Comparative analysis of drag reduction characteristics of two-type riblets based on numerical simulation

Turbulent drag reduction has always been a hot issue in fluid mechanics. Among various turbulent drag reduction methods, riblets has attracted wide attention due to its simple structure and convenient application. In order to investigate the effect of the riblets shape on the drag reduction, the eff...

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Main Authors: DU Shuya, SANG Weimin, PANG Run
Format: Article
Language:zho
Published: EDP Sciences 2022-04-01
Series:Xibei Gongye Daxue Xuebao
Subjects:
Online Access:https://www.jnwpu.org/articles/jnwpu/full_html/2022/02/jnwpu2022402p261/jnwpu2022402p261.html
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author DU Shuya
SANG Weimin
PANG Run
author_facet DU Shuya
SANG Weimin
PANG Run
author_sort DU Shuya
collection DOAJ
description Turbulent drag reduction has always been a hot issue in fluid mechanics. Among various turbulent drag reduction methods, riblets has attracted wide attention due to its simple structure and convenient application. In order to investigate the effect of the riblets shape on the drag reduction, the effect of the triangular and trapezoidal riblets on the turbulent boundary layer flow field and drag reduction characteristics has been studied numerically by adopting the CFD method and based on the large eddy simulation (LES). The numerical simulation of turbulent channel flow was conducted by RANS, DES and LES methods respectively, and their results were compared with the results of direct numerical simulation (DNS) to verify the accuracy and feasibility of the large eddy simulation method. According to the experimental results in references, the flow field parameters such as integral statistics, first-order statistics and second-order statistics of the triangular and trapezoidal riblets on the turbulent boundary layer flow fields were compared and analyzed. The drag reduction characteristics of two-type riblets were investigated by studying the variation in physical parameters such as drag reduction rate, time-averaged velocity, root mean square velocity fluctuation, shear stress, turbulent kinetic energy generation and contour of spanwise velocity fluctuation, and it was concluded that the trapezoidal riblets have better drag reduction effect than the triangular riblets under the same dimensionless condition.
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spelling doaj.art-60dffa027bc54572b38e430cc0151bfd2023-12-03T06:25:20ZzhoEDP SciencesXibei Gongye Daxue Xuebao1000-27582609-71252022-04-0140226127010.1051/jnwpu/20224020261jnwpu2022402p261Comparative analysis of drag reduction characteristics of two-type riblets based on numerical simulationDU Shuya0SANG Weimin1PANG Run2School of Aeronautics, Northwestern Polytechnical UniversitySchool of Aeronautics, Northwestern Polytechnical UniversityAVIC Xi’an Flight Automatic Control Research InstituteTurbulent drag reduction has always been a hot issue in fluid mechanics. Among various turbulent drag reduction methods, riblets has attracted wide attention due to its simple structure and convenient application. In order to investigate the effect of the riblets shape on the drag reduction, the effect of the triangular and trapezoidal riblets on the turbulent boundary layer flow field and drag reduction characteristics has been studied numerically by adopting the CFD method and based on the large eddy simulation (LES). The numerical simulation of turbulent channel flow was conducted by RANS, DES and LES methods respectively, and their results were compared with the results of direct numerical simulation (DNS) to verify the accuracy and feasibility of the large eddy simulation method. According to the experimental results in references, the flow field parameters such as integral statistics, first-order statistics and second-order statistics of the triangular and trapezoidal riblets on the turbulent boundary layer flow fields were compared and analyzed. The drag reduction characteristics of two-type riblets were investigated by studying the variation in physical parameters such as drag reduction rate, time-averaged velocity, root mean square velocity fluctuation, shear stress, turbulent kinetic energy generation and contour of spanwise velocity fluctuation, and it was concluded that the trapezoidal riblets have better drag reduction effect than the triangular riblets under the same dimensionless condition.https://www.jnwpu.org/articles/jnwpu/full_html/2022/02/jnwpu2022402p261/jnwpu2022402p261.htmlturbulent drag reductionlarge eddy simulation methodturbulent boundary layer flowriblets
spellingShingle DU Shuya
SANG Weimin
PANG Run
Comparative analysis of drag reduction characteristics of two-type riblets based on numerical simulation
Xibei Gongye Daxue Xuebao
turbulent drag reduction
large eddy simulation method
turbulent boundary layer flow
riblets
title Comparative analysis of drag reduction characteristics of two-type riblets based on numerical simulation
title_full Comparative analysis of drag reduction characteristics of two-type riblets based on numerical simulation
title_fullStr Comparative analysis of drag reduction characteristics of two-type riblets based on numerical simulation
title_full_unstemmed Comparative analysis of drag reduction characteristics of two-type riblets based on numerical simulation
title_short Comparative analysis of drag reduction characteristics of two-type riblets based on numerical simulation
title_sort comparative analysis of drag reduction characteristics of two type riblets based on numerical simulation
topic turbulent drag reduction
large eddy simulation method
turbulent boundary layer flow
riblets
url https://www.jnwpu.org/articles/jnwpu/full_html/2022/02/jnwpu2022402p261/jnwpu2022402p261.html
work_keys_str_mv AT dushuya comparativeanalysisofdragreductioncharacteristicsoftwotyperibletsbasedonnumericalsimulation
AT sangweimin comparativeanalysisofdragreductioncharacteristicsoftwotyperibletsbasedonnumericalsimulation
AT pangrun comparativeanalysisofdragreductioncharacteristicsoftwotyperibletsbasedonnumericalsimulation