Particle Laden Flows: Simulations I
ORAL · EV ·
Presentations
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ABSTRACT WITHDRAWN
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ABSTRACT WITHDRAWN
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ABSTRACT WITHDRAWN
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Is Stokes number an appropriate indicator for turbulence modulation by particles of Taylor-length-scale size?
ORAL
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Authors
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F. Lucci
- University of California, Irvine
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Antonino Ferrante
- University of Washington
- University of Washington, Seattle
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S. Elghobashi
- University of California, Irvine
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Direct numerical simulation of dense particle-laden flows - Investigation of the forces acting on the particles
ORAL
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Authors
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Perrine Pepiot
- National Renewable Energy Lab
- National Renewable Energy Laboratory
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Olivier Desjardins
- University of Colorado at Boulder
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Direct numerical simulation of flow including dense solid particles having microscopic arrangements
ORAL
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Authors
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Tomoya Wakamatsu
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Takuya Tsuji
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Hirotaka Yada
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Toshitsugu Tanaka
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Particle Dispersal in Rapid Expanding Gas Flow: Importance of Unsteady Force and Heat Transfer
ORAL
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Authors
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Yue Ling
- University of Florida
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Andreas Haselbacher
- University of Florida
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S. Balachandar
- University of Florida
- Department of Mechanical and Aerospace Engineering, University of Florida, Gainesville, FL, USA
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Extension of Basset-Boussinesq-Oseen and Maxey-Riley Equations to Compressible Flows
ORAL
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Authors
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Manoj Parmar
- University of Florida
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Andreas Haselbacher
- University of Florida
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S. Balachandar
- University of Florida
- Department of Mechanical and Aerospace Engineering, University of Florida, Gainesville, FL, USA
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Tracking Rigid Spherical Particles in Incompressible Flows via Dissipative Hydrodynamics
ORAL
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Authors
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Brent Houchens
- Rice University
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Kenneth Davis
- Rice University
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Yong Shi
- University of Hawaii at Manoa
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Albert Kim
- University of Hawaii at Manoa
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LBM Simulations of 3D Peristaltic Transport with Particles
ORAL
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Authors
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Kevin Connington
- The Benjamin Levich Institute, The City College of New York
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Qinjun Kang
- Los Alamos National Labs, EES-16 Division
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Hari Viswanathan
- Los Alamos National Labs, EES-16 Division
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Shiyi Chen
- The Johns Hopkins University, Department of Mechanical Engineering
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