Tuesday, July 1st    16:30 - 18:30
Immersed Boundary and Immersed Interface Methods I
Joint IACM – IUTAM Minisymposium

Minisymposium organized by Pietro De Palma, Michele Napolitano, Giuseppe Pascazio and Roberto Verzicco
Room: CAS2.6
MS175A
16:30 High-Fidelity Simulations of Turbulent Heat Transfer on Bluff Bodies (Keynote Lecture)
Seongwon Kang, Gianluca Iaccarino, Frank Ham and Parviz Moin

17:00 A Monotone, Higher-Order Accurate, Fixed-Grid Finite-Volume Method for Convection Problems with Moving Boundaries (Keynote Lecture)
Barry Koren and Yunus Hassen

17:30 An Embedded Boundary Method with Adaptive Mesh Refinements
Marcos Vanella and Elias Balaras

17:50 Direct Numerical Simulation of the Physiological Flow through a Bileaflet Mechanical Heart Valve
Marco D. de Tullio and Roberto Verzicco

18:10 Shape Representation by Singed Distance Function for Immersed Boundary Method
Kohei Okita, Takehiro Tawara and Kenji Ono

Wednesday, July 2nd    10:30 - 12:30
Immersed Boundary and Immersed Interface Methods II
Joint IACM – IUTAM Minisymposium

Minisymposium organized by Pietro De Palma, Michele Napolitano, Giuseppe Pascazio and Roberto Verzicco
Room: CAS2.6
MS175B
10:30 An Embedded/Immersed Boundary Method for Compressible Navier-Stokes/Les Equations
Marco Kupiainen and Pierre Sagaut

10:50 An Immersed Boundary Method for the RANS Equations using Adaptive Wall Functions
Marco D. de Tullio, Pietro De Palma, Giuseppe Pascazio, Maurizio Sciancalepore and Michele Napolitano

11:10 Application of an Immersed Boundary Method to Turbulent Flows along Porous Beds
Wim-Paul Breugem

11:30 A Closer Look at the Numerical Errors of the Immersed Boundary Method
Mathieu Pourquie

11:50 RANS Simulations of Flows around Complex Geometries using Locally Refined Cartesian Grids
Francesco Capizzano and Pietro Catalano

12:10 Convergence Acceleration Method for Computational Fluid Dynamics using Immersed Boundary Cartesian Grid Method
Takahiro Fukushige, Toshihiro Kamatsuchi, Toshiyuki Arima and Seiji Fujino

Wednesday, July 2nd    14:00 - 16:00
Immersed Boundary and Immersed Interface Methods III
Joint IACM – IUTAM Minisymposium

Minisymposium organized by Pietro De Palma, Michele Napolitano, Giuseppe Pascazio and Roberto Verzicco
Room: CAS2.6
MS175C
14:00 The LS-STAG Method : A new Immersed Boundary / Level-Set Method for the Computation of Incompressible Viscous Flows
Yoann Cheny and Olivier Botella

14:20 The Finite Element Immersed Boundary Method: Model, Stability, and Applications
Daniele Boffi, Lucia Gastaldi and Luca Heltai

14:40 A Parallel RANS Solver based upon the Immersed Boundary and Domain Decomposition Methods
Marco D. de Tullio, Gianluca Rossiello, Pietro De Palma, Giuseppe Pascazio and Michele Napolitano

15:00 Immersed Pressure Loss Boundary Condition on Cartesian Grid
Kei Akasaka and Kenji Ono

15:20 Domain Free Discretization Method for Incompressible Navier-Stokes Equations and its Application to Simulate Vortex Shedding from an Oscillating Circular Cylinder
Chun-Hua Zhou and Ke-Ming Cheng

15:40 A Numerical Scheme to Moving Boundaries of Porous Medium Flow in Oil Reservoir
Tatsuyuki Nakaki

Wednesday, July 2nd    16:30 - 18:30
Immersed Boundary and Immersed Interface Methods IV
Joint IACM – IUTAM Minisymposium

Minisymposium organized by Pietro De Palma, Michele Napolitano, Giuseppe Pascazio and Roberto Verzicco
Room: CAS2.6
MS175D
16:30 Immersed Finite Element Method with Sharp Interfaces
Lucy Zhang

16:50 Numerical Simulation of Tube Bundles by using Immersed Finite Element Method
Tae-Rin Lee, Yoon-Suk Chang, Jae-Boon Choi and Young-Jin Kim

17:10 Numerical Simulation of Immersed Collisions of Tethered Spheres
Ching-Biao Liao and Cheng-Hsin Chen

17:30 Immersed Boundary Method applied to Simplified Drilling Problems
Elie Luis Padilla, André Martins and Aristeu Silveira-Neto

17:50 A Variational Approach for Fluid-Solid Interaction Problems using Immersed Domains
Pablo J. Blanco, Enzo A. Dari and Raul Feijóo

18:10 Directly Coupled Immersed Finite Element Method for Rigid Body-Flow Interaction Problems
Do Wan Kim and Wing Kam Liu

 

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