are finite and, therefore, search for their alternative non-petroleum fuels for internal combustion engines is continuing all over the world. Moreover gases emitted by petroleum fuel driven vehicles have an adverse effect on the environment and human health. There is universal acceptance of the need to reduce such emissions. Towards this, scientists have proposed various solutions for diesel engines, one of which is the use of gaseous fuels as a supplement for liquid diesel fuel. These engines, which use conventional diesel fuel and gaseous fuel, are referred to as 'dual-fuel engines'. Natural gas and bio-derived gas appear more attractive alternative fuels for dual-fuel engines in view of their friendly environmental nature. In the gas-fumigated dual-fuel engine, the primary fuel is mixed outside the cylinder before it is inducted into the cylinder. A pilot quantity of liquid fuel is injected towards the end of the compression stroke to initiate combustion. When considering a gaseous fuel for use in existing diesel engines, a number of issues which include, the effects of engine operating and design parameters, and type of gaseous fuel, on the performance of the dual-fuel engines, are important. This paper reviews the research on above issues carried out by various scientists in different diesel engines. This paper touches upon performance, combustion and emission characteristics of dual-fuel engines which use natural gas. biogas, producer gas, methane, liquefied petroleum gas, propane, etc. as gaseous fuel. It reveals that 'dual-fuel concept' is a promising technique for controlling both NO_x and soot emissions even on existing diesel engine. But, HC, CO emissions and 'bsfc' are higher for part load gas diesel engine operations. Thermal efficiency of dual-fuel engines improve either with increased engine speed, or with advanced injection timings, or with increased amount of pilot fuel. The ignition characteristics of the gaseous fuels need more research for a long-term use in a dual-fuel engine. It is found that, the selection of engine operating and design parameters play a vital role in minimizing the performance divergences between an existing diesel engine and a 'gas diesel engine'.
机译:石油资源是有限的,因此,在全世界范围内寻找其替代的非石油燃料用于内燃机的工作仍在继续。而且,由石油燃料驱动的车辆排放的气体对环境和人类健康具有不利影响。人们普遍接受减少这种排放的需要。为此,科学家提出了各种柴油机解决方案,其中之一是使用气态燃料作为液态柴油的补充。这些使用常规柴油燃料和气态燃料的发动机被称为“双燃料发动机”。鉴于其友好的环境性质,天然气和生物衍生气体似乎是双燃料发动机更有吸引力的替代燃料。在燃气熏蒸双燃料发动机中,一次燃料在被引入汽缸之前先在汽缸外混合。在压缩冲程即将结束时喷射一定数量的液体燃料,以启动燃烧。当考虑将气体燃料用于现有的柴油发动机中时,许多问题包括对双燃料发动机的性能的发动机操作和设计参数以及气体燃料的类型的影响是重要的。本文回顾了不同科学家在不同柴油机上对上述问题的研究。本文探讨了使用天然气的双燃料发动机的性能,燃烧和排放特性。沼气,煤气,甲烷,液化石油气,丙烷等作为气态燃料。它揭示了“双重燃料概念”是一种即使在现有柴油发动机上也能控制NO_x和烟尘排放的有前途的技术。但是,对于部分负荷燃气柴油机运行,HC,CO排放量和“ bsfc”较高。双燃料发动机的热效率可以通过提高发动机转速,提前喷射正时或通过增加引燃燃料量来提高。气态燃料的点火特性需要进一步研究,以便在双燃料发动机中长期使用。发现,发动机操作和设计参数的选择在最小化现有柴油发动机和“汽油柴油发动机”之间的性能差异方面起着至关重要的作用。

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