首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering >Experimental investigations on combustion, performance, and emissions characteristics of a neat biodiesel-fuelled, turbocharged, direct injection diesel engine
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Experimental investigations on combustion, performance, and emissions characteristics of a neat biodiesel-fuelled, turbocharged, direct injection diesel engine

机译:纯生物柴油,涡轮增压,直喷柴油发动机的燃烧,性能和排放特性的实验研究

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摘要

The concerns about clean environment, high oil prices, and stringent emission norms are the driving forces for the research on alternative fuels. Extensive investigations have been carried out in recent years on replacing diesel fuel by vegetable-oil-derived biodiesel fuel in compression ignition engines, mainly owing to its renewable source, reduced emissions, and direct usage without any engine modifications. The experimental work reported here has been carried out on a turbocharged, direct injection, multi-cylinder truck diesel engine using diesel fuel and neat karanja-oil-derived biodiesel under varying speed and load conditions. The results of the experimental investigation indicate that a maximum of 2.3°CA (crank angle) advance in dynamic fuel injection timing is observed with biodiesel compared with the diesel fuel. The ignition delay is lower for biodiesel compared with diesel fuel at all engine speeds. The peak cylinder pressure is higher at most of the operating conditions and the maximum rate of pressure rise is lower at low speeds and higher at high speeds for biodiesel compared with diesel fuel. In general an earlier start of combustion and lower combustion duration are observed for biodiesel relative to diesel fuel. The maximum thermal efficiency occurring at the maximum torque speed of 1400 r/min is observed to be 40.7 per cent and 40.5 per cent for diesel and neat biodiesel respectively. A significant reduction in unburnt hydrocarbon and smoke emissions, comparable carbon monoxide emissions, and higher nitric oxide emissions are observed with biodiesel compared with diesel fuel operation. In general, an improvement in combustion characteristics and exhaust emissions, except nitric oxide, are observed for biodiesel compared with diesel fuel, with a slight penalty in brake thermal efficiency.
机译:对清洁环境,高油价和严格的排放标准的关注是替代燃料研究的动力。近年来,已经进行了广泛的研究,以在压燃式发动机中用植物油来源的生物柴油代替柴油,这主要是由于其可再生资源,减少了排放以及无需任何发动机改装即可直接使用。此处报道的实验工作是在涡轮增压,直喷多缸卡车柴油发动机上进行的,该柴油发动机使用柴油和纯净的魔芋油衍生的生物柴油在不同的速度和负载条件下进行。实验研究的结果表明,与柴油相比,生物柴油在动态燃油喷射正时中最大提前了2.3°CA(曲柄角)。在所有发动机转速下,生物柴油的点火延迟都比柴油燃料低。与柴油燃料相比,生物柴油在大多数操作条件下的最高气缸压力更高,在低速时最大升压速率较低,而在高速时最高。通常,相对于柴油燃料,观察到生物柴油的燃烧开始较早,燃烧持续时间较短。对于柴油和纯生物柴油,在最大扭矩转速1400 r / min时发生的最大热效率分别为40.7%和40.5%。与柴油运行相比,生物柴油可显着减少未燃烧的碳氢化合物和烟雾排放,可比较的一氧化碳排放以及较高的一氧化氮排放。通常,与柴油相比,生物柴油的燃烧特性和废气排放(一氧化氮除外)都有改善,但制动热效率略有下降。

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