Modified algebraic model of laminar-turbulent transition for internal flows

被引:2
|
作者
Nering, Konrad [1 ]
Rup, Kazimierz [2 ]
机构
[1] Politechn Krakowska Tadeusza Kosciuszki, Fac Mech Engn, Krakow, Malopolska, Poland
[2] Politechn Krakowska Tadeusza Kosciuszki, Fac Mech Engn, Chair Fluid Mech, Krakow, Malopolska, Poland
关键词
CFD; OpenFOAM; HEAT-TRANSFER; INTERMITTENT; BREAKDOWN; VELOCITY;
D O I
10.1108/HFF-10-2018-0597
中图分类号
O414.1 [热力学];
学科分类号
摘要
Purpose For internal flows with small values of the Reynolds number, there is often at a considerable distance from the pipe inlet cross-section a change of the flow form from laminar to turbulent. To describe this phenomenon of laminar-turbulent transition in the pipe, also parallel-plate channel flow, a modified algebraic intermittency model was used. The original model for bypass transition developed by S. Kubacki and E. Dick was designed for simulating bypass transition in turbomachinery. Design/methodology/approach A modification of mentioned model was proposed. Modified model is suitable for simulating internal flows in pipes and parallel-plate channels. Implementation of the modified model was made using the OpenFOAM framework. Values of several constants of the original model were modified. Findings For selected Reynolds numbers and turbulence intensities (Tu), localization of laminar breakdown and fully turbulent flow was presented. Results obtained in this work were compared with corresponding experimental results available in the literature. It is particularly worth noting that asymptotic values of wall shear stress in flow channels and asymptotic values of axis velocity obtained during simulations are similar to related experimental and theoretical results. Originality/value The modified model allows precision numerical simulation in the area of transitional flow between laminar, intermittent and turbulent flows in pipes and parallel-plate channels. Proposed modified algebraic intermittency model presented in this work is described by a set of two additional partial differential equations corresponding with k-omega turbulence model presented by Wilcox (Wilcox, 2006).
引用
收藏
页码:1743 / 1753
页数:11
相关论文
共 50 条
  • [31] Laminar-turbulent transition in pipe flow
    Nieuwstadt, FTM
    Draad, AA
    Kuiken, GDC
    [J]. ADVANCES IN TURBULENCES VI, 1996, 36 : 371 - 374
  • [32] The laminar-turbulent transition in a fibre laser
    Turitsyna, E. G.
    Smirnov, S. V.
    Sugavanam, S.
    Tarasov, N.
    Shu, X.
    Babin, S. A.
    Podivilov, E. V.
    Churkin, D. V.
    Falkovich, G.
    Turitsyn, S. K.
    [J]. NATURE PHOTONICS, 2013, 7 (10) : 783 - 786
  • [33] Laminar-turbulent reactive flows in porous media
    Andrea Corli
    Haitao Fan
    [J]. Bulletin of the Brazilian Mathematical Society, New Series, 2016, 47 : 267 - 276
  • [34] A Model of Laminar-Turbulent Transition Based On Viscous Stream Buckling
    Kulish, Vladimir
    Skote, Martin
    Horak, Vladimir
    [J]. 9TH INTERNATIONAL CONFERENCE ON MATHEMATICAL PROBLEMS IN ENGINEERING, AEROSPACE AND SCIENCES (ICNPAA 2012), 2012, 1493 : 590 - 594
  • [35] Laminar-Turbulent Transition Flows of Non-Newtonian Slurries: Models Assessment
    Adane, Kofi Freeman K.
    Agelin-Chaab, Martin
    [J]. JOURNAL OF FLUIDS ENGINEERING-TRANSACTIONS OF THE ASME, 2019, 141 (01):
  • [36] CALCULATION OF MINIMUM CRITICAL REYNOLDS NUMBER FOR LAMINAR-TURBULENT TRANSITION IN PIPE FLOWS
    Kanda, Hidesada
    [J]. ELECTRONIC TRANSACTIONS ON NUMERICAL ANALYSIS, 2008, 30 : 168 - 186
  • [37] INVESTIGATION OF VARIOUS APPROACHES TO THE SIMULATION OF LAMINAR-TURBULENT TRANSITION IN COMPRESSIBLE SEPARATED FLOWS
    Polivanov, P. A.
    Khotyanovsky, D., V
    Kutepova, A., I
    Sidorenko, A. A.
    [J]. JOURNAL OF APPLIED MECHANICS AND TECHNICAL PHYSICS, 2020, 61 (05) : 717 - 726
  • [38] Laminar-turbulent reactive flows in porous media
    Corli, Andrea
    Fan, Haitao
    [J]. BULLETIN OF THE BRAZILIAN MATHEMATICAL SOCIETY, 2016, 47 (01): : 267 - 276
  • [39] Impact of Forward-Facing Steps on Laminar-Turbulent Transition in Transonic Flows
    Edelmann, Christopher A.
    Rist, Ulrich
    [J]. AIAA JOURNAL, 2015, 53 (09) : 2504 - 2511
  • [40] LAMINAR-TURBULENT TRANSITION FLOWS OF NON-NEWTONIAN SLURRIES: MODELS ASSESSMENT
    Adane, Kofi Freeman K.
    Agelin-Chaab, Martin
    [J]. PROCEEDINGS OF THE ASME FLUIDS ENGINEERING DIVISION SUMMER MEETING, 2016, VOL 1B, 2016,