Birs- 17w5155: Complex Creeping Fluids: Numerical Methods and Theory

  1. Title:
    Complex dynamics of soft microparticles in flow and electric fields

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  2. Title:
    Computing the Dynamics of Suspended Particles in Complex Fluids: From Fracking Fluids to Swimming Worms

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  3. Title:
    A target specific QBX method for the accurate computation of boundary integrals with nearly touching interfaces

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  4. Title:
    LBM-based method for simulation of cellular blood flow with nanoscale proteins

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  5. Title:
    Quadrature by expansion in integral equation methods for Stokes flow

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  6. Title:
    Granular Erosion in Stokes Flow

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  7. Title:
    A Boundary Integral Equation Formulation for Vesicle Electrohydrodynamics

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  8. Title:
    Computational methods and models for biomechanics problems in the cell

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  9. Title:
    Parallel Simulation of Concentrated Vesicle Suspensions in 3D

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  10. Title:
    Integral equation based methods for surfactant laden drops in two and three dimensions

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  11. Title:
    Contact-Free Rigid Body Motion Using Boundary Integral Equations

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  12. Title:
    A soft porous drop in linear flows

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  13. Title:
    Blood: flow, swimming and patterns

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  14. Title:
    Margination dynamics of drug delivery agents in blood flow using Lattice-Boltzmann and Boundary-Integral simulations

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  15. Title:
    Contact-aware simulations of particulate Stokesian suspensions

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  16. Title:
    Theory of margination in blood and other multicomponent suspensions

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  17. Title:
    Active hydrodynamics of interphase chromatin: coarse-grained modeling and simulations

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  18. Title:
    A stabilized fast multipole method for fluid flow

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  19. Title:
    Deformability-based red blood cell separation using a microfluidic device

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  20. Title:
    Three-Dimensional Multicomponent Vesicles -- Modeling, Results, and Extensions

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