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Direct numerical simulation of an equilibrium adverse pressure gradient turbulent boundary layer at the verge of separation

  • Vassili Kitsios*
  • , Callum Atkinson
  • , Juan A. Sillero
  • , Guillem Borrell
  • , Ayse Gul Gungor
  • , Javier Jiménez
  • , Julio Soria
  • *Bu çalışma için yazışmadan sorumlu yazar

Araştırma sonucu: Konferansa katkıYazıbilirkişi

Özet

The statistics and structure of a self-similar equilibrium adverse pressure gradient (APG) turbulent boundary layer (TBL) are investigated using a direct numerical simulation (DNS) of the flow at the verge of separation. Flow simulations are performed using the DNS TBL code of Simens et al. [8] and Borrell et al. [1] with the desired equilibrium APG achieved via the use of a tailored far-field boundary condition. The APG TBL develops over a momentum thickness based Reynolds number of Reθ ≈ 2000 to 6000, achieving a region of constant friction coefficient (Cf), pressure velocity (up) and shape factor (H). One- and two-point statistics are presented under both inner wall (uτ) and pressure velocity (up) based scaling.

Orijinal dilİngilizce
Yayın durumuYayınlandı - 2015
Etkinlik15th European Turbulence Conference, ETC 2015 - Delf, Netherlands
Süre: 25 Ağu 201528 Ağu 2015

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???event.eventtypes.event.conference???15th European Turbulence Conference, ETC 2015
Ülke/BölgeNetherlands
ŞehirDelf
Periyot25/08/1528/08/15

Bibliyografik not

Publisher Copyright:
© TU Delft.

Finansman

The authors acknowledge the research funding from the Australian Research Council and European Research Council, and the computational resources provided by NCI and PRACE.

Finansörler
National Computational Infrastructure
European Research Council
Australian Research Council
Partnership for Advanced Computing in Europe AISBL

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