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Numerical analysis and modeling of plume meandering in passive scalar dispersion downstream of a wall-mounted cube

机译:壁挂式立方体下游被动标量弥散中羽流弯曲的数值分析和建模

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摘要

A DNS database is employed to examine the onset of plume meandering downstream of a wall-mounted cube and to address the impact of large-scale unsteadiness in modeling dispersion using the RANS equations. The cube is immersed in a uniform stream where the thin boundary-layer developing over the flat plate is responsible for the onset of vortex-shedding in the wake of the bluff-body. Spectra of velocity and concentration fluctuations exhibit a prominent peak in the energy content at the same frequency, showing that the plume meandering is established by the action of the vortex-shedding. The vortex-shedding and plume meandering display a low-frequency modulation where coherent fluctuations are suppressed at times with a quasi-regular period. The onset of the low-frequency modulation is indicated by a secondary peak in the energy spectrum and confirmed by the autocorrelation of velocity and scalar fluctuations. Unsteady RANS simulations performed with the v~2 - f model are able to detect the onset of the plume meandering and show remarkable improvement of the predicted decay rate and rate of spread of the scalar plume when compared to steady RANS solutions. By computing explicitly the periodic component of velocity and scalar fluctuations, the unsteady v~2 - f model is able to provide a representation of scalar flux components consistent with DNS statistics, where the counter-gradient transport mechanism that takes place in the streamwise component is also captured by URANS results. Nonetheless, the agreement with DNS statistics for the mean concentration and the plume width is limited by the onset of the low-frequency modulation in the vortex-shedding and plume meandering, giving a challenging modeling issue in the simulation of dispersion using the RANS equations.
机译:使用DNS数据库检查壁挂式立方体下游的羽状弯曲的发生,并解决在使用RANS方程对色散进行建模时大规模不稳定的影响。立方体浸入均匀的流中,其中在平板上形成的薄边界层负责在钝体之后产生涡流脱落。在相同的频率下,速度和浓度波动的频谱在能量含量中显示出一个显着的峰值,表明羽流蜿蜒是由涡流脱落的作用建立的。涡流和羽流弯曲显示出低频调制,其中相干波动有时以准规则周期被抑制。低频调制的开始由能量谱中的第二个峰值指示,并由速度和标量波动的自相关确认。与稳定的RANS解决方案相比,使用v〜2-f模型执行的非稳态RANS仿真能够检测羽状弯曲的开始,并显示出预测的衰减速率和标量羽状流扩散速率的显着改善。通过显式计算速度和标量波动的周期分量,非稳态v〜2-f模型能够提供与DNS统计数据一致的标量通量分量的表示,其中在流分量中发生的反梯度传输机制为也被URANS结果捕获。但是,与DNS统计数据有关的平均浓度和羽流宽度的协议受到涡流脱落和羽流弯曲过程中低频调制的开始的限制,这在使用RANS方程进行色散模拟时提出了一个具有挑战性的建模问题。

著录项

  • 来源
    《International Journal of Heat and Fluid Flow》 |2013年第10期|137-148|共12页
  • 作者

    R. Rossi; G.Iaccarino;

  • 作者单位

    Dipartimento di Ingegneria Industriale, Universita di Bologna, Viale Risorgimento 2, 40136 Bologna, Italy,Center for Turbulence Research, Department of Mechanical Engineering, Stanford University, 488 Escondido Mall, CA 94305, USA;

    Center for Turbulence Research, Department of Mechanical Engineering, Stanford University, 488 Escondido Mall, CA 94305, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Scalar dispersion; Vortex-shedding; Plume meandering; Low-frequency modulation; URANS;

    机译:标量色散;涡流脱落羽状蜿蜒;低频调制;乌兰斯;
  • 入库时间 2022-08-18 02:59:58

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