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Large eddy simulations of jet/tumble interaction in a GDI model engine flow

机译:GDI模型引擎流动中喷射/翻滚互动的大型涡流模拟

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Fluid dynamics are essential mechanisms in the performance of internal combustion engines. This work proposes a study of the interaction between a direct injection jet and surrounding tumbling motion in a model Gasoline Direct Injection (GDI) engine chamber using single phase Large Eddy Simulation (LES). Simulations have been performed with the AVBP code which has a "cell-vertex" discretization associated with a Two-step Taylor Galerkin (TTGC) scheme and a Wall Adapting Local Eddy viscosity model. In order to explore the suitability of the 3D LES to simulate the internal flow, the calculation is performed for an idealistic tumbling flow at constant volume. An experimental setup has been designed and measurements are used to initiate and to validate calculations. A gaseous jet representative of the momentum of the real multiphase GDI engine is directly injected in a square chamber. Several initial conditions using Proper Orthogonal Decomposition (POD) analysis are used in order to estimate cycle to cycle variability and two injection strategies are discussed: firstly, a straight jet that competes with tumble; secondly, an inclined jet that adds momentum to the tumbling motion. Satisfactory evolution of the numerical results compared with experiments is found. 3D calculations show that the injection strongly modifies the initial rotating structure. The vorticity tube of this initial tumbling flow is deformed in the injection direction. LES results are compared to PIV measurements. This provides a deeper understanding of the 3D flow transition. Cycle-to-cycle variations are demonstrated to be of primary importance.
机译:流体动力学是内燃机性能的必要机制。这项工作提出了使用单相大涡流模拟(LES)在模型汽油直喷(GDI)发动机室中直接喷射射流和周围翻滚运动之间的相互作用的研究。已经使用AVBP代码进行了模拟,该AVBP代码具有与两步泰勒加勒瓜(TTGC)方案相关联的“单元顶点”离散化,以及适应局部涡粘度模型的壁。为了探讨3D LES模拟内部流量的适用性,对恒定体积的理想性翻滚流进行计算。设计了实验设置,使用测量来启动和验证计算。代表真实多相GDI发动机的动量的气体射流直接注入方形室中。使用适当正交分解(POD)分析的几个初始条件用于估计周期以循环变异性,并且讨论了两个注射策略:首先,一款与翻滚竞争的直喷;其次,将动量增加到翻滚运动的倾斜射流。发现与实验相比的数值结果的令人满意的演变。 3D计算表明,注射强烈地改变了初始旋转结构。该初始翻滚流的涡度管在注射方向上变形。 LES结果与PIV测量相比。这提供了对3D流过渡的更深入的了解。循环到循环变化被证明是主要的重要性。

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