Fluid Dynamics and Turbulent Flows Open access Peer reviewed

On the Reynolds analogy for high-speed rough-wall flows: implications for wall modelling

Michele Cogo, Davide Depieri, Matteo Bernardini, Francesco Picano

Journal of Fluid Mechanics | Jul 20, 2026

Abstract

Abstract

We investigate compressible turbulent boundary layers over prism-shaped roughness using direct numerical simulations at Mach 2 and 4, with adiabatic and isothermal walls. Analysis of instantaneous and mean-density fields shows that compressibility effects and wall-thermal conditions significantly influence the boundary-layer structure, although the roughness elements remain submerged within the subsonic layer. While roughness disrupts near-wall momentum–energy coupling within the roughness sublayer, the Reynolds analogy recovers in the outer region where velocity and temperature fields exhibit smooth-wall-like similarity. A systematic comparison of different formulations indicates that a mixed Prandtl number approach provides the most accurate heat-flux predictions among the tested closures. Based on these observations, we develop a wall model that couples drag prediction for small prism-shaped roughness patterns with a compressibility transformation and a temperature–velocity closure. The formulation is modular, allowing the straightforward incorporation of alternative closures and traditional correlations. The model predicts both wall-shear stress and heat flux using only roughness geometry and information from the matching location, and shows good a priori agreement with the present direct numerical simulation data.

Direct answer

What can I do from this paper page?

Use this page to scan "On the Reynolds analogy for high-speed rough-wall flows: implications for wall modelling" quickly: start with the summary and abstract, then check the authors, source, topics, and related papers. From here, open Scollr to follow Fluid Dynamics and Turbulent Flows research, save the paper, or map adjacent work.

Authors

Researchers on this paper

Michele Cogo

first | University of Padua | ORCID 0000-0003-1668-8295

Davide Depieri

middle | University of Padua

Matteo Bernardini

middle | Sapienza University of Rome | ORCID 0000-0001-5975-3734

Francesco Picano

last | University of Padua | ORCID 0000-0002-3943-8187

Research areas

Follow related topics

Citation

BibTeX

@article{Cogo2026Reynolds,
  title = {On the Reynolds analogy for high-speed rough-wall flows: implications for wall modelling},
  author = {Michele Cogo and Davide Depieri and Matteo Bernardini and Francesco Picano},
  journal = {Journal of Fluid Mechanics},
  year = {2026},
  doi = {10.1017/jfm.2026.11842},
  url = {https://doi.org/10.1017/jfm.2026.11842}
}

FAQ

Using this paper in a discovery workflow

How do I find related work for this paper?

Use the related papers and topic links on this page as starting points. In Scollr, you can also open the paper and build a literature map around its references, citing papers, and related work.

How can I keep up with new Fluid Dynamics and Turbulent Flows research papers?

Follow Fluid Dynamics and Turbulent Flows research in Scollr. New papers from the topic flow into a personalized feed, and you can save useful studies to revisit later.

Can I cite this paper from this page?

This page includes a static BibTeX block for On the Reynolds analogy for high-speed rough-wall flows: implications for wall modelling. Always verify the DOI, source, and publication details against the publisher record before submitting a manuscript.

Follow this research in Scollr

Follow the topics and authors behind this paper, save useful studies, and build a literature map when you are ready to go deeper.

Get the app