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Contributions of different scales of turbulent motions to the mean wall-shear stress in open channel flows at low-to-moderate Reynolds numbers

机译:在低于中度雷诺数的开放通道中平均壁剪切应力的不同尺度的贡献

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摘要

Smooth-walled open channel flow datasets, covering both the direct numerical simulation and experimental measurements with a friction Reynolds number Re-tau at a low-to-moderate level of 550 similar to 2400, are adopted to investigate the contributions of different scale motions to the mean wall-shear stress in open channel flows (OCFs). The FIK identity decomposition method by Fukagata et al. (Phys. Fluids, vol. 14, 2002, L73) combined with a scale decomposition is chosen for this research. To see whether/how the contributions in OCFs differ with those in closed channel flows (CCFs), comparisons between the two flows are also made. The scale-decomposed 'turbulent' contribution results of present OCFs exhibit two dominant contribution modes (i.e. large-scale motions (LSMs) and very-large-scale motions (VLSMs)) at a streamwise wavelength lambda(x) = 1 similar to 2h and O(10h), where h is the water depth. The large scales with lambda(x) > 3h and lambda(x) > 10h are demonstrated to contribute to over 40% and 20% of the mean wall-shear stress, respectively. Compared with CCFs, slightly higher and lower contributions in the lambda(x) > O(10h) and lambda(x) < O(10h) wavelength ranges are observed in OCFs, revealing the important free-surface effects in OCFs. Possible mechanisms are discussed to lend support for the observed differences between the two flows.
机译:采用光滑壁明渠流数据集,包括直接数值模拟和实验测量,摩擦雷诺数Re tau在550(类似于2400)的中低水平,以研究不同尺度运动对明渠流(OCF)中平均壁面剪应力的贡献。本研究选择了Fukagata等人(Phys.Fluids,vol.14,2002,L73)提出的FIK身份分解方法与尺度分解相结合。为了了解OCF中的贡献是否/如何与封闭通道流(CCF)中的不同,还对这两种流进行了比较。当前OCF的尺度分解“湍流”贡献结果显示了两种主要贡献模式(即大尺度运动(LSM)和超大尺度运动(VLSM)),其流向波长λ(x)=1类似于2h和O(10h),其中h是水深。lambda(x)>3h和lambda(x)>10h的大尺度分别对平均壁面剪应力的贡献超过40%和20%。与共聚焦光纤相比,OCF在lambda(x)>O(10h)和lambda(x)

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  • 来源
    《Journal of Fluid Mechanics》 |2021年第1期|共28页
  • 作者单位

    Tsinghua Univ State Key Lab Hydrosci &

    Engn Beijing 100084 Peoples R China;

    China Agr Univ Coll Water Resources &

    Civil Engn Beijing 100083 Peoples R China;

    Univ Twente Phys Fluids Grp POB 217 NL-7500 AE Enschede Netherlands;

    Chongqing Jiaotong Univ Natl Engn Res Ctr Inland Waterway Regulat Chongqing 400074 Peoples R China;

    Tsinghua Univ State Key Lab Hydrosci &

    Engn Beijing 100084 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 流体力学;
  • 关键词

    turbulent boundary layers; channel flow;

    机译:湍流边界层;通道流动;

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