Friction and mobility of many spheres in Stokes flow
Explore this paper's citation graph
- Type
- article
- Published
- 1994-03-01
- Cited by
- 244
- References
- 45
- OpenAlex
- https://openalex.org/W2011538418
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:17205053
Keywords
SPHERES, Stokes flow, Flow (mathematics), Boundary (topology), Mechanics
References
- Microhydrodynamics: Principles and Selected Applications
- Rheology of polymer suspensions: II. Translation, rotation and viscosity
- Force density induced on a sphere in linear hydrodynamics
- Validity of the superposition approximation in an application of the modified Oseen tensor to rigid polymers
- Displacement theorems for spherical solutions of the linear Navier-Stokes equations
- The Intrinsic Viscosity, Translational and Rotatory Diffusion Constants of Rod‐Like Macromolecules in Solution
- The rheology of a suspension of particles in a Newtonian fluid
- Convective motion and transfer of force by many-body hydrodynamic interaction
- Force multipole moments for a spherically symmetric particle in solution
- Hydrodynamic interactions: a many-body problem in the theory of suspensions
- Sedimentation and convective flow in suspensions of spherical particles
- Many-body hydrodynamic interactions in suspensions
- Hydrodynamic interactions and the viscosity of suspensions of freely moving spheres
- Brownian dynamic with hydrodynamic interactions: the application to protein diffusional problems
- Stokes flow past three spheres: An analytic solution
- Hydrodynamic interactions in a suspension of spherical particles
- Many-sphere hydrodynamic interactions and mobilities in a suspension
- Hydrodynamic interactions in suspensions with periodic boundary conditions
- Stokes drag on hollow cylinders and conglomerates
- PERIODIC FUNDAMENTAL SOLUTION OF THE LINEAR NAVIER-STOKES EQUATIONS
Cited by
- Short-time dynamics of permeable particles in concentrated suspensions.
- Green Tensor for a General Anisotropic Slip Condition
- Toward an Accurate Modeling of Hydrodynamic Effects on the Translational and Rotational Dynamics of Biomolecules in Many-Body Systems.
- Stokesian simulation of two unequal spheres in a pressure-driven creeping flow through a cylinder
- Three-particle motion under gravity in Stokes flow: an equilibrium for spheres in contrast to "an end-of-world" for point particles
- Many-body microhydrodynamics of colloidal particles with active boundary layers
- Spectral Ewald Acceleration of Stokesian Dynamics for polydisperse suspensions
- Effects of Hydrodynamic Interactions on the Apparent 1D Mobility of a Nonspecifically Bound Protein Following a Helical Path around DNA.
- Hydrodynamic interactions in a suspension with a structured fluid I. General expressions for the mobilities
- Stokes drag on conglomerates of spheres
- Diffusion, sedimentation, and rheology of concentrated suspensions of core-shell particles.
- Physical Properties of Model Colloidal Liquids Using Brownian Dynamics Simulation
- Rate of diffusion-limited reactions in a cluster of spherical sinks
- Physalis: a new o(N) method for the numerical simulation of disperse systems: potential flow of spheres
- Motion of a spherical particle near a planar fluid-fluid interface: the effect of surface incompressibility.
- Hydrodynamics of linked sphere model swimmers
- Fundamentals of the dynamics in concentrated suspensions
- High-frequency viscosity and generalized Stokes–Einstein relations in dense suspensions of porous particles
- Hydrodynamic interactions of spherical particles in quadratic Stokes flows
- Hydrodynamic friction coefficients of coated spherical particles.
Related papers
- Second-order Percus-Yevick theory for the radial distribution functions of a mixture of hard spheres in the limit of zero concentration of the large spheres
- Geometry of four hard fused spheres in an arbitrary spatial configuration
- Relaxation Effects in the Transport Properties of a Gas of Rough Spheres
- Viscosity of Polymer Solutions
- Low-density fluid phase of dipolar hard spheres.
- Packing sticky hard spheres into rigid zeolite frameworks
- Enhanced stability of layered phases in parallel hard spherocylinders due to addition of hard spheres
- Theoretical calculation of dense random packings of equal and non-equal sized hard spheres applications to amorphous metallic alloys☆
- Fluid of penetrable spheres: testing the universality of the bridge functional