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Reactivity controlled compression ignition combustion on a multi-cylinder light-duty diesel engine

机译:多缸轻型柴油机上反应性控制的压燃燃烧

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Reactivity controlled compression ignition is a low-temperature combustion technique that has been shown, both in computational fluid dynamics modeling and single-cylinder experiments, to obtain diesel-like efficiency or better with ultra-low nitrogen oxide and soot emissions, while operating primarily on gasoline-like fuels. This paper investigates reactivity controlled compression ignition operation on a four-cylinder light-duty diesel engine with production-viable hardware using conventional gasoline and diesel fuel. Experimental results are presented over a wide speed and load range using a systematic approach for achieving successful steady-state reactivity controlled compression ignition combustion. The results demonstrated diesel-like efficiency or better over the operating range explored with low engine-out nitrogen oxide and soot emissions. A peak brake thermal efficiency of 39.0% was demonstrated for 2600 r/min and 6.9 bar brake mean effective pressure with nitrogen oxide emissions reduced by an order of magnitude compared to conventional diesel combustion operation. Reactivity controlled compression ignition emissions and efficiency results are compared to conventional diesel combustion operation on the same engine.
机译:反应性可控压燃是一种低温燃烧技术,已在计算流体动力学建模和单缸实验中得到了证明,它们在以低氮氧化物和碳烟排放为主要目标的条件下,可获得类似于柴油的效率或更高的效率。类汽油燃料。本文研究了具有可生产的硬件(使用常规汽油和柴油燃料)的四缸轻型柴油发动机的反应性受控压燃操作。使用系统方法在宽速度和负载范围内提供了实验结果,以实现成功的稳态反应性控制的压缩点火燃烧。结果表明,在较低的发动机排出的氮氧化物和烟尘排放量所探索的工作范围内,柴油效率类似或更高。与传统的柴油机燃烧操作相比,在2600 r / min的制动平均有效压力和6.9 bar的制动平均有效压力下,峰值制动热效率为39.0%,氮氧化物的排放量降低了一个数量级。将反应性控制的压缩点火排放和效率结果与同一发动机上的常规柴油机燃烧操作进行了比较。

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