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On the turbulent heat transfer in a square duct subjected to spanwise system rotation

机译:关于翼展方向系统旋转下方管中的湍流传热

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In this paper, direct numerical simulation is performed to study the effects of the Coriolis force on turbulent heat transfer within a square duct subjected to spanwise system rotation. In order to investigate the influence of system rotation on the heat transfer process, a wide range of rotation numbers have been tested. In response to the system rotation, mean secondary flows appear as large streamwise counter-rotating vortices, which interact intensely with the four boundary layers of the square duct and have a significant impact on the statistics of the coupled velocity and temperature fields. It is observed that at a sufficiently high rotation number, heat convection approaches a complete laminarization state near the top and side walls. The influence of large organized secondary flows on the transport of the turbulent scalar energy of the temperature field has been analyzed in both physical and spectral spaces. The effects of system rotation on the turbulent heat fluxes have been examined through a budget analysis of their transport equations. The role of near-wall streamwise-elongated turbulence structures on heat transfer is studied using a linear stochastic estimation approach. It is observed that the near wall ejection events are amplified by the system rotation, resulting in a strong negatively-valued vertical turbulent heat flux in the near-wall region.
机译:在本文中,进行了直接数值模拟,以研究科里奥利力对受翼展方向系统旋转的方管内湍流传热的影响。为了研究系统旋转对传热过程的影响,已经测试了多种旋转数。响应系统旋转,平均二次流表现为大的逆流涡流,它们与方管的四个边界层强烈相互作用,并对耦合速度和温度场的统计产生重大影响。观察到,在足够高的转数下,热对流在顶壁和侧壁附近接近完全层化状态。在物理空间和光谱空间中,都分析了大型有组织的二次流对温度场湍流标量能量传输的影响。通过对系统的输运方程进行预算分析,研究了系统旋转对湍流热通量的影响。利用线性随机估计方法研究了近壁湍流湍流结构在传热中的作用。可以观察到,近壁喷射事件通过系统旋转而放大,从而在近壁区域产生强烈的负值垂直湍流热通量。

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