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EXPERIMENTAL INVESTIGATION OF A HEAVY-DUTY CI ENGINE RETROFITTED TO NATURAL GAS SI OPERATION

机译:改造为天然气SI操作的重型CI发动机的实验研究

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Heavy-duty compression-ignition (CI) engines converted to natural gas (NG) operation can reduce the dependence on petroleum-based fuels and curtail greenhouse gas emissions. Such an engine was converted to premixed NG spark-ignition (SI) operation through the addition of a gas injector in the intake manifold and of a spark plug in place of the diesel injector. Engine performance and combustion characteristics were investigated at several lean-burn operating conditions that changed fuel composition, spark timing, equivalence ratio, and engine speed. While the engine operation was stable, the reentrant bowl-in-piston (a characteristic of a CI engine) influenced the combustion event such as producing a significant late-combustion, particularly for advanced spark timing. This was due to an important fraction of the fuel burning late in the squish region, which affected the end of combustion, the combustion duration, and the cycle-to-cycle variation. However, the lower cycle-to-cycle variation, stable combustion event, and the lack of knocking suggest a successful conversion of conventional diesel engines to NG SI operation using the approach described here.
机译:转换为天然气(NG)的重型压燃(CI)发动机可以减少对石油基燃料的依赖,并减少温室气体的排放。通过在进气歧管中添加气体喷射器和代替柴油喷射器的火花塞,将这种发动机转换为预混合NG火花点火(SI)操作。在几种稀薄燃烧工况下研究了发动机性能和燃烧特性,这些条件改变了燃料成分,火花正时,当量比和发动机转速。虽然发动机运行稳定,但凹入式活塞碗(CI发动机的特性)会影响燃烧事件,例如产生明显的后期燃烧,尤其是提前点火正时。这是由于在压缩区域后期燃烧的燃料比例很大,这影响了燃烧的结束,燃烧的持续时间以及周期之间的变化。然而,较低的周期变化,稳定的燃烧事件和爆震的缺乏表明,使用此处描述的方法可以成功地将常规柴油发动机转换为NG SI操作。

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