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Waste heat recovery from heavy-duty diesel engine exhaust gases by medium temperature ORC system 被引量:16
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作者 WEI MingShan FANG JinLi +1 位作者 MA ChaoChen DANISH Syed Noman 《Science China(Technological Sciences)》 SCIE EI CAS 2011年第10期2746-2753,共8页
A medium-temperature waste-heat recovery system based on the organic Rankine cycle (ORC) is designed to recover the exhaust energy from a heavy-duty diesel engine. Analysis of the 1st law of thermodynamics for an ORC ... A medium-temperature waste-heat recovery system based on the organic Rankine cycle (ORC) is designed to recover the exhaust energy from a heavy-duty diesel engine. Analysis of the 1st law of thermodynamics for an ORC system is performed. This analysis contains two parts. The first part is an analysis with undefined heat exchangers to gain an understanding of the ORC and find out suitable organic fluid parameters for a better ORC efficiency. The second part of the analysis uses combined engine test results and two designs of heat exchangers. By comparing the two designs, an improved system of heat exchangers is described. This analysis also quantifies the effect of engine parameters on ORC system. The study concludes that the supercritical Rankine cycle is a better approach towards waste heat recovery. The ORC system is found to perform better under part-load conditions if the medium-high power condition rather than rated working point of the engine is used as the design parameter. The ORC system achieves the highest waste-heat recovery efficiency of up to 10-15% for the optimised heat ex-changer design. 展开更多
关键词 waste heat recovery organic-fluid Rankine cycle heavy-duty diesel engine medium temperature waste heat
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进气中冷温度对柴油机NO_x排放性能的影响 被引量:6
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作者 李紫帝 谭建伟 +3 位作者 葛蕴珊 李加强 陈伟 王世杰 《车辆与动力技术》 2016年第4期54-58,共5页
提出了一种通过提高增压中冷后的进气温度来降低柴油机NO_x排放的措施.用GT-Power软件建立发动机的模型,改变进气中冷温度,在基于欧Ⅵ排放法规要求的瞬态测试循环(World Harmonized Transient Cycle,WHTC)下进行了仿真.仿真结果表明:中... 提出了一种通过提高增压中冷后的进气温度来降低柴油机NO_x排放的措施.用GT-Power软件建立发动机的模型,改变进气中冷温度,在基于欧Ⅵ排放法规要求的瞬态测试循环(World Harmonized Transient Cycle,WHTC)下进行了仿真.仿真结果表明:中冷温度提升15℃,涡轮出口端循环平均温度会提高12℃.在发动机台架试验中,验证了中冷温度的提升对WHTC循环排气温度提升的效果,研究了中冷温度的提升对NO_x排放以及SCR的性能的影响.实验结果表明:在整个WHTC循环中,中冷温度提升15℃,WHTC循环平均温度可以提高5℃,NO_x可以降低3.6%,SCR效率提高1.8%;对于WHTC循环中SCR平均温度低的低负荷工况区,NO_x甚至可以降低7.4%,SCR的催化转化效率可以提升3.2%. 展开更多
关键词 重型柴油机 选择性催化系统 氮氧化物排放 低温工况 中冷温度 氮氧化物转换效率 GT-POWER
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Technology Development Analysis on Low Carbon for Power of Heavy-Duty Commercial Vehicle 被引量:1
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作者 Jiangwei Liu Jun Li +8 位作者 Yongjun Wang Dalu Dong Yansheng Yin Huayu Jin Shijie Sun Huili Dou Yanbo Shi Lei Fu Fei Ge 《Automotive Innovation》 EI CSCD 2019年第1期64-70,共7页
Commercial vehicle industry worldwide is facing challenges from environmental pressures,stringent limits of CO_(2) emission,governmental regulations as well as ever-increased customer demands.This paper analyzes the a... Commercial vehicle industry worldwide is facing challenges from environmental pressures,stringent limits of CO_(2) emission,governmental regulations as well as ever-increased customer demands.This paper analyzes the above-mentioned challenges,especially in China,including the potential improvement to increase the brake thermal efficiency(BTE),with five levels of BTE proposed,ranging from current 45 to 60%in future,corresponding to China fuel consumption regulation(CFCR)in different phases.The authors also proposed the technology roadmaps to meet the upcoming CFCR3 and CFCR4;finally,the authors draw the conclusions to conform with ever-stringent regulation in China. 展开更多
关键词 heavy-duty diesel engine(hdde) Low carbon Fuel consumption
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