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Computational Fluid Dynamics Uncertainty Analysis Applied to Heat Transfer over a Flat PlateThere have been few discussions on using Computational Fluid Dynamics (CFD) without experimental validation. Pairing experimental data, uncertainty analysis, and analytical predictions provides a comprehensive approach to verification and is the current state of the art. With pressed budgets, collecting experimental data is rare or non-existent. This paper investigates and proposes a method to perform CFD uncertainty analysis only from computational data. The method uses current CFD uncertainty techniques coupled with the Student-T distribution to predict the heat transfer coefficient over a at plate. The inputs to the CFD model are varied from a specified tolerance or bias error and the difference in the results are used to estimate the uncertainty. The variation in each input is ranked from least to greatest to determine the order of importance. The results are compared to heat transfer correlations and conclusions drawn about the feasibility of using CFD without experimental data. The results provide a tactic to analytically estimate the uncertainty in a CFD model when experimental data is unavailable
Document ID
20140010860
Acquisition Source
Kennedy Space Center
Document Type
Presentation
Authors
Groves, Curtis Edward
(NASA Kennedy Space Center Cocoa Beach, FL United States)
Ilie, Marcel
(University of Central Florida Orlando, FL, United States)
Schallhorn, Paul A.
(NASA Kennedy Space Center Cocoa Beach, FL United States)
Date Acquired
August 19, 2014
Publication Date
November 24, 2013
Subject Category
Fluid Mechanics And Thermodynamics
Report/Patent Number
KSC-E-DAA-TN11554
Meeting Information
Meeting: Annual Meeting of the American Physical Society''s Division of Fluid Dynamics (DFD)
Location: Pittsburgh, PA
Country: United States
Start Date: November 24, 2013
End Date: November 26, 2013
Sponsors: American Physical Society Headquarters, APS Division of Fluid Dynamics
Funding Number(s)
WBS: WBS 725932.08.01.01.13
Distribution Limits
Public
Copyright
Public Use Permitted.
Keywords
Computational
CFD
Fluid Dynamics
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