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Modelling the effect of injection pressure on heat release parameters and nitrogen oxides in direct injection diesel engines

机译:模拟喷射压力对直喷柴油机放热参数和氮氧化物的影响

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Investigation and modelling the effect of injection pressure on heat release parameters and engine-out nitrogen oxides are the main aim of this study. A zero-dimensional and multi-zone cylinder model was developed for estimation of the effect of injection pressure rise on performance parameters of diesel engine. Double-Wiebe rate of heat release global model was used to describe fuel combustion. extended Zeldovich mechanism and partial equilibrium approach were used for modelling the formation of nitrogen oxides. Single cylinder, high pressure direct injection, electronically controlled, research engine bench was used for model calibration. 1000 and 1200 bars of fuel injection pressure were investigated while injection advance, injected fuel quantity and engine speed kept constant. The ignition delay of injected fuel reduced 0.4 crank angle with 1200 bars of injection pressure and similar effect observed in premixed combustion phase duration which reduced 0.2 crank angle. Rate of heat release of premixed combustion phase increased 1.75 % with 1200 bar injection pressure. Multi-zone cylinder model showed good agreement with experimental in-cylinder pressure data. Also it was seen that the NOx formation model greatly predicted the engine-out NOx emissions for both of the operation modes.
机译:研究和模拟喷射压力对放热参数和发动机排出的氮氧化物的影响是本研究的主要目的。建立了零维多区域气缸模型,用于估计喷射压力升高对柴油机性能参数的影响。 Double-Wiebe放热率全局模型用于描述燃料燃烧。扩展的Zeldovich机理和部分平衡方法用于模拟氮氧化物的形成。单缸,高压直喷,电控,研究性发动机台架用于模型校准。在进行喷油提前,喷油量和发动机转速保持恒定的同时,研究了1000和1200 bar的喷油压力。喷射燃料的点火延迟在1200 bar的喷射压力下降低了0.4曲柄角,并且在预混合燃烧阶段持续时间内观察到了类似的效果,从而降低了0.2曲柄角。在1200 bar的注入压力下,预混燃烧相的放热率提高了1.75%。多区域气缸模型与实验气缸内压力数据显示出良好的一致性。还可以看到,NOx形成模型极大地预测了两种操作模式的发动机排出的NOx排放量。

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