Direct Numerical Simulation Database of High-Speed Flow over Parameterized Curved Walls

Author:

Nicholson Gary L.1,Duan Lian1ORCID,Bisek Nicholas J.2

Affiliation:

1. The Ohio State University, Columbus, Ohio 43210

2. U.S. Air Force Research Laboratory, Wright–Patterson Air Force Base, Ohio 45433

Abstract

This study presents a direct numerical simulation (DNS) database of high-speed turbulent boundary layers (TBLs) subject to pressure gradients due to parametrically varied backward-facing and forward-facing wall curvatures, with an inflow Mach number of 4.9 and a friction Reynolds number of [Formula: see text] immediately before the onset of wall curvature. The Mach and Reynolds numbers are significantly higher than those reported in the literature for the DNS of pressure-gradient TBLs. The flow conditions and baseline wall geometries are representative of experiments in the high-speed blowdown wind tunnel at the National Aerothermochemistry Laboratory at Texas A&M University. The wall steepness of the baseline geometry for both the backward-facing and forward-facing walls was systematically varied to cause attached, incipiently separated, and fully separated flows. Precomputed flow statistics, including turbulent kinetic energy budgets, are available on the website of the Turbulence Modeling Resource of the NASA Langley Research Center, allowing other investigators to query any property of interest.

Funder

Office of Naval Research

Ohio Department of Higher Education

National Science Foundation

Publisher

American Institute of Aeronautics and Astronautics (AIAA)

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