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Finite element analysis of laminar and turbulent flows using LES and subgrid-scale models

机译:使用LES和亚网格规模模型的层流和湍流的有限元分析

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摘要

Numerical simulations of laminar and turbulent flows in a lid driven cavity and over a backward-facing step are presented in this work. The main objectives of this research are to know more about the structure of turbulent flows, to identify their three-dimensional characteristic and to study physical effects due to heat transfer. The filtered Navier–Stokes equations are used to simulate large scales, however they are supplemented by subgrid-scale (SGS) models to simulate the energy transfer from large scales toward subgridscales,where this energy will be dissipated by molecular viscosity. Two SGS models are applied: the classical Smagorinsky s model and the Dynamic model for large eddy simulation (LES). Both models are implemented in a three-dimensional finite element code using linear tetrahedral elements. Qualitative and quantitative aspects of two and three-dimensional flows in a lid-driven cavity and over a backward-facing step, using LES, are analyzed comparing numerical and experimental results obtained by other authors.
机译:在这项工作中,提出了在盖驱动的腔体中以及朝后的台阶上的层流和湍流的数值模拟。这项研究的主要目的是更多地了解湍流的结构,确定其三维特征并研究由于热传递引起的物理效应。滤波后的Navier–Stokes方程用于模拟大尺度,但是通过子网格尺度(SGS)模型对其进行了补充,以模拟从大尺度向子网格尺度的能量转移,其中该能量将通过分子黏度消散。应用了两种SGS模型:经典Smagorinsky s模型和大涡模拟(LES)的Dynamic模型。两种模型都使用线性四面体元素在三维有限元代码中实现。使用LES分析了盖驱动腔内和朝后步骤中二维和三维流动的定性和定量方面,比较了其他作者获得的数值和实验结果。

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