排序方式: 共有111条查询结果,搜索用时 15 毫秒
1.
增压直喷柴油机EGR系统设计与试验研究 总被引:5,自引:1,他引:5
以增压直喷柴油机为研究对象,设计了一套EGR控制系统以降低NOx排放,具体介绍了EGR系统中的进气节流阀、组合气缸阀、EGR冷却器及电控系统的结构形式,并通过发动机试验测试了EGR系统的实际控制效果。 相似文献
2.
在增压中冷直喷式柴油机上,通过采用排气再循环(EGR)的技术措施,分析研究了EGR在不同条件下对柴油机NOx的排放特性及其工作过程的影响,指出了EGR抑制NOx排放量的原理和具体效率。 相似文献
3.
4.
5.
6.
7.
J. R. Serrano F. J. Arnau V. Dolz A. Tiseira M. Lejeune N. Auffret 《International Journal of Automotive Technology》2008,9(3):277-288
This article presents a two-stage turbocharged heavy-duty diesel (HDD) engine designed to fulfil the US2007 anti-pollution
directive. This directive imposes very restrictive limits on the NOx and particle emissions of HDD engines. In this work,
the possibility of combining particle traps in the exhaust line to reduce soot emissions with very high EGR rates to reduce
NOx emissions is considered. This new generation engine implements two-stage turbocharging in order to improve the bsfc when
the engine is working on steady conditions as well as to optimize the engine transient response. After carrying out the tests,
the results were analyzed and the engine settings were adjusted to maximise its behaviour and minimise pollutant emissions.
NOx and soot emission peaks were also analyzed at engine transient conditions in order to keep them under certain levels,
and thus maintain the overall pollutant emissions to a level that is as low as possible. In summary, a double-stage turbocharging
configuration can greatly improve engine driveability (between 23% and 36% depending on engine speed), while reducing NOx
emissions during transient evolution without increasing opacity peaks beyond the stated limits. 相似文献
8.
9.
为降低HCNG发动机NOx排放,采用负阀重叠EGR策略,利用AVL-Fire软件对HCNG发动机不同进气门开启角(θIVO)下的进气过程和燃烧过程进行了三维仿真计算,对比分析了采用负阀重叠前后发动机缸内EGR分布和燃烧过程。仿真结果表明:负阀重叠EGR策略下,排气门关闭角(θEVC)固定为340°曲轴转角不变,当θIVO为380°曲轴转角时,既可避免发生回火又能保证一定的进气量及充气效率;采用负阀重叠后,在压缩冲程后期,缸内EGR率呈梯度分布(靠近火花塞位置EGR率较低),更有利于着火及火焰传播;采用负阀重叠可降低缸内最高燃烧压力及最高温度,但会减少进入气缸的新鲜工质,降低发动机功率;通过负阀重叠实现内部EGR可降低NOx排放,但会导致着火困难,燃烧速度变慢;提高点火能量可缩短着火落后期和燃烧持续期,加快燃烧速度。 相似文献
10.
为了实现废气围绕在可燃混合气周围,并且废气较浓区域集中于燃烧室底部的EGR分层形式,基于1台缸内直喷汽油机,利用CFD仿真软件Fire针对原机切向气道结构以及切向气道与螺旋气道相结合的气道形式进行了仿真,探究其实现预期EGR分层的潜力,并从缸内进气流场角度分析EGR分层机理。结果表明:原机切向气道由于滚流在压缩冲程中被大幅削弱,不能形成研究预期的EGR分层形式;采用切向气道与螺旋气道相结合的进气道结构形式可以使滚流在压缩冲程中具有较好的保持性,并结合EGR相位调整,实现了约10%的EGR分层梯度,EGR分层形式符合研究预期。 相似文献