CFD: Shock Capturing, Discontinuous Galerkin, Higher-Order Schemes
ORAL · G26 · ID: 678168
Presentations
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A Positivity Preserving High-Order Finite Difference Method for Compressible Two-Fluid Flows
ORAL
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Publication: Daniel Boe and Khosro Shahbazi, High-order finite difference positivity-preserving schemes<br>for compressible two-fluid flows, Computer & Fluids (submitted July 2022).
Presenters
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Khosro Shahbazi
South Dakota School of Mines & Technolog, South Dakota Mines
Authors
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Khosro Shahbazi
South Dakota School of Mines & Technolog, South Dakota Mines
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Daniel Boe
South Dakota School of Mines and Technology
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A Discontinuous Galerkin Method for Compressible Gas/Liquid Interfacial Flows
ORAL
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Presenters
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William J White
University of Michigan
Authors
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William J White
University of Michigan
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Eric Johnsen
University of Michigan, Associate Professor, Mechanical Engineering Associate Chair for Undergraduate Education, Mechanical Engineering
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On the quantification of overshooting shock-capturing oscillations
ORAL
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Publication: [1] On the numerical overshoots of shock-capturing schemes. International Journal for Numerical Methods in Fluids 93 (10), 3151-3159.<br>[2] Improving the quantification of overshooting shock-capturing oscillations. Submitted.
Presenters
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Fan Zhang
Katholieke Univ Leuven
Authors
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Fan Zhang
Katholieke Univ Leuven
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Primary Breakup of Liquid Jet in Supersonic Crossflows Modeled Using A Mass-Conserving Level Set Scheme
ORAL
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Presenters
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Abdullahalmut Sharfuddin
Stony Brook University (SUNY)
Authors
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Abdullahalmut Sharfuddin
Stony Brook University (SUNY)
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Foluso Ladeinde
Stony Brook
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Popping the cork of champagne bottle: simulating the coupled gas and cork dynamics
ORAL
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Publication: In preparation: L. Wagner, S. Braun & B. Scheichl, "Simulating the opening of champagne bottle", Flow (2022).
Presenters
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Lukas Wagner
AC2T research GmbH (Austrian Excellence Center for Tribology, Wiener Neustadt, Austria)
Authors
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Lukas Wagner
AC2T research GmbH (Austrian Excellence Center for Tribology, Wiener Neustadt, Austria)
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Stefan Braun
Institute of Fluid Mechanics and Heat Transfer, Technische Universität Wien (Vienna, Austria)
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Bernhard F Scheichl
Institute of Fluid Mechanics and Heat Transfer, Technische Universität Wien (Vienna, Austria)
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