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Lattice Boltzmann simulations of heat transfer in fully developed periodic incompressible flows

机译:格子Boltzmann在完全发展的周期性不可压缩流动中的传热模拟

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摘要

Flow and heat transfer in periodic structures are of great interest for many applications. In this paper, we carefully examine the periodic features of fully developed periodic incompressible thermal flows, and incorporate them in the lattice Boltzmann method (LBM) for flow and heat transfer simulations. Two numerical approaches, the distribution modification (DM) approach and the source term (ST) approach, are proposed; and they can both be used for periodic thermal flows with constant wall temperature (CWT) and surface heat flux boundary conditions. However, the DM approach might be more efficient, especially for CWT systems since the ST approach requires calculations of the streamwise temperature gradient at all lattice nodes. Several example simulations are conducted, including flows through flat and wavy channels and flows through a square array with circular cylinders. Results are compared to analytical solutions, previous studies, and our own LBM calculations using different simulation techniques (i.e., the one-module simulation vs. the two-module simulation, and the DM approach vs. the ST approach) with good agreement. These simple, however, representative simulations demonstrate the accuracy and usefulness of our proposed LBM methods for future thermal periodic flow simulations.
机译:周期性结构的流动和热传递对许多应用具有很大的兴趣。在本文中,我们仔细检查了完全发育的周期性不可压缩热流的周期性特征,并将它们纳入晶格Boltzmann方法(LBM),用于流动和传热模拟。提出了两种数值方法,分布修改(DM)方法和源期(ST)方法;它们都可以用于具有恒定壁温(CWT)和表面热通量边界条件的周期性热流。然而,DM方法可能更有效,特别是对于CWT系统,因为ST方法需要计算所有晶格节点的流动温度梯度。进行了几个示例模拟,包括流过平坦的和波浪通道,并流过具有圆柱形的方形阵列。结果与分析解决方案,先前的研究和我们自己的LBM计算进行了比较,使用不同的仿真技术(即,单模仿真与双模拟模拟和DM方法与ST接近)进行了良好的协议。然而,这些简单的代表性仿真展示了我们提出的LBM方法,用于将来的热周期流动模拟所提出的LBM方法的准确性和有用性。

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  • 来源
    《PHYSICAL REVIEW E》 |2017年第6期|063309.1-063309.13|共13页
  • 作者单位

    Bharti School of Engineering Laurentian University 935 Ramsey Lake Road Sudbury Ontario Canada P3E 2C6;

    Bharti School of Engineering Laurentian University 935 Ramsey Lake Road Sudbury Ontario Canada P3E 2C6;

    Bharti School of Engineering Laurentian University 935 Ramsey Lake Road Sudbury Ontario Canada P3E 2C6;

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