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燃料含氧量在不同海拔下对柴油机性能的影响 被引量:13
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作者 刘少华 申立中 +2 位作者 毕玉华 雷基林 张生斌 《内燃机学报》 EI CAS CSCD 北大核心 2012年第4期316-321,共6页
为了研究生物质燃料含氧量在不同海拔地区对柴油机性能的影响关系,进行了燃用不同氧质量分数的生物柴油-乙醇-柴油(BED)混合燃料和纯柴油的对比试验.结果表明,发动机外特性在不同大气压力下BED混合燃料的转矩均低于纯柴油,并随氧质量分... 为了研究生物质燃料含氧量在不同海拔地区对柴油机性能的影响关系,进行了燃用不同氧质量分数的生物柴油-乙醇-柴油(BED)混合燃料和纯柴油的对比试验.结果表明,发动机外特性在不同大气压力下BED混合燃料的转矩均低于纯柴油,并随氧质量分数的增加逐渐降低,随大气压力的升高降幅逐渐减小;当量燃油消耗率在81,kPa时均低于纯柴油,随着氧质量分数的增加逐渐降低,随着大气压力的升高,在中低转速下当量燃油消耗率随氧质量分数的增加有上升趋势,在100,kPa下超过了纯柴油.负荷特性表明,当量燃油消耗率在不同大气压力下随氧质量分数的增加逐渐降低,降低幅度逐渐增大;随着大气压力的升高,当量燃油消耗率逐渐降低.在81,kPa高原环境的低负荷下,各种燃料的碳烟排放差别不大,随着负荷的增大,各种燃料的碳烟排放随着氧质量分数的增加逐渐降低.含氧BED混合燃料的最佳喷油提前角随着混合燃料中生物柴油比例的增加而减小,随着乙醇比例的增加而增大. 展开更多
关键词 燃料含氧量 不同海拔地区 性能 碳烟排放 喷油提前角
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Cooling of a Diesel Reformate Fuelled Solid Oxide Fuel Cell by Internal Reforming of Methane: A Modelling Study 被引量:1
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作者 黄肖微 Alexander Kromp 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2013年第3期324-331,共8页
In this paper a system combining a diesel reformer using catalytic partial oxidation (CPOX) with the Solid Oxide Fuel Cell (SOFC) for Auxiliary Power Unit (APU) applications is modeled with respect to the coolin... In this paper a system combining a diesel reformer using catalytic partial oxidation (CPOX) with the Solid Oxide Fuel Cell (SOFC) for Auxiliary Power Unit (APU) applications is modeled with respect to the cooling effect provided by internal reforming of methane in anode gas channel. A model mixture consisting of 80% n-hexadecane and 20%..!-methylnaphthalin is used to simulate the commercial diesel. The modelling consists of several steps. First, equilibrium gas composition at the exit of CPOX reformer is modelled in terms oxygen to car- bon (O/C) ratio, fuel utilization ratio and anode gas recirculation. Second, product composition, especially methane content, is determined for the me.th.an, ation process at the operating temperatures ra:ng!ng from 500 ℃to 520 ℃.Finally, the cooling power provided by internal reforming of methane in SOFC fuel channel is calculated for two concepts to increase the methane content of the diesel reformate. The results show that the first concept, operating the diesel reformer at low O/C ratio and/or, recirculation rat!o, is not realizable due to high probability of coke formation, whereas the second concept, combining a methanation process with CPOX, can provide a significant cool- ing effect in addition to the conventional c?oling concept which needs higher levels of excess air. 展开更多
关键词 diesel reformate METHANATION intemal reforming COOLING model solid oxide fuel cell-auxiliary power unit
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