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Performance, emission and combustion characteristics of CI engine fuelled with diesel and hydrogen
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作者 R. Senthil KUMAR M. LOGANATHAN E. James GUNASEKARAN 《Frontiers in Energy》 SCIE CSCD 2015年第4期486-494,共9页
Hydrogen (H2) is being considered as a primary automotive fuel and as a replacement for conventional fuels. Some of the desirable properties, like high flame velocity, high calorific value motivate us to use hydroge... Hydrogen (H2) is being considered as a primary automotive fuel and as a replacement for conventional fuels. Some of the desirable properties, like high flame velocity, high calorific value motivate us to use hydrogen fuel as a dual fuel mode in diesel engine. In this experiment, hydrogen was inducted in the inlet manifold with intake air. The experiments were conducted on a four stroke, single cylinder, water cooled, direct injection (DI), diesel engine at a speed of 1500r/min. Hydrogen was stored in a high pressure cylinder and supplied to the inlet manifold through a water-and-air-based flame arrestor. A pressure regulator was used to reduce the cylinder pressure from 140 bar to 2 bar. The hydrogen was inducted with a volume flow rate of 41 pm, 61 pm and 81 pm, respectively by a digital volume flow meter. The engine performance, emission and combustion parameters were analyzed at various flow rates of hydrogen and compared with diesel fuel operation. The brake thermal efficiency (BTE) was increased and brake specific fuel consumption (BSFC) decreased for the hydrogen flow rate of 81 pm as compared to the diesel and lower volume flow rates of hydrogen. The hydrocarbon (HC) and carbon monoxide (CO) were decreased and the oxides of nitrogen (NOx) increased for higher volume flow rates of hydrogen compared to diesel and lower volume flow rates of hydrogen. The heat release rate and cylinder pressure was increased for higher volume flow rates of hydrogen compared to diesel and lower volume flow rates of hydrogen. 展开更多
关键词 HYDROGEN brake thermal efficiency crankangle compressed ignition (CI)
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四杆机构深度解析 被引量:4
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作者 刘学良 《煤矿机械》 2016年第4期84-87,共4页
运用理论力学以及数学知识,从传动角、惯性力和极位夹角等方面入手,对四杆机构中的I、II型曲柄摇杆机构、曲柄滑块机构以及双曲柄机构进行深入分析,提出并证明相关机构的一些特性,并指出相关特性的用途。
关键词 曲柄摇杆机构 曲柄滑块机构 双曲柄机构 传动角 惯性力 极位夹角
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