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Effect of injection strategies for noise reduction during low temperature combustion-conventional diesel combustion mode transition in a heavy duty diesel engine

机译:重型柴油发动机低温燃烧 - 常规柴油机燃烧模式过渡噪声降低噪声的效果

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Low temperature combustion (LTC) in diesel engines was implemented to reduce nitrogen oxides (NOx) and particulate matter (PM) simultaneously. However, like other advanced combustion regimes LTC is still limited to low load operating range. Thus, mode transition to conventional diesel combustion (CDC) must be well achieved in order to cover the entire operation range. Not only power output from the engine, but also combustion noise level must be stabilized during mode transition, for driver comfort. In this study, a series of injection strategies was conducted in a heavy duty diesel engine to investigate their effect on power output and combustion noise level during mode transition. Results showed that for a smooth mode transition, a gradual nonlinear shift in injection timing and duration is beneficial. It was also found that for some cycles, injection duration should be dropped to a level below the starting and ending level to fine-tune the power output. The finally achieved injection strategy showed an improvement in stability, represented by the coefficient of variation (COV) of indicated mean effective pressure (IMEP). It was also found that the maximum pressure rise rate (MPRR) was suppressed, denoting that combustion noise was successfully reduced.
机译:实施柴油发动机的低温燃烧(LTC)以同时减少氮氧化物(NOx)和颗粒物质(PM)。然而,与其他先进的燃烧制度LTC一样,LTC仍然限于低负载工作范围。因此,必须良好地实现模式过渡到传统的柴油燃烧(CDC)以覆盖整个操作范围。不仅在发动机的电源输出,而且在模式过渡期间必须稳定燃烧噪声水平,用于驾驶员舒适性。在本研究中,在重型柴油发动机中进行了一系列注射策略,以研究模式转换期间对功率输出和燃烧噪声水平的影响。结果表明,对于平滑模式转换,注射时间和持续时间的逐渐非线性移位是有益的。还发现,对于某些循环,注射持续时间应落入到开始和结束水平以下的水平,以微调功率输出。最终实现的注射策略显示出稳定性的改善,由指示的平均有效压力(IMEP)的变异系数(COV)表示。还发现,抑制了最大压力上升速率(MPRR),表示成功降低了燃烧噪声。

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