Fluid Dynamics and Turbulent Flows Peer reviewed

Curvature Effects on Wall Pressure Fluctuations in Moderate-Reynolds-Number Channel Flow

Gianluca Porpora, Giulio Soldati, Andrea Palumbo, Andrea Di Mascio and 1 more

AIAA Journal | Jul 27, 2026

Abstract

Abstract

Direct numerical simulations of turbulent flow in longitudinally curved channels are used to investigate wall-pressure fluctuations over convex surfaces across a wide range of Reynolds numbers and curvature ratios. Inner scaling based on the friction velocity is shown to fail in collapsing the intensity of wall-pressure fluctuations when curvature is present. In contrast, an outer scaling based on the peak mean velocity yields a robust collapse for sufficiently large Reynolds numbers, leading to a simple universal expression for the pressure fluctuation intensity. Spectral analysis reveals that wall curvature significantly modifies the low-frequency content of the wall-pressure spectrum. The high-frequency tail is well described by the exponential-decay model for both plane and curved channel flows, rather than the more commonly assumed power-law distribution. Based on these findings, a new parametric model incorporating outer velocity scaling and an exponential high-frequency decay is proposed and shown to outperform existing empirical formulations across Reynolds numbers and curvature ratios.

Direct answer

What can I do from this paper page?

Use this page to scan "Curvature Effects on Wall Pressure Fluctuations in Moderate-Reynolds-Number Channel Flow" 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

Gianluca Porpora

first | Sapienza University of Rome

Giulio Soldati

middle | Sapienza University of Rome | ORCID 0009-0007-4597-756X

Andrea Palumbo

middle | Sapienza University of Rome | ORCID 0000-0003-1042-3931

Andrea Di Mascio

middle | University of L'Aquila | ORCID 0000-0002-9772-3138

Sergio Pirozzoli

last | Sapienza University of Rome | ORCID 0000-0002-7160-3023

Research areas

Follow related topics

Citation

BibTeX

@article{Porpora2026Curvature,
  title = {Curvature Effects on Wall Pressure Fluctuations in Moderate-Reynolds-Number Channel Flow},
  author = {Gianluca Porpora and Giulio Soldati and Andrea Palumbo and Andrea Di Mascio and Sergio Pirozzoli},
  journal = {AIAA Journal},
  year = {2026},
  doi = {10.2514/1.j067160},
  url = {https://doi.org/10.2514/1.j067160}
}

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 Curvature Effects on Wall Pressure Fluctuations in Moderate-Reynolds-Number Channel Flow. 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