Roughness Effect on the Flow Past Axisymmetric Bodies at High Incidence

被引:2
|
作者
Jimenez-Varona, Jose [1 ]
Liano, Gabriel [1 ]
Castillo, Jose L. [2 ]
Garcia-Ybarra, Pedro L. [2 ]
机构
[1] INTA, Aerodynam Lab, Flight Phys Dept, Crtra, Ajalvir Km 4,5, Madrid 28850, Spain
[2] Univ Nacl Educ Distancia, Fac Sci, Avda Esparta S-N, Madrid 28232, Spain
关键词
roughness; vortex shedding; asymmetric flow; CFD; grids; scale adaptive simulation;
D O I
10.3390/aerospace9110668
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
The flow at low Mach numbers and high angles of attack over axisymmetric configurations is not symmetric. The mechanism that triggers the asymmetry is a combination of a global (temporal) instability and a convective (spatial) instability. This latter instability is caused by roughness and other geometrical imperfections, which lead to roll angle dependent forces. The flow at these conditions has a complex vortex sheet structure, with two or three different flow regions. An accurate simulation by means of Computational Flow Dynamics (CFD) is thus very challenging, and many researchers have therefore employed Large Eddy Simulation (LES) codes. This study demonstrates that Unsteady Reynolds Averaged Navier-Stokes (URANS) methods are a suitable alternative, if Scale Adaptive Simulation (SAS) is used. This method is capable of capturing the main flow features, provided that fine meshes, which achieve geometrical similarity between the meshed geometry and the real object, and small-time steps are used. It is also demonstrated that, by using URANS methods in combination with SAS, strong differences in the global and local forces depending on the surface roughness of the model are obtained, a result which coincides with several wind tunnel tests.
引用
收藏
页数:21
相关论文
共 50 条
  • [21] Fractal characteristics of surface roughness and its effect on laminar flow in microchannels
    Zhang Cheng-Bin
    Chen Yong-Ping
    Shi Ming-Heng
    Fu Pan-Pan
    Wu Jia-Feng
    ACTA PHYSICA SINICA, 2009, 58 (10) : 7050 - 7056
  • [22] Jet-wake flow in the channel of impeller and the effect of surface roughness on it
    Zhao, Binjuan
    Wang, Yu
    Chen, Huilong
    Hou, Duohua
    Qiu, Jing
    Nongye Jixie Xuebao/Transactions of the Chinese Society for Agricultural Machinery, 2014, 45 (09): : 138 - 143
  • [23] Investigation of the roughness effect on flow behavior and heat transfer characteristics in microchannels
    Liu, Yangpeng
    Xu, Guoqiang
    Sun, Jining
    Li, Haiwang
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2015, 83 : 11 - 20
  • [24] CFD to VorTECH Pressure-Field Comparison and Roughness Effect on Flow
    Verma, Sumit
    Selvam, R. Panneer
    JOURNAL OF STRUCTURAL ENGINEERING, 2020, 146 (09)
  • [25] Combined effect of roughness and suction on heat transfer in a laminar channel flow
    Khezerloo, Marzieh
    Djenidi, Lyazid
    Tardu, Sedat
    INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER, 2021, 126
  • [26] Flow Characteristics of the Entrance Region with Roughness Effect within Rectangular Microchannels
    Li, Haiwang
    Li, Yujia
    Huang, Binghuan
    Xu, Tiantong
    MICROMACHINES, 2020, 11 (01)
  • [27] High Reynolds number turbulent flow past a rotating cylinder
    Karabelas, S. J.
    Koumroglou, B. C.
    Argyropoulos, C. D.
    Markatos, N. C.
    APPLIED MATHEMATICAL MODELLING, 2012, 36 (01) : 379 - 398
  • [28] High Order Accurate Solution of Flow Past a Circular Cylinder
    Erik Stålberg
    Arnim Brüger
    Per Lötstedt
    Arne V. Johansson
    Dan S. Henningson
    Journal of Scientific Computing, 2006, 27 : 431 - 441
  • [29] High order accurate solution of flow past a circular cylinder
    Stalberg, Erik
    Bruger, Arnim
    Lotstedt, Per
    Johansson, Arne V.
    Henningson, Dan S.
    JOURNAL OF SCIENTIFIC COMPUTING, 2006, 27 (1-3) : 431 - 441
  • [30] Numerical Study on Effect of Sinusoidal Roughness Pattern on Fluid Flow through Microchannels
    Siddharth, R.
    Jayadevan, P. C.
    Kamath, Pradeep M.
    2017 INTERNATIONAL CONFERENCE ON INNOVATIONS IN INFORMATION, EMBEDDED AND COMMUNICATION SYSTEMS (ICIIECS), 2017,