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Large-eddy simulation on unstructured deforming meshes: towards reciprocating IC engines

机译:非结构化变形网格的大涡模拟:面向往复式内燃机

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A variable explicit/implicit characteristics-based advection scheme that is second-order accurate in space and time has been developed recently for unstructured deforming meshes (O'Rourke PJ, Sahota MS. A variable explicit/implicit numerical method for calculating advection on unstructured meshes. J Comput Phys 1998;142:312 45). To explore the suitability of this methodology for large-eddy simulation (LES) in reciprocating internal combustion engines, three subgrid-scale turbulence models have been implemented: a constant-coefficient Smagorinsky model, a dynamic Smagorinsky model for flows having one or more directions of statistical homogeneity, and a Lagrangian dynamic Smagorinsky model for flows having no spatial or temporal homogeneity (Menevean C, Lund TS, Cabot WH. A Lagrangian dynamic subgrid-scale model of turbulence. J Fluid Mech l996;3l9:353-85). Quantitative results are presented for three canonical flows (decaying homogeneous isotropic turbulence, non-solenoidal linear strains of homogeneous turbulence, planar channel flow) and for a simplified piston-cylinder assembly with moving piston and fixed central valve. Computations are compared to experimental measurements, to direct-numerical simulation data, and to rapid-distortion theory where appropriate. Generally satisfactory evolution of first, second, and some higher order moments is found. Computed mean and rms velocity profiles for the piston-cylinder configuration show better agreement with measurements than Reynolds-averaged turbulence models. These results demonstrate the suitability of this methodology for engineering LES, and the feasibility of LES for computing IC engine flows.
机译:最近,针对非结构化变形网格(O'Rourke PJ,Sahota MS),开发了一种基于时空/时间二阶精确度的基于变量显式/隐式特性的平流方案。 J Comput Phys 1998; 142:312 45)。为了探索这种方法在往复式内燃机中对大涡模拟(LES)的适用性,已实现了三种亚网格规模的湍流模型:恒定系数Smagorinsky模型,动态Smagorinsky模型用于具有一个或多个方向的流动统计同质性,以及不具有空间或时间同质性的流的拉格朗日动态Smagorinsky模型(Menevean C,Lund TS,Cabot WH。湍流的拉格朗日动态亚网格规模模型,J流体力学1996; 3l9:353-85)。给出了三个规范流的定量结果(衰减均质各向同性湍流,均质湍流的非电磁线性应变,平面通道流)以及简化的具有活动活塞和固定中心阀的活塞-气缸组件。在适当的情况下,将计算与实验测量,直接数值模拟数据以及快速失真理论进行比较。一阶,二阶和一些高阶矩的总体令人满意的演化被发现。与雷诺平均湍流模型相比,计算得出的活塞-气缸配置的平均速度和均方根速度曲线与测量值具有更好的一致性。这些结果证明了该方法对工程LES的适用性,以及LES用于计算IC发动机流量的可行性。

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