Session Index

Session A
  AA. Turbulent Boundary Layers: Experiments I
  AB. Turbulent Shear Layers
  AC. Turbulence Simulations I
  AD. Flow Control I
  AE. Biofluids I: General I - Biological Systems
  AF. Microfluidics: Devices I
  AG. Free Surface Flows I
  AH. Drops I: Impact
  AJ. Bubbles I: Cavitation
  AK. Multiphase Flows I
  AL. CFD I: Methods
  AM. Reacting Flows I
  AN. Experimental Techniques I
  AP. Instability: Boundary Layers I
  AQ. Instability: Interfacial and Thin-Film I
  AR. Buoyancy Driven Flows
  AS. Geophysical: Atmospheric I
  AT. Vortex Dynamics and Vortex Flows I
  AU. Granular I: Jamming I
  AV. Flight I
  AW. Mini-Symposium on Intracellular Fluid Dynamics
Session B
  BA. Turbulent Boundary Layers: DNS/LES
  BB. Turbulent Mixing
  BC. Turbulence Simulations II
  BD. Flow Control II
  BE. Biofluids II: General II - Biologically Generated Flows
  BF. Microfluidics: Devices II
  BG. Free Surface Flows II
  BH. Drops II
  BJ. Bubbles II: Bubble Deformation and Breakup
  BK. Multiphase Flows II
  BL. CFD II: Methods
  BM. Compressible Flows
  BN. Experimental Techniques II: Near Wall Flows
  BP. Instability: Boundary Layers II
  BQ. Instability: Interfacial and Thin-Film II
  BR. Instability: Jets & Wakes I
  BS. Geophysical: Atmospheric II - Simulation
  BT. Vortex Dynamics and Vortex Flows II
  BU. Granular II: Jamming II
  BV. Flight II
  BW. Mini-Symposium on Fluid Dynamics of Sports
Session C
  C1. Prizes, Awards and Fellowships Presentations followed by Otto Laporte Lecture
Session D
  D1. Invited Session: Bio-mimetic Flow Control
  D2. Invited Session: Ocean Surface Waves and Turbulence: Air-Sea Fluxes and Climate Variability
Session E
  EA. Turbulent Boundary Layers: Structure
  EB. Turbulence Modelling I
  EC. Turbulence Simulations III
  ED. Flow Control III
  EE. Biofluids III: General III - Flows and Diseases
  EF. Microfluidics: Devices III
  EG. Biofluids IV: Cellular I
  EH. Drops III: Collisions and Coalescence
  EJ. Bubbles III
  EK. Particle Laden Flows I: Structure and Coating
  EL. CFD III: Immersed Boundary Methods
  EM. Reacting Flows II
  EN. Experimental Techniques III: Scalar
  EP. Instability: Jets & Wakes II
  EQ. Instability: Interfacial and Thin-Film III
  ER. Convection I
  ES. Geophysical: Oceanographic I
  ET. Vortex Dynamics and Vortex Flows III
  EU. Granular III: Segregation and Mixing
  EV. Swimming I
  EW. Mini-Symposium on Uncertainty Quantification in Simulations of Fluid Flow
Session F
  F1. Reception
Session G
  GA. Turbulent Boundary Layers: Experiments II
  GB. Turbulence: Fundamentals I
  GC. Turbulence Simulations IV
  GD. Flow Control IV
  GE. Biofluids V: Cardiac Flows
  GF. Microfluidics: Electric Fields and Particles
  GG. Microfluidics: Mixing
  GH. Drops IV: Breakup
  GJ. Bubbles IV: Microbubbles, Bubble Motion
  GK. Multiphase Flows III
  GL. Particle Laden Flows II: Turbulence
  GM. Supersonic/Hypersonic I
  GN. Non-Newtonian Flows I
  GP. Instability: Jets & Wakes III
  GQ. Instability: Interfacial and Thin-Film IV
  GR. Viscous Flows I
  GS. Geophysical: Oceanographic II
  GT. Vortex Dynamics and Vortex Flows IV
  GU. Granular IV
  GV. Swimming II
  GW. Mini-Symposium on Fluid Dynamics at Super-repellent Surfaces
Session H
  HA. Turbulent Boundary Layers: Roughness Effects
