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A numerical study of the fluid flow and heat transfer around a single row of tubes in a channel using immerse boundary method

机译:浸入边界法数值模拟通道内单排管周围的流体流动和传热

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The analysis of the time-dependent and two-dimensional fluid flow and heat transfer around a single row of tubes in a channel is performed numerically. Due to its fundamental significance and practical importance, aerodynamic and heat transfer characteristics of tube bundle have been paid great attention by many researchers. In the present study, the immersed boundary method is applied by using a Cartesian grid system. Numerical solution for the governing equations of mass, momentum and energy conservation is obtained with the finite volume method. To validate the numerical approach with the immersed boundary method, the results have been compared with published data. The generation and evolution of vortical structures, wake interactions and their effects on the drag, lift and heat transfer are analyzed at different Reynolds numbers. The effect of hydraulic boundary layer development on the fluid flow and heat transfer is also investigated.
机译:对通道中单排管周围随时间变化的二维流体流动和传热进行了分析。由于其基本意义和实际重要性,管束的空气动力学和传热特性已引起许多研究者的关注。在本研究中,通过使用笛卡尔网格系统来应用浸入边界方法。用有限体积法得到了质量,动量和能量守恒控制方程的数值解。为了验证采用浸入边界法的数值方法,已将结果与公开数据进行了比较。在不同的雷诺数下分析了涡旋结构的产生和演化,尾流相互作用及其对阻力,升力和热传递的影响。还研究了水力边界层发展对流体流动和传热的影响。

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