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Large-eddy simulation of in-cylinder flow in a DISI engine with charge motion control valve: Proper orthogonal decomposition analysis and cyclic variation

机译:带增压运动控制阀的DISI发动机缸内流动的大涡模拟:正确的正交分解分析和周期变化

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The application of the charge motion control valve is an effective and flexible way to reduce cycle-to-cycle variations (CCV) and improve engine performance. The objective of this research is to investigate the influence of the tumble flap (i.e., a specific type of charge motion control valve) placed in the intake port on the in-cylinder aerodynamics and CCV inside a non-reacting, direct injection spark ignition (DISI) engine by means of multi-cycle large-eddy simulation (LES) and proper orthogonal decomposition (POD). Extensive POD analyses involving the phase-dependent POD and phase-invariant POD were carried out. Furthermore, the POD quadrapole decomposition method was employed to gain more insight into the stochastic nature of in-cylinder flow. Results indicate that the tumble flap greatly affects the in-cylinder flow field and the first three subfields, but its effect on turbulent part is insignificant. With the closed tumble flap, more intense tumble motion, improved volumetric efficiency, increased energy portion of the mean part, decreased rate of energy decay, and reduced CCV could be achieved compared with the open tumble flap. It is also found that the phase-invariant POD is a useful tool to assess the effect of the tumble flap on the evolution characteristics. (C) 2014 Elsevier Ltd. All rights reserved.
机译:补油运动控制阀的应用是减少周期变化(CCV)和改善发动机性能的有效且灵活的方法。这项研究的目的是研究放置在进气口中的翻板襟翼(即特定类型的充气运动控制阀)对非反应性直接喷射火花点火内的缸内空气动力学和CCV的影响( DISI)引擎通过多周期大涡模拟(LES)和适当的正交分解(POD)进行。进行了广泛的POD分析,包括相依赖的POD和相不变的POD。此外,采用POD四极分解方法可以更深入地了解缸内流动的随机性。结果表明,翻转襟翼对缸内流场和前三个子场有很大影响,但对湍流部分的影响不明显。与打开的翻转襟翼相比,使用闭合的翻转襟翼,可以实现更剧烈的翻转运动,提高容积效率,增加平均部分的能量部分,降低能量衰减率,并降低CCV。还发现,相位不变的POD是评估滚筒襟翼对进化特性的影响的有用工具。 (C)2014 Elsevier Ltd.保留所有权利。

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