A non-iterative immersed boundary method for spherical particles of arbitrary density ratio
From MaRDI portal
Publication:1685661
DOI10.1016/j.jcp.2017.03.026zbMath1375.76202OpenAlexW2596392287MaRDI QIDQ1685661
Jochen Fröhlich, Silvio Tschisgale, Tobias Kempe
Publication date: 14 December 2017
Published in: Journal of Computational Physics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.jcp.2017.03.026
Related Items (18)
An improved ghost-cell sharp interface immersed boundary method with direct forcing for particle laden flows ⋮ An immersed boundary method for the fluid-structure interaction of slender flexible structures in viscous fluid ⋮ An analysis of the spatio-temporal resolution of the immersed boundary method with direct forcing ⋮ An immersed boundary method for flows with dense particle suspensions ⋮ An immersed boundary projection method for solving the fluid-rigid body interaction problems ⋮ Simulation-based study of turbulent aquatic canopy flows with flexible stems ⋮ A multiscale computational framework using active learning to model complex suspension flows ⋮ Phase‐resolving direct numerical simulations of particle transport in liquids—From microfluidics to sediment ⋮ An efficient method for particle-resolved simulations of neutrally buoyant spheres ⋮ The volume-filtering immersed boundary method ⋮ CP3d: a comprehensive Euler-Lagrange solver for direct numerical simulation of particle-laden flows ⋮ Rotational test spaces for a fully-implicit FVM and FEM for the DNS of fluid-particle interaction ⋮ Gradient-consistent enrichment of finite element spaces for the DNS of fluid-particle interaction ⋮ The immersed boundary-lattice Boltzmann method for solving solid-fluid interaction problem with Navier-slip boundary condition ⋮ A general implicit direct forcing immersed boundary method for rigid particles ⋮ Large eddy simulation of the fluid–structure interaction in an abstracted aquatic canopy consisting of flexible blades ⋮ A stable partitioned FSI algorithm for rigid bodies and incompressible flow in three dimensions ⋮ An immersed boundary method for incompressible flows in complex domains
Uses Software
Cites Work
- An improved immersed boundary method with direct forcing for the simulation of particle laden flows
- A second-order accurate immersed boundary method for fully resolved simulations of particle-laden flows
- Stabilization of explicit coupling in fluid-structure interaction involving fluid incompressibility
- A temporal discretization scheme to compute the motion of light particles in viscous flows by an immersed boundary method
- Imposing the free-slip condition with a continuous forcing immersed boundary method
- A smoothing technique for discrete delta functions with application to immersed boundary method in moving boundary simulations
- A projection algorithm for fluid-structure interaction problems with strong added-mass effect
- Stable loosely-coupled-type algorithm for fluid-structure interaction in blood flow
- A partition of the unit sphere into regions of equal area and small diameter
- An efficient numerical method for the two-fluid Stokes equations with a moving immersed boundary
- Improved volume conservation in the computation of flows with immersed elastic boundaries
- Numerical analysis of blood flow in the heart
- Efficient numerical method for the direct numerical simulation of the flow past a single light moving spherical body in transitional regimes.
- Combined immersed-boundary finite-difference methods for three-dimensional complex flow simulations
- A novel technique for including surface tension in PLIC-VOF methods
- An adaptive version of the immersed boundary method
- An improved level set method for incompressible two-phase flows
- An immersed boundary method for the simulation of bubbles with varying shape
- An immersed boundary method with direct forcing for the simulation of particulate flows
- Impulse functions over curves and surfaces and their applications to diffraction
- Computational Methods for Fluid Dynamics
- Collision modelling for the interface-resolved simulation of spherical particles in viscous fluids
- Direct Numerical Simulations of Gas–Liquid Multiphase Flows
- IMMERSED BOUNDARY METHODS
- Numerical Calculation of Time-Dependent Viscous Incompressible Flow of Fluid with Free Surface
- The immersed boundary method
- Effect of free rotation on the motion of a solid sphere in linear shear flow at moderate Re
- Multigrid computations with the immersed boundary technique for multiphase flows
- Instabilities and transition of a sphere falling or ascending freely in a Newtonian fluid
- The Immersed Interface Method
- Level set methods: An overview and some recent results
- An immersed-boundary finite volume method for simulations of flow in complex geometries
This page was built for publication: A non-iterative immersed boundary method for spherical particles of arbitrary density ratio