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AN EXPERIMENTAL AND MODELING STUDY TO INVESTIGATE EFFECTS OF TWO-STAGE DIRECT INJECTION VARIATIONS ON HCCI COMBUSTION

机译:两阶段直接喷射变化对HCCI燃烧影响的实验和模型研究

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摘要

In this study, homogenous charge compression ignition (HCCI) combustion with two-stage direct injection (TSDI) strategies was modeled with stochastic reactor model (SRM) and validated by using the experimental results of the TSDI gasoline HCCI engine. For the experimental study, a diesel engine was converted to an electronically controlled HCCI gasoline engine. The effects of injection timings and injection ratios on the HCCI combustion characteristics were studied at high equivalence ratio and constant engine speed. The injection timings (first and second) and fuel quantity for each injection were adjusted to get desired mixture formation in the cylinder. During the experiments, the maximum cylinder gas pressure, pressure rise rate and start of combustion were directly controlled by using the second fuel injection timing and injection ratio. Using optimal second fuel injection timing and injection ratio caused a reduction on NOx and HC emissions. The model results of the HCCI combustion were in good agreement with the experimental results. Both of the experimental and modeling results showed that the second fuel injection timing had a strong effect on the HCCI combustion when compared to the first injection timing.
机译:在这项研究中,采用随机反应堆模型(SRM)对采用两阶段直接喷射(TSDI)策略的均质充量压缩点火(HCCI)燃烧进行建模,并使用TSDI汽油HCCI发动机的实验结果对其进行了验证。为了进行实验研究,将柴油发动机转换为电子控制的HCCI汽油发动机。研究了在高当量比和恒定发动机转速下,喷射正时和喷射比对HCCI燃烧特性的影响。调节每次喷射的喷射正时(第一和第二次)和燃油量,以在气缸中形成所需的混合物。在实验过程中,最大气缸气压,升压速率和燃烧开始都通过第二次燃料喷射正时和喷射比直接控制。使用最佳的第二次燃料喷射正时和喷射比可以减少NOx和HC排放。 HCCI燃烧的模型结果与实验结果非常吻合。实验和模型结果均表明,与第一次喷射正时相比,第二次燃料喷射正时对HCCI燃烧有很强的影响。

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