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Numerical study of the flow field characteristics over a backward facing step using k-kl-co turbulence model: comparison with different models

机译:使用k-kl-co湍流模型的后向台阶流场特性的数值研究:与不同模型的比较

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摘要

Purpose - This paper aims to investigate numerically the turbulent flow characteristics over a backward facing step. Different turbulence models with hybrid computational grid have been used to study the detached flow structure in this case. Comparison between the numerical results and the available experiment data is carried out in the present study. The results of the different turbulence models were in a good agreement with the experimental results. The numerical results also concluded that the k-kl-ω turbulence model gave favorable results compared with the experiment. Design/methodology/approach - It is very important to study the flow characteristics of detached flows. Therefore, the current study investigates numerically the flow characteristics in backward facing step by using two-, three- and seven-equation turbulence models in the finite volume code ANSYS Fluent. In addition, hybrid grid has been used to improve the capability of the unstructured mesh elements for predicting the flow separation in this case. Comparison between the different turbulence models and the available experimental data was done to find the most suitable turbulence model for simulating such cases of detached flows. Findings - The present numerical simulations with the different turbulence models predicted efficiently the flow characteristics over the backward facing step. The transition k-kl-ω gave the best acceptable results compared with experimental data. This is a good concluded remark in the fields of fluid mechanics and hydrodynamics because the phenomenon of flow separation is not easy to be predicted numerically and can affect greatly on the predicted drag of moving bodies in many engineering applications. Originality/value - The CFD results of using different turbulence models have been validated with the experimental work, and the results of k-kl-ω proven acceptable with flow characteristics. The results of the current study conclude that the use of k-kl-ω turbulence model will contribute towards a more efficient utilization in the fields of fluid mechanics and hydrodynamics.
机译:目的-本文旨在通过数值研究后向步骤中的湍流特性。在这种情况下,已经使用具有混合计算网格的不同湍流模型来研究分离的流动结构。在本研究中进行了数值结果和可用的实验数据之间的比较。不同湍流模型的结果与实验结果吻合良好。数值结果还表明,与实验相比,k-kl-ω湍流模型给出了令人满意的结果。设计/方法/方法-研究分离流的流动特性非常重要。因此,当前的研究通过在有限体积代码ANSYS Fluent中使用二,三和七方程湍流模型对后向流动的流动特性进行了数值研究。此外,在这种情况下,混合网格已用于提高非结构化网格元素预测流分离的能力。比较了不同的湍流模型和可用的实验数据,以找到最合适的湍流模型来模拟这种分离流动的情况。研究结果-使用不同湍流模型的当前数值模拟有效地预测了朝后步骤的流动特性。与实验数据相比,跃迁k-kl-ω给出了最佳的可接受结果。这是在流体力学和流体力学领域的一个很好的结论,因为在许多工程应用中,流分离现象不容易用数字来预测,并且会大大影响运动体的预测阻力。原创性/价值-使用不同湍流模型的CFD结果已经通过实验工作进行了验证,并且k-kl-ω的结果被证明具有流动特性。当前研究的结果得出结论,使用k-kl-ω湍流模型将有助于在流体力学和流体动力学领域中更有效地利用。

著录项

  • 来源
    《Military operations research》 |2018年第1期|173-180|共8页
  • 作者

    Yasser M. Ahmed; A.H. Elbatran;

  • 作者单位

    Department of Naval Architecture and Marine Engineering, Faculty of Engineering, Alexandria University, Alexandria, Egypt;

    Department of Marine Engineering, Faculty of Engineering and Technology, Arab Academy for Science and Technology and Maritime Transport, Alexandria, Egypt;

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

    RSM; Turbulence model; Backward facing step; k-kl-w; SST;

    机译:RSM;湍流模型向后的步骤;k-kl-w;SST;

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