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首页> 外文期刊>International journal of engine research >Un-throttling a direct injection gasoline homogeneous mixture engine with variable valve actuation
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Un-throttling a direct injection gasoline homogeneous mixture engine with variable valve actuation

机译:可变气门致动的直喷汽油均质混合气发动机节流

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摘要

Two direct injection spark ignition (DISI) engines with identical combustion chamber geometries and fuel injection systems were used to investigate fuel economy, exhaust emissions, the in-cylinder flow field, the fuel spray behaviour and combustion characteristics with early inlet valve closure (EIVC) strategies aimed at reducing parasitic induction work owing to throttling. One engine had extensive optical access through a transparent piston crown and transparent cylinder liner, while the other all-metal engine allowed continuous running. Engine running focused at low and intermediate engine loads (~3 and ~6 bar indicated mean effective pressure) and two engine speeds (2000 and 3500 r/min). The results show that the indicated specific fuel consumption (ISFC) could be reduced by almost 6 per cent without significant deterioration in gaseous exhaust pollutant emissions. The results also show that the in-cylinder bulk flow and turbulence and the thermodynamic conditions during combustion are affected significantly by EIVC operation.
机译:使用两个具有相同燃烧室几何形状和燃油喷射系统的直喷式火花点火(DISI)发动机来研究燃油经济性,排气排放,缸内流场,燃油喷雾行为和燃烧特性,以及提前关闭进气门(EIVC)旨在减少由于节流引起的寄生感应工作的策略。一台发动机可以通过透明的活塞顶盖和透明的气缸套获得广泛的光学通道,而另一台全金属发动机则可以连续运行。发动机的运行着重于中低载荷(〜3和〜6 bar表示平均有效压力)和两种发动机转速(2000和3500 r / min)。结果表明,所指示的单位燃料消耗量(ISFC)可以降低近6%,而废气排放污染物的排放不会显着恶化。结果还表明,EIVC运行会显着影响缸内整体流量和湍流以及燃烧过程中的热力学条件。

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