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Effects of Carbon Dioxide, Nitrogen and Exhaust Gas With Intake Air on DI Diesel Engine Emission and Performance Characteristics

机译:二氧化碳,氮气和废气对进气口的影响DI柴油发动机发射和性能特征

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The present work reports the emission and performance characteristics of a direct injection (DI) diesel engine operating with maximum proportions of carbon dioxide (CO{sub}2), nitrogen (N{sub}2), and exhaust gas with intake air. The test was conducted on a direct injection (DI) diesel engine for various proportions of CO{sub}2, N{sub}2, and exhaust gas from no load to full load under a constant speed of 1500 rpm. The proportions of CO{sub}(2i), N{sub}2, and exhaust gas were varied up to 10, 20 and 15 percent by volume respectively with intake air. The results revealed that the addition of CO{sub}2, N{sub}2, and exhaust gas with intake air causes large reduction in oxides of nitrogen (NO{sub}x) and increase in smoke, carbon monoxide (CO), unburnt hydrocarbon (HC) emissions. The performance characteristics revealed that brake thermal efficiency (BTE) decreases and brake specific fuel consumption increases (BSFC) with an increasing amount of CO{sub}2, N{sub}2, and exhaust gas. Also it was noticed from the present investigation that when the percentage of CO{sub}2, N{sub}2, and exhaust gas exceeds 10, 20, 15 respectively causes engine misfire occur under full-load condition.
机译:目前的工作报告了直接喷射(DI)柴油发动机的发射和性能特征,其具有最大比例的二氧化碳(Co {Sub} 2),氮气(N {um} 2)和进气气体的废气。在直接喷射(DI)柴油发动机上进行测试,用于各种比例的CO {} 2,N {} 2,并且在1500rpm的恒定速度下没有负载到满载的废气。 CO {Sub}(2I),N {um} 2和废气的比例分别与进气量相比分别变化为10,20和15%。结果表明,加入CO {SUB} 2,N {亚} 2和进气的废气导致氮气氧化物(NO {Sub} x)的大大降低,并增加烟雾,一氧化碳(CO), Unburnt烃(HC)排放。性能特征揭示了制动热效率(BTE)降低和制动特定燃料消耗增加(BSFC),其数量的CO {} 2,N {} 2和废气增加。此外,从本发明的研究中被注意到,当CO {SUB} 2,N {um} 2和废气超过10,20,15的百分比分别导致发动机失火发生在全负载条件下。

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