Special Issue on Adaptive Mesh Refinement Methods for CFD Applications

Special Issue on Adaptive Mesh Refinement Methods for CFD Applications
Title Special Issue on Adaptive Mesh Refinement Methods for CFD Applications PDF eBook
Author
Publisher
Pages 135
Release 1996
Genre
ISBN

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Adaptive Mesh Refinement - Theory and Applications

Adaptive Mesh Refinement - Theory and Applications
Title Adaptive Mesh Refinement - Theory and Applications PDF eBook
Author Tomasz Plewa
Publisher Springer Science & Business Media
Pages 550
Release 2005-12-20
Genre Mathematics
ISBN 3540270396

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Advanced numerical simulations that use adaptive mesh refinement (AMR) methods have now become routine in engineering and science. Originally developed for computational fluid dynamics applications these methods have propagated to fields as diverse as astrophysics, climate modeling, combustion, biophysics and many others. The underlying physical models and equations used in these disciplines are rather different, yet algorithmic and implementation issues facing practitioners are often remarkably similar. Unfortunately, there has been little effort to review the advances and outstanding issues of adaptive mesh refinement methods across such a variety of fields. This book attempts to bridge this gap. The book presents a collection of papers by experts in the field of AMR who analyze past advances in the field and evaluate the current state of adaptive mesh refinement methods in scientific computing.

Adaptive Mesh Refinement Method for CFD Applications

Adaptive Mesh Refinement Method for CFD Applications
Title Adaptive Mesh Refinement Method for CFD Applications PDF eBook
Author Oscar Luis Antepara Zambrano
Publisher
Pages 158
Release 2019
Genre
ISBN

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The main objective of this thesis is the development of an adaptive mesh refinement (AMR) algorithm for computational fluid dynamics simulations using hexahedral and tetrahedral meshes. This numerical methodology is applied in the context of large-eddy simulations (LES) of turbulent flows and direct numerical simulations (DNS) of interfacial flows, to bring new numerical research and physical insight. For the fluid dynamics simulations, the governing equations, the spatial discretization on unstructured grids and the numerical schemes for solving Navier-Stokes equations are presented. The equations follow a discretization by conservative finite-volume on collocated meshes. For the turbulent flows formulation, the spatial discretization preserves symmetry properties of the continuous differential operators and the time integration follows a self-adaptive strategy, which has been well tested on unstructured grids. Moreover, LES model consisting of a wall adapting local-eddy-viscosity within a variational multi-scale formulation is used for the applications showed in this thesis. For the two-phase flow formulation, a conservative level-set method is applied for capturing the interface between two fluids and is implemented with a variable density projection scheme to simulate incompressible two-phase flows on unstructured meshes. The AMR algorithm developed in this thesis is based on a quad/octree data structure and keeps a relation of 1:2 between levels of refinement. In the case of tetrahedral meshes, a geometrical criterion is followed to keep the quality metric of the mesh on a reasonable basis. The parallelization strategy consists mainly in the creation of mesh elements in each sub-domain and establishes a unique global identification number, to avoid duplicate elements. Load balance is assured at each AMR iteration to keep the parallel performance of the CFD code. Moreover, a mesh multiplication algorithm (02) is reported to create large meshes, with different kind of mesh elements, but preserving the topology from a coarser original mesh. This thesis focuses on the study of turbulent flows and two-phase flows using an AMR framework. The cases studied for LES of turbulent flows applications are the flow around one and two separated square cylinders, and the flow around a simplified car model. In this context, a physics-based refinement criterion is developed, consisting of the residual velocity calculated from a multi-scale decomposition of the instantaneous velocity. This criteria ensures grid adaptation following the main vortical structures and giving enough mesh resolution on the zones of interest, i.e., flow separation, turbulent wakes, and vortex shedding. The cases studied for the two-phase flows are the DNS of 2D and 3D gravity-driven bubble, with a particular focus on the wobbling regime. A study of rising bubbles in the wobbling regime and the effect of dimensionless numbers on the dynamic behavior of the bubbles are presented. Moreover, the use of tetrahedral AMR is applied for the numerical simulation of gravity-driven bubbles in complex domains. On this topic, the methodology is validated on bubbles rising in cylindrical channels with different topology, where the study of these cases contributed to having new numerical research and physical insight in the development of a rising bubble with wall effects.

An Adaptive Mesh Refinement Technique for Two-dimensional Problems and Its Application to the Analysis of Shear Bands

An Adaptive Mesh Refinement Technique for Two-dimensional Problems and Its Application to the Analysis of Shear Bands
Title An Adaptive Mesh Refinement Technique for Two-dimensional Problems and Its Application to the Analysis of Shear Bands PDF eBook
Author I. Ko Kwang
Publisher
Pages 30
Release 1992
Genre
ISBN

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ICASE/LaRC Workshop on Adaptive Grid Methods

ICASE/LaRC Workshop on Adaptive Grid Methods
Title ICASE/LaRC Workshop on Adaptive Grid Methods PDF eBook
Author
Publisher
Pages 280
Release 1995
Genre
ISBN

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Grid-quality Measures for Error Estimation and Solution-adaptive Mesh Refinement in CFD

Grid-quality Measures for Error Estimation and Solution-adaptive Mesh Refinement in CFD
Title Grid-quality Measures for Error Estimation and Solution-adaptive Mesh Refinement in CFD PDF eBook
Author Xubin Gu
Publisher
Pages 488
Release 2002
Genre Fluid dynamic measurements
ISBN

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Cartesian CFD Methods for Complex Applications

Cartesian CFD Methods for Complex Applications
Title Cartesian CFD Methods for Complex Applications PDF eBook
Author Ralf Deiterding
Publisher Springer Nature
Pages 144
Release 2021-04-03
Genre Mathematics
ISBN 3030617610

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This volume collects the most important contributions from four minisymposia from ICIAM 2019. The papers highlight cutting-edge applications of Cartesian CFD methods and describe the employed algorithms and numerical schemes. An emphasