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首页> 外文期刊>Energy >Study of mixture formation and early flame development in a research GDI (gasoline direct injection) engine through numerical simulation and UV-digital imaging
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Study of mixture formation and early flame development in a research GDI (gasoline direct injection) engine through numerical simulation and UV-digital imaging

机译:通过数值模拟和UV数字成像研究GDI(汽油直喷)发动机中的混合物形成和早期火焰发展

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The analysis of the mixture formation and early combustion processes in a slightly lean burn gasoline direct injection (GDI) engine is performed by using experimental and numerical techniques. UV-visible natural emission digital imaging is applied in the optically accessible combustion chamber of a research engine. This is equipped with the four-valve head and the same injection system of a commercial turbocharged engine. Optical accessibility is obtained through a quartz window placed on the piston head. Numerical simulations are performed by means of a 3D model developed within the AVL Fire™ environment, which exploits an in-house developed sub-model for simulating the spray dynamics. Tests are carried out using commercial gasoline. The cyclic variability of the engine is first analysed in order to properly define a reference average pressure cycle to be used for the validation of the numerical model. This last is then proved as being highly predictive as the start of injection is moved in the working cycle. The main effects of the injection and ignition timing on the characteristic flame development angles, namely on the flame initiation and propagation, are analysed. Flame initiation is visualised both numerically and experimentally.
机译:通过使用实验和数值技术,对轻度稀薄汽油直喷(GDI)发动机中的混合气形成和早期燃烧过程进行了分析。紫外可见自然发射数字成像技术应用于研究型发动机的光学可接近燃烧室。它配备了四气门头和商用涡轮增压发动机的相同喷射系统。通过放置在活塞头上的石英窗可获得光学可及性。数值模拟是通过在AVL Fire™环境中开发的3D模型执行的,该模型利用内部开发的子模型来模拟喷雾动力学。使用商用汽油进行测试。首先分析发动机的循环可变性,以正确定义要用于数值模型验证的参考平均压力循环。然后证明,随着注射开始在工作周期中的移动,该最后一步具有很高的预测性。分析了喷射和点火正时对特征火焰发展角的主要影响,即对火焰起爆和传播的主要影响。火焰萌生在数值和实验上都可以看到。

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