Benchmarking the immersed boundary method for viscoelastic flows
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Publication:6498457
DOI10.1016/J.JCP.2024.112888MaRDI QIDQ6498457
Fuhui Fang, M. Gregory Forest, Aaron Barrett, Cole Gruninger, Boyce E. Griffith
Publication date: 7 May 2024
Published in: Journal of Computational Physics (Search for Journal in Brave)
Basic methods in fluid mechanics (76Mxx) Numerical methods for partial differential equations, initial value and time-dependent initial-boundary value problems (65Mxx) Incompressible viscous fluids (76Dxx)
Cites Work
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- An immersed boundary method for rigid bodies
- Fully resolved immersed electrohydrodynamics for particle motion, electrolocation, and self-propulsion
- Complex fluids in biological systems. Experiment, theory, and computation
- Symmetric factorization of the conformation tensor in viscoelastic fluid models
- Stress boundary layers in the viscoelastic flow past a cylinder in a channel: limiting solutions
- An accurate and efficient method for the incompressible Navier-Stokes equations using the projection method as a preconditioner
- A smoothing technique for discrete delta functions with application to immersed boundary method in moving boundary simulations
- Lift vs. drag based mechanisms for vertical force production in the smallest flying insects
- The piecewise parabolic method (PPM) for gas-dynamical simulations
- An adaptive, formally second order accurate version of the immersed boundary method
- Immersed-boundary-type models of intravascular platelet aggregation
- Numerical analysis of blood flow in the heart
- An immersed boundary method with formal second-order accuracy and reduced numerical viscosity
- Immersed boundary smooth extension (IBSE): a high-order method for solving incompressible flows in arbitrary smooth domains
- An adaptive version of the immersed boundary method
- The flow of an Oldroyd-B fluid past a cylinder in a channel: Adaptive viscosity vorticity (DAVSS-\(\omega\)) formulation
- On the Lagrangian-Eulerian coupling in the immersed finite element/difference method
- An analysis of the numerical stability of the immersed boundary method
- An immersed boundary-lattice Boltzmann method for fluid-structure interaction problems involving viscoelastic fluids and complex geometries
- A priori error estimates of regularized elliptic problems
- A Gaussian-like immersed-boundary kernel with three continuous derivatives and improved translational invariance
- Accurate monotonicity- and extrema-preserving methods through adaptive nonlinear hybridizations
- Three-dimensional finite element analysis of the flow of polymer melts
- On the order of accuracy of the immersed boundary method: higher order convergence rates for sufficiently smooth problems
- Time-dependent simulation of viscoelastic flows at high Weissenberg number using the log-conformation representation
- Flow patterns around heart valves: A numerical method
- Numerical evaluation of three-dimensional effects in planar flow birefringence
- Constitutive laws for the matrix-logarithm of the conformation tensor
- Efficient kinematics for jet-propelled swimming
- Analysis of mechanisms for platelet near-wall excess under arterial blood flow conditions
- Immersed boundary model of aortic heart valve dynamics with physiological driving and loading conditions
- Peristaltic Pumping of Solid Particles Immersed in a Viscoelastic Fluid
- Immersed Methods for Fluid–Structure Interaction
- The immersed boundary method
- Convergence proof of the velocity field for a stokes flow immersed boundary method
- On the formulation of rheological equations of state
- Analysis of a One-Dimensional Model for the Immersed Boundary Method
- The Immersed Interface Method for Elliptic Equations with Discontinuous Coefficients and Singular Sources
- Managing application complexity in the SAMRAI object‐oriented framework
- Properties of Discrete Delta Functions and Local Convergence of the Immersed Boundary Method
- High-Order Wave Propagation Algorithms for Hyperbolic Systems
- Quantifying performance in the medusan mechanospace with an actively swimming three-dimensional jellyfish model
- Numerical Study of Stability and Accuracy of the Immersed Boundary Method Coupled to the Lattice Boltzmann BGK Model
- Numerical Methods for Viscoelastic Fluid Flows
- The flow of viscoelastic fluids past a cylinder: Finite volume high-resolution methods
- A remark on jump conditions for the three-dimensional Navier-Stokes equations involving an immersed moving membrane
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