首页> 外文会议>2003 Fall Technical Conference of the ASME Internal Combustion Engine Division; Sep 7-11, 2003; Erie, Pennsylvania >STUDIES ON INFLUENCE OF INJECTION TIMING AND DIESEL REPLACEMENT ON LPG- DIESEL DUAL-FUEL ENGINE
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STUDIES ON INFLUENCE OF INJECTION TIMING AND DIESEL REPLACEMENT ON LPG- DIESEL DUAL-FUEL ENGINE

机译:喷射正时和柴油更换对LPG-柴油双燃料发动机的影响研究

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摘要

Reducing the emissions and fuel consumption for IC engines are no longer the future goals; instead they are the demands of today. People are concerned about rising fuel costs and effects of emissions on the environment. The major contributor for the increased levels of pollutants is the Diesel engines. Diesel engine finds application in almost in all fields, including transportation sector such as buses, trucks, railway engines, etc. and in industries as power generating units. In the present work an attempt is made for effective utilization of diesel engine aiming for reduction in fuel consumption and smoke density. This is achieved by some minor modifications in diesel engine, so as to run the existing diesel engine as a LPG-Diesel dual-fuel engine with LPG (Liquefied Petroleum Gas) induction at air intake. The important aspect of LPG-Diesel dual-fuel engine is that it shows significant reduction in smoke density and improved brake thermal efficiency with reduced energy consumption. An existing 4-S, single cylinder, naturally aspirated, water-cooled, direct injection, CI engine test rig was used for the experimental purpose. With proper instrumentation the tests were conducted under various LPG flow rates, loads, and injection timings. The influence of the diesel replacement by LPG on smoke density, brake specific energy consumption and brake thermal efficiency were studied. The optimal diesel replacement pertaining to the maximum allowable LPG gas flow limits could be assessed with these experiments. The influence of the injection timing variation on the engine performance and smoke density were analyzed form the experimental results. It was also observed that beyond half load operation of the dual-fuel engine, the brake thermal efficiency increases with diesel replacement, and at full load up to 4% improvement was observed compared to full diesel operation. At full load reduction in smoke density up to 25-36% was observed compared to full diesel operation. At advance injection timing of 30°btdc the performance was better with lower emissions compared to normal and retarded injection timings.
机译:减少IC发动机的排放和燃料消耗不再是未来的目标。相反,它们是当今的需求。人们担心燃料成本上涨以及排放物对环境的影响。柴油机是造成污染物增加的主要原因。柴油机几乎在所有领域都得到了应用,包括公共汽车,卡车,铁路发动机等运输领域以及作为发电装置的行业。在本工作中,试图有效利用柴油发动机,以减少燃料消耗和烟气密度。这可以通过对柴油发动机进行一些较小的修改来实现,以便将现有的柴油发动机作为LPG-柴油双燃料发动机运行,并在进气口引入LPG(液化石油气)。 LPG-柴油双燃料发动机的重要方面在于,它显着降低了烟雾密度,并提高了制动器的热效率,同时降低了能耗。实验使用了现有的4-S,单缸,自然吸气,水冷,直接喷射CI发动机试验台。借助适当的仪器,测试可以在各种LPG流量,负载和喷射定时下进行。研究了液化石油气替代柴油对烟气密度,制动器比能耗和制动器热效率的影响。可以通过这些实验评估与最大允许LPG气体流量限制有关的最佳柴油替代品。从实验结果分析了喷射正时变化对发动机性能和烟气密度的影响。还观察到,在双燃料发动机的半负荷运行之后,制动热效率随柴油机的更换而增加,与全柴油运行相比,在全负荷下,制动热效率提高了4%。与满载柴油运行相比,满载时烟气密度降低了25-36%。与正常和延迟喷射正时相比,在30°btdc的提前喷射正时下,性能更好,排放更低。

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