A stochastic immersed boundary method for fluid-structure dynamics at microscopic length scales
From MaRDI portal
Publication:886102
DOI10.1016/j.jcp.2006.11.015zbMath1124.74052arXiv0910.5748OpenAlexW2157567565WikidataQ59619658 ScholiaQ59619658MaRDI QIDQ886102
Peter R. Kramer, Charles S. Peskin, Paul J. Atzberger
Publication date: 14 June 2007
Published in: Journal of Computational Physics (Search for Journal in Brave)
Full work available at URL: https://arxiv.org/abs/0910.5748
Fluid-solid interactions (including aero- and hydro-elasticity, porosity, etc.) (74F10) Thermal effects in solid mechanics (74F05) Biomechanical solid mechanics (74L15) Cell movement (chemotaxis, etc.) (92C17)
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Cites Work
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- A Brownian dynamics model of kinesin in three dimensions incorporating the force-extension profile of the coiled-coil cargo tether
- Molecular modeling and simulation. An interdisciplinary guide
- Direct numerical simulation of the Brownian motion of particles by using fluctuating hydrodynamic equations
- A note on the correspondence of an immersed boundary method incorporating thermal fluctuations with Stokesian-Brownian dynamics
- Error analysis of a stochastic immersed boundary method incorporating thermal fluctuations
- Velocity correlations of a thermally fluctuating Brownian particle: a novel model of the hydrodynamic coupling
- Statistical physics II. Nonequilibrium statistical mechanics. Rev. transl. of the rev. orig. Jap. ed.
- Higher-order implicit strong numerical schemes for stochastic differential equations
- Computational cell biology
- Fluctuating hydrodynamics and Brownian motion
- Accelerated Stokesian Dynamics simulations
- Diffusion Equation versus Coupled Langevin Equations Approach to Hydrodynamics of Dilute Polymer Solutions
- Application of the Langevin equation to fluid suspensions
- Long-Time-Step Methods for Oscillatory Differential Equations
- Numerical simulations of particulate suspensions via a discretized Boltzmann equation. Part 1. Theoretical foundation
- Stochastic Mode Reduction for the Immersed Boundary Method
- Long-Time Energy Conservation of Numerical Methods for Oscillatory Differential Equations
- Numerical Methods for Stochastic Systems Preserving Symplectic Structure
- A mathematical framework for stochastic climate models
- Fourth-Order Time-Stepping for Stiff PDEs