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The NASA Turbulent Heat Flux (THX) Experiments: Summary and Lessons Learned The Turbulent Heat Flux (THX) experiments were conducted at NASA Glenn Research Center (GRC) in order to collect measurements of velocities and temperatures for computational fluid dynamics (CFD) validation of heated flows, with a focus on propulsion system components. The experiments spanned 5 phases; four of which were conducted in the GRC AeroAcoustic Propulsion Laboratory (AAPL) using the Small Hot Jet Flow Rig (SHJAR). In addition to making velocity measurements with Particle Image Velocimetry (PIV), the THX experiments introduced a new Raman-scattering based capability to measure temperatures. Computational studies were also conducted for each of the experimental configurations, in order to provide a baseline of expected CFD results and conduct an assessment of the capability of various CFD approaches for calculating flows where the turbulent transport of heat was important. Two of the collected sets of data were used for American Institute of Aeronautics and Astronautics (AIAA) Propulsion Aerodynamic Workshops (PAWs). The data set from the 5th phase, collected for heated supersonic jets, was also used to construct new validation cases for the NASA Turbulence Model Resource (TMR). This paper provides an overview of the experiments and associated computations for each of the 5 test phases. Key experimental findings are presented. Lessons learned are provided concerning the effect of computational modeling choice on accuracy of predicting turbulent flows where thermal transport is important. Emphasis is placed on comparing Reynolds-averaged Navier-Stokes approaches with large-eddy simulation approaches. The benefits of utilizing a conjugate heat transfer method in conjunction with CFD solver for film cooling is demonstrated.
Document ID
20260004534
Acquisition Source
Glenn Research Center
Document Type
Presentation
Authors
Nick Georgiadis
(Glenn Research Center Cleveland, United States)
Mark Wernet
(Glenn Research Center Cleveland, United States)
Mike Borghi
(Glenn Research Center Cleveland, United States)
Chad Winkler
(The Boeing Company Long Beach, CA)
Mike Emory
(Luminary Cloud)
Randy Locke
(HX5, LLC)
Date Acquired
May 20, 2026
Subject Category
Fluid Mechanics and Thermodynamics
Meeting Information
Meeting: AIAA Aviation Forum
Location: San Diego, CA
Country: US
Start Date: June 8, 2026
End Date: June 12, 2026
Sponsors: American Institute of Aeronautics and Astronautics
Funding Number(s)
WBS: 361807.02.03.01.07
Distribution Limits
Public
Copyright
Portions of document may include copyright protected material.
Technical Review
Single Expert
Keywords
RANS
LES
film-cooling
turbulence
supersonic jet
heat transfer
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