  HB. Turbulence: Fundamentals II
  HC. Turbulence Simulations V
  HD. Flow Control V
  HE. Biofluids VI: Cardiovascular
  HF. Microfluidics: Particles
  HG. Rarefied Gases and Direct Simulation Monte Carlo (DSMC)
  HH. Drops V: Drops and Surfaces
  HJ. Bubbles V: General Experiments
  HK. Multiphase Flows IV
  HL. Acoustics I
  HM. Aerodynamics
  HN. Non-Newtonian Flows II
  HP. Instability: Richtmyer-Meshkov
  HQ. Instability: Interfacial and Thin-Film V
  HR. Porous Media Flows
  HS. Geophysical: Oceanographic III
  HT. Vortex Dynamics and Vortex Flows V
  HU. Granular V: Particles in Fluids and Interparticle Forces
  HV. Swimming III
  HW. Swimming IV: Micro-organisms I
Session J
  J1. Invited Session: Tumor Blood Vessel Dynamics
  J2. Invited Session: The Fluid Mechanics Inside a Volcano
Session K
  K1. Invited Session: Unsteadiness of Shock Wave / Boundary Layer Interactions
  K2. Invited Session: Cavitation Inception and Bubble Dynamics in Vortical Flows
Session L
  L1. Poster Session (15:15 - 17:00)
  LA. Turbulent Boundary Layers: Theory
  LB. Chaos and Fractals I
  LC. Turbulence Modelling II
  LD. Flow Control VI
  LE. Biofluids VII: Phonation/Glottal Flows
  LF. Microfluidics: Drops and Capillarity
  LG. Nano-Fluids I
  LH. Drops VI
  LJ. Surface Tension Effects I
  LK. Multiphase Flows V
  LL. CFD IV: Multiphase Flows
  LM. Supersonic/Hypersonic II
  LN. Non-Newtonian Flows III
  LP. Couette Flow
  LQ. Microfluidics: General
  LR. Convection II
  LS. Waves I
  LT. Suspensions I
  LU. Separated Flows I
  LV. Propulsion Interactions
  LW. Biofluids VIII: Cellular II
Session M
  MA. Turbulent Boundary Layers: Experiments III
  MB. Turbulence Modelling III
  MC. Turbulence Simulations VI
  MD. Chaos and Fractals II
  ME. Biofluids IX: Nasal, Lungs and Other Organs
  MF. Microfluidics: Electrokinetics and Transport
  MG. Nano-Fluids II
  MH. Drops VII
  MJ. Surface Tension Effects II
  MK. Particle Laden Flows III
  ML. General Fluid Mechanics I
  MM. Reacting Flows III
  MN. Experimental Techniques IV: PIV
  MP. Instability: Rayleigh-Taylor
  MQ. Instability: General
  MR. Rotating Flows
  MS. Geophysical: General I
  MT. Suspensions II
  MU. Separated Flows II and Miscellaneous Experiments
  MV. Swimming V: Micro-organisms II
  MW. Micro Propulsion I
Session N
  N1. Invited Session: Patterns and Dynamics in Transitional Shear Flows
  N2. Invited Session: Particle Entrainment under Turbulent Flow Conditions
Session O
  O1. Andreas Acrivos Dissertation Award Lecture
  O2. Francois Frenkiel Award Lecture
Session P
  PA. Turbulent Boundary Layers: Complex
  PB. Turbulence Modelling IV
  PC. Turbulence Simulations VII
  PE. Biofluids X: General IV - Biomedical Flows
  PF. Microfluidics: Slip and Experimental Methods
  PG. Free Surface Flows III
  PH. Drops VIII: Contact Lines
  PJ. Waves II
  PK. Fluid-Driven Particle Flows
  PL. General Fluid Mechanics II
  PM. Acoustics II
  PP. Instability: Taylor-Couette
  PQ. Industrial Applications
  PR. Convection III
  PS. Geophysical: General II - Stratified Fluids and Turbulence
  PT. Vortex Dynamics and Vortex Flows VI
  PU. Viscous Flows II
  PV. Micro Propulsion II
  PW. Biofluids XI: Cellular III - Viscoelastic Biofluids

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