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Experimental investigation of timed manifold injection of acetylene in direct injection diesel engine in dual fuel mode

机译:双燃料模式直喷柴油机定时歧管乙炔定时喷射实验研究

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摘要

The increase in demand and decrease in availability of fossil fuels with more stringent emission norms have led to research in finding an alternative fuel for internal combustion (IC) engines. Among the alternative fuels, gaseous fuels find a great potential. The gaseous fuel taken up for the present study is acetylene, which possesses excellent combustion properties. Preignition is the major problem with this fuel. In the present study, timed manifold injection technique is adopted to induct the fuel into the IC engine. A four-stroke, 4.4 kW diesel engine is selected, with slight modification in intake manifold for holding the gas injector, which is controlled by an electronic control unit (ECU). By using an ECU, an optimized injection timing of 10° after top dead center and 90° crank angle duration are arrived. At this condition, experiments were conducted for the various gas flow rates of 110 g/s, 180 g/s and 240 g/s. The performance was nearer to diesel at full load. Oxides of nitrogen, hydrocarbon and carbon monoxide emission decreased due to lean operation with marginal increase in smoke emission. To conclude, a safe operation of acetylene replacement up to 24% was possible with reduction in emission parameters.
机译:排放标准更加严格的需求的增加和化石燃料的可用性的下降导致了对寻找内燃机(IC)替代燃料的研究。在替代燃料中,气态燃料具有巨大的潜力。用于本研究的气体燃料是乙炔,它具有出色的燃烧性能。提前点火是这种燃料的主要问题。在本研究中,采用定时歧管喷射技术将燃料引入内燃机。选择了四冲程4.4 kW柴油发动机,对进气歧管进行了少许改动以容纳气体喷射器,该进气歧管由电子控制单元(ECU)控制。通过使用ECU,可以在上止点后10°和90°曲柄角持续时间后达到最佳喷射正时。在此条件下,针对110 g / s,180 g / s和240 g / s的各种气体流速进行了实验。在满负荷情况下,性能接近柴油。氮,碳氢化合物和一氧化碳的氧化物排放量由于稀薄运行而降低,烟气排放量略有增加。总而言之,可以通过减少排放参数来安全地操作高达24%的乙炔替代品。

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