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Unresolved Problems by Shock Capturing: Taming the Overheating ProblemThe overheating problem, first observed by von Neumann [1] and later studied extensively by Noh [2] using both Eulerian and Lagrangian formulations, remains to be one of the unsolved problems by shock capturing. It is historically well known to occur when a flow is under compression, such as when a shock wave hits and reflects from a wall or when two streams collides with each other. The overheating phenomenon is also found numerically in a smooth flow undergoing rarefaction created by two streams receding from each other. This is in contrary to one s intuition expecting a decrease in internal energy. The excessive amount in the temperature increase does not reduce by refining the mesh size or increasing the order of accuracy. This study finds that the overheating in the receding flow correlates with the entropy generation. By requiring entropy preservation, the overheating is eliminated and the solution is grid convergent. The shock-capturing scheme, as being practiced today, gives rise to the entropy generation, which in turn causes the overheating. This assertion stands up to the convergence test.
Document ID
20130000503
Acquisition Source
Glenn Research Center
Document Type
Conference Paper
Authors
Liou, Meng-Sing
(NASA Glenn Research Center Cleveland, OH, United States)
Date Acquired
August 27, 2013
Publication Date
July 9, 2012
Subject Category
Physics (General)
Report/Patent Number
E-18552
ICCFD7-2012-2203
Report Number: E-18552
Report Number: ICCFD7-2012-2203
Meeting Information
Meeting: Seventh International Conference on Computational Fluid Dynamics (ICCFD7)
Location: Big Island, HI
Country: United States
Start Date: July 9, 2012
End Date: July 13, 2012
Funding Number(s)
WBS: WBS 561581.02.08.03.13.12
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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