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Effect of reducing the methane concentration on the combustion and performance of a biogas diesel predominantly premixed charge compression ignition engine

机译:降低甲烷浓度对以沼气柴油为主的预混合装料压燃式发动机的燃烧和性能的影响

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In a biogas diesel predominantly premixed charge compression ignition (BDPPCCI) engine the effect of composition of biogas on combustion, performance and emissions was experimentally investigated. A twin cylinder automotive common rail engine with an open electronic control unit was run on one of its cylinders in this mode while the other cylinder was nonfunctional. Three biogas compositions with methane (CH4) proportions of 53-58% (as obtained from the plant), 67% and 22-25% were used at a constant engine speed of 1800 rpm. Stable engine operation in the BDPPCCI mode even with very low methane fractions was possible without adverse effects on efficiency and emissions. Reducing the methane proportion (i.e. high proportion of CO2) enabled the brake mean effective pressure (BMEP) to be extended from 4 bar to 5 bar with sufficient margin for start of injection (SOI). Lower CH4 (i.e. increased CO2 proportion) also allowed the use of retarded SOI for diesel which resulted in reduced smoke emissions. This not only improved the combustion phasing but also lowered the peak heat release rate leaving the thermal efficiency relatively unaffected. Results indicate that extremely low levels of NO and smoke can be reached in the BDPPCCI mode at the best efficiency operating condition if the biogas composition is altered based on the output. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在以沼气柴油为主的预混合充气压燃式(BDPPCCI)发动机中,实验研究了沼气成分对燃烧,性能和排放的影响。具有打开的电子控制单元的双缸汽车共轨发动机以这种模式在其中一个气缸上运行,而另一个气缸不起作用。在发动机转速为1800 rpm的情况下,使用了三种沼气成分,其中甲烷(CH4)的比例为53-58%(从工厂获得),67%和22-25%。即使甲烷含量非常低,也可以在BDPPCCI模式下使发动机稳定运行,而不会对效率和排放造成不利影响。降低甲烷比例(即较高的CO2比例)可以使制动平均有效压力(BMEP)从4 bar扩展到5 bar,并有足够的余量来开始注入(SOI)。较低的CH4(即增加的CO2比例)也允许将延迟的SOI用于柴油,从而减少了烟气排放。这不仅改善了燃烧定相,而且降低了峰值放热率,而热效率相对不受影响。结果表明,如果根据输出量改变沼气成分,则在BDPPCCI模式下,在最佳效率的操作条件下,可以达到极低的NO和烟雾水平。 (C)2017 Elsevier Ltd.保留所有权利。

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