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Investigation of drag crisis phenomenon using CFD methods

机译:使用CFD方法调查阻力危机现象

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摘要

When fluid flow passes a cylinder, the drag crisis phenomenon occurs between the sub-critical and the super-critical Reynolds numbers. The focus of the present studies was on the numerical prediction of the drag crisis based on CFD methods. In this work, block structured meshes with refined grids near the cylinder surface and in the downstream were employed. Both 2D and 3D simulations were performed using various turbulence models, including the SST k-omega model, the k-epsilon model, the SST with LCTM, the DES model, and the LES model. In the convergence studies, the effects of the grid size, the time step, the first grid size and the aspect ratio (for 3D simulations) on the solutions were examined. The errors due to spatial and time discretizations were quantified according to a V&V procedure. Validation studies were carried out for various Reynolds numbers between Re = 6.31 x 10(4) and 7.57 x 10(5). The averaged drag force, the RMS of lift force and the Strouhal number were compared with experimental data. The studies indicated that standard 2D and 3D RANS methods were inadequate to capture the drag crisis phenomenon. The LES method however has the potential to address the problem. (C) 2017 Elsevier Ltd. All rights reserved.
机译:当流体流量通过气缸时,亚临界和超临界雷诺数之间发生阻力危机现象。本研究的重点是基于CFD方法的阻力危机的数值预测。在这项工作中,采用缸体表面和下游附近的具有精制网格的结构化网格。使用各种湍流模型进行2D和3D模拟,包括SST K-OMEGA模型,K-EPSILON模型,具有LCTM,DES模型和LES模型的SST。在收敛研究中,研究了网格尺寸,时间步长,第一网格尺寸和纵横比(用于3D模拟)的效果。根据V&V程序量化了由于空间和时间离散化引起的误差。在RE = 6.31×10(4)和7.57×10(5)之间的各种雷诺数进行验证研究。平均阻力,升力和斯特鲁姆数量的牵引力与实验数据进行了比较。研究表明,标准的2D和3D RAN方法不足以捕捉阻力危机现象。然而,LES方法有可能解决问题。 (c)2017 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Applied Ocean Research》 |2017年第2017期|共16页
  • 作者

    Wen Peng; Qiu Wei;

  • 作者单位

    Mem Univ Newfoundland Dept Ocean &

    Naval Architectural Engn Adv Marine Hydrodynam Lab St John NF Canada;

    Mem Univ Newfoundland Dept Ocean &

    Naval Architectural Engn Adv Marine Hydrodynam Lab St John NF Canada;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 海洋学;
  • 关键词

    Drag crisis; CFD; Turbulence modeling; RANS; DES; LES;

    机译:拖累危机;CFD;湍流建模;rans;des;les;

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