TY - JOUR
T1 - A new perspective on skin-friction contributions in adverse-pressure-gradient turbulent boundary layers
AU - Atzori, Marco
AU - Mallor, Fermín
AU - Pozuelo, Ramón
AU - Fukagata, Koji
AU - Vinuesa, Ricardo
AU - Schlatter, Philipp
N1 - Funding Information:
We thank Perry L. Johnson (University of California, Irvine) for discussions on how to extend the angular momentum integral to adverse-pressure-gradient turbulent boundary layers. M.A. acknowledges financial support of the Austrian Science Fund (FWF) , project number: I5180-N. R.P and R.V. acknowledge financial support provided by the Swedish Research Council (VR) . F.M. and P.S. acknowledge financial support provided by the Knut and Alice Wallenberg Foundation, Sweden . K.F. acknowledges the financial support provided by Japan Society for Promotion of Science (JSPS) , grant number: 21H05007 . Part of the computations and data handling were enabled by resources provided by the Swedish National Infrastructure for Computing (SNIC) , partially funded by the Swedish Research Council through grant agreement no. 2018-05973 . Parts of the computations were also performed on the EuroHPC system LUMI using grant number EHPC-REG-2021R0088 .
Funding Information:
We thank Perry L. Johnson (University of California, Irvine) for discussions on how to extend the angular momentum integral to adverse-pressure-gradient turbulent boundary layers. M.A. acknowledges financial support of the Austrian Science Fund (FWF), project number: I5180-N. R.P and R.V. acknowledge financial support provided by the Swedish Research Council (VR). F.M. and P.S. acknowledge financial support provided by the Knut and Alice Wallenberg Foundation, Sweden. K.F. acknowledges the financial support provided by Japan Society for Promotion of Science (JSPS), grant number: 21H05007. Part of the computations and data handling were enabled by resources provided by the Swedish National Infrastructure for Computing (SNIC), partially funded by the Swedish Research Council through grant agreement no. 2018-05973. Parts of the computations were also performed on the EuroHPC system LUMI using grant number EHPC-REG-2021R0088.
Publisher Copyright:
© 2023 The Author(s)
PY - 2023/6
Y1 - 2023/6
N2 - For adverse-pressure-gradient turbulent boundary layers, the study of integral skin-friction contributions still poses significant challenges. Beyond questions related to the integration boundaries and the derivation procedure, which have been thoroughly investigated in the literature, an important issue is how different terms should be aggregated. The nature of these flows, which exhibit significant in-homogeneity in the streamwise direction, usually results in cancellation between several contributions with high absolute values. We propose a formulation of the identity derived by Fukagata et al. (2002), which we obtained from the convective form of the governing equations. A new skin-friction contribution is defined, considering wall-tangential convection and pressure gradient together. This contribution is related to the evolution of the dynamic pressure in the mean flow. The results of the decomposition are examined for a broad range of pressure-gradient conditions and different flow-control strategies. We found that the new formulation of the identity allows to readily identify the different regimes of near-equilibrium conditions and approaching separation. It also provides a more effective description of control effects. A similar aggregation between convection and pressure-gradient terms is also possible for any other decomposition where in-homogeneity contributions are considered explicitly.
AB - For adverse-pressure-gradient turbulent boundary layers, the study of integral skin-friction contributions still poses significant challenges. Beyond questions related to the integration boundaries and the derivation procedure, which have been thoroughly investigated in the literature, an important issue is how different terms should be aggregated. The nature of these flows, which exhibit significant in-homogeneity in the streamwise direction, usually results in cancellation between several contributions with high absolute values. We propose a formulation of the identity derived by Fukagata et al. (2002), which we obtained from the convective form of the governing equations. A new skin-friction contribution is defined, considering wall-tangential convection and pressure gradient together. This contribution is related to the evolution of the dynamic pressure in the mean flow. The results of the decomposition are examined for a broad range of pressure-gradient conditions and different flow-control strategies. We found that the new formulation of the identity allows to readily identify the different regimes of near-equilibrium conditions and approaching separation. It also provides a more effective description of control effects. A similar aggregation between convection and pressure-gradient terms is also possible for any other decomposition where in-homogeneity contributions are considered explicitly.
KW - Adverse pressure gradients
KW - Skin friction
KW - Turbulent boundary layers
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U2 - 10.1016/j.ijheatfluidflow.2023.109117
DO - 10.1016/j.ijheatfluidflow.2023.109117
M3 - Article
AN - SCOPUS:85149273522
SN - 0142-727X
VL - 101
JO - Heat Fluid Flow
JF - Heat Fluid Flow
M1 - 109117
ER -