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Experimental study on the effects of HP and LP EGR on thermal efficiency and emissions of a two-stage turbocharged diesel engine 被引量:7
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作者 WU BinYang PU YouZhe +1 位作者 YU XiaoYang SU WanHua 《Science China(Technological Sciences)》 SCIE EI CAS 2014年第2期379-389,共11页
An experimental study was performed to compare the effects of high-and low-pressure exhaust gas recirculation loops(HP and LP EGR loops)on thermal efficiency and emissions of a diesel engine.Tests were conducted on a ... An experimental study was performed to compare the effects of high-and low-pressure exhaust gas recirculation loops(HP and LP EGR loops)on thermal efficiency and emissions of a diesel engine.Tests were conducted on a 12-L six-cylinder turbocharged diesel engine under various operating conditions.We found that at a low speed of 1100 r/min,1 MPa BMEP,the LP EGR loop could achieve higher brake thermal efficiency and lower emissions than the HP EGR.This is because the lower enthalpy available at the turbine inlet of the HP EGR loop increased the fuel/oxygen equivalence ratio.For the HP EGR,the gross indicated thermal efficiency was reduced by 1%,but pumping losses were only reduced by 0.5%,compared to the LP EGR loop.At a higher speed of 1600 r/min,1 MPa BMEP,the HP EGR loop attained a higher brake thermal efficiency and lower emissions because of the relatively sufficient flow through the turbocharger.For the HP EGR loop,the gross indicated thermal efficiency was only reduced by 0.5%and pumping losses were reduced by 1.5%,compared to the LP EGR loop.Lower fuel consumption and a longer ignition delay made the distribution of fuel/oxygen equivalence ratio more homogeneous,leading to lower emissions.Our data also showed that at the high speed of 1600 r/min,0.55 MPa BMEP,the brake thermal efficiency of the HP EGR loop first increased,then decreased as the EGR rate increased.Therefore,under all conditions,a reasonable match of both EGR loops could achieve a good balance between fuel consumption and emissions of NOx and soot. 展开更多
关键词 指示热效率 egr 柴油发动机 涡轮增压器 排放物 hp 实验 平均有效压力
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进气门晚关机构和EGR模式对两级增压柴油机热效率和排放的影响 被引量:1
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作者 朴有哲 邬斌扬 +1 位作者 于晓洋 苏万华 《燃烧科学与技术》 EI CAS CSCD 北大核心 2014年第2期181-188,共8页
在低速中等负荷工况下对一台装有高压级带VGT的两级涡轮增压器(VGT+TC)的直列6缸重型柴油机进行了试验研究,对比分析进气门晚关机构(LIVC)开启与不开启、高压EGR系统(HP EGR)与低压EGR系统(LP EGR)以及不同VGT开度对柴油机热效率和排放... 在低速中等负荷工况下对一台装有高压级带VGT的两级涡轮增压器(VGT+TC)的直列6缸重型柴油机进行了试验研究,对比分析进气门晚关机构(LIVC)开启与不开启、高压EGR系统(HP EGR)与低压EGR系统(LP EGR)以及不同VGT开度对柴油机热效率和排放的影响.研究表明,使用LIVC后,与EGR能产生协同作用,使缸内氧浓度和高温区域减少,有效降低NOx排放,同时延长滞燃期,当量比分布更加均匀,可有效降低碳烟排放,但碳烟排放对应EGR率变化存在一个临界EGR值,超过临界EGR率后,碳烟排放变差.使用LIVC对有效热效率的影响很小.在相同EGR率下,采用低压EGR系统时,具有更好的NOx和碳烟折中排放,同时有较高的有效热效率. 展开更多
关键词 进气门晚关 高压egr 低压egr 热效率 排放
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