1. 清华大学汽车工程系,北京,100084
2. 清华大学汽车安全与节能国家重点实验室,北京,100084
网络首发:2012-11-10,
纸质出版:2012
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卢勇 1, 裴普成 1, 2, 等. 新型缸内直喷发动机滚流燃烧室设计与研究[J]. 西安交通大学学报, 2012,46(11):17-22.
Design and Research on New Gasoline Direct Injection Engine Tumble Combustion Chamber[J]. 2012, 46(11): 17-22.
为了获得更加节能、环保和高性能的汽油发动机
设计了一种适用于缸内直喷(GDI)发动机的新型滚流燃烧室
并将这种燃烧室应用于4G15缸内直喷发动机进行了实验研究.该燃烧室通过活塞顶上凸起面的作用
合理地组织了缸内气体流动.计算流体动力学(CFD)仿真分析表明
在不使用垂直向下滚流进气道的情况下
该燃烧室同样可以获得理想的滚流强度.实验结果表明
4G15发动机的稀燃极限可达25~27
其中17~19是效率最高的空燃比区间
该区间的效率较原机提高了10%左右.在理论空燃比的情况下
当废气再循环率(EGR)达到7%时
NO
x
排放的化学计量可以降低到无EGR情况的20%以下.
In order to obtain gasoline engines with high efficiency
low-emission and high performance
a new gasoline direct injection(GDI)engine tumble combustion chamber was designed
and an experiment was conducted with the present combustion chamber on a 4G15 GDI engine. This tumble combustion chamber organizes the in-cylinder flow rationally by optimizing the shape of piston crown. The result of computational fluid dynamics(CFD)analysis indicates that the combustion chamber structure could result in perfect in-cylinder tumble intensity
even without the vertical straight intake port. The test results show that the lean combustion limit of the 4G15 GDI engine can reach 25-27. The most efficient air-fuel ratio range is 17-19 and in this range
and the engine fuel consumption decreases by 10% compared with the original engine. In the case of stoichiometric ratio
NO
x
emission de
creases to less than 20% of that without EGR when the exhaust gas recirculation(EGR)is 7%.
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于善颖, 刘德新, 刘书亮. 空燃比控制对分层稀燃发动机性能的影响 [J]. 农业机械学报, 2003, 34(5): 1-3.
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