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Fuel Economy and Emissions of a 7L Common Rail Diesel Engine during Torque Rise Transient Process

机译:扭矩上升瞬态过程中7L共轨柴油发动机的燃料经济性和排放

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Previous studies have indicated that longer torque increase time benefits the reduction of emissions during transient process for a diesel engine. However, quantitative conclusions on reduction of emissions and effects on fuel economy have not been made clear so far. The aim of this study was to evaluate the transient process of diesel engine under different torque increase time, and to find the quantitative statement between torque increase time, fuel economy and engine-out emissions. To do this, experiment was carried out on a 7L common rail diesel engine used for commercial vehicles. Three engine speeds (1100r·min~(-1), 1300r·min~(-1) and 1500r·min~(-1)) were chosen to represent an engine working range. For each speed, the engine torque is increased within different time (0.5s, 1s, 2s and 5s). It was shown that, in the transient process mentioned above, engine torque increase time effects fuel economy, smoke opacity and CO emission. For longer torque increase time, smoke opacity and CO could be significantly reduced, while at a cost of sacrificing fuel economy. However, torque increase time is not a determined reason for transient NO_x emission.
机译:以前的研究表明,扭矩增加的时间较长时间有利于柴油发动机瞬态过程中的排放减少。然而,到目前为止还没有明确降低排放和对燃料经济影响的定量结论。本研究的目的是评估柴油发动机在不同扭矩增加时的瞬态过程,并在增加扭矩增加时间,燃料经济性和发动机排放之间的定量陈述。为此,在用于商用车辆的7L共同轨道柴油发动机上进行实验。选择三个发动机速度(1100r·min〜(-1),1300r·min〜(-1)和1500r·min〜(-1))以表示发动机工作范围。对于每种速度,发动机扭矩在不同的时间内增加(0.5s,1s,2s和5s)。结果表明,在上述瞬态过程中,发动机扭矩增加时间效果燃料经济性,烟雾不透明和共同发射。对于更长的扭矩,增加时间,烟雾不透明和CO可以显着降低,而牺牲燃料经济性的成本。然而,扭矩增加时间不是瞬态NO_X发射的决定原因。

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