CFD II: Immersed Boundary Methods and Fluid-Structure Interaction
ORAL · HD ·
Presentations
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ABSTRACT WITHDRAWN
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Curvilinear Immersed Boundary Method for Simulating Sediment Transport and Scour in Open Channel Flows
ORAL
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Authors
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Ali Khosronejad
- St. Anthony Falls Lab, University of Minnesota
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Seokkoo Kang
- St. Anthony Falls Lab, University of Minnesota
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Iman Borazjani
- St. Anthony Falls Lab, University of Minnesota
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Fotis Sotiropoulos
- St. Anthony Falls Lab, University of Minnesota
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A Simple and Efficient Sharp Interface Immersed Boundary Method for Fluid-Structure Interaction with Complex Rigid Bodies
ORAL
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Authors
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Jianming Yang
- University of Iowa
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Frederick Stern
- University of Iowa
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Three-dimensional simulation of a valveless pump
ORAL
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Authors
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Soo Jai Shin
- Department of Mechanical Engineering, KAIST
- KAIST
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Hyung Jin Sung
- KAIST
- Department of Mechanical Engineering, KAIST
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Simulations of the Motion of Arbitrarily Shaped Fibers in a Linear Shear Flow
ORAL
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Authors
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Andriy Roshchenko
- Department of Mathematical and Statistical Sciences, University of Alberta
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Warren Finlay
- Department of Mechanical Engineering, University of Alberta
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Peter Minev
- Department of Mathematical and Statistical Sciences, University of Alberta
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Fluid-Solid Interactive Methodology for Prognosis of Passenger Jet Structural Damage in Water Crash Landing
ORAL
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Authors
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Javid Bayandor
- Virginia Tech
- Virginia Polytechnic Institute and State University
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A discrete-forcing immersed boundary method for the fluid-structure interaction of an elastic slender body
ORAL
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Authors
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Injae Lee
- Seoul National University
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Haecheon Choi
- Seoul National University
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Effects of mass ratio to flexible flapping-wing propulsion
ORAL
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Authors
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Min Xu
- New Mexico State University
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Mingjun Wei
- New Mexico State University
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Tao Yang
- New Mexico State University
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Thomas Burton
- New Mexico State University
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A fully-coupled approach to simulate three-dimensional flexible flapping wings
ORAL
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Authors
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Tao Yang
- New Mexico State University
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Mingjun Wei
- New Mexico State University
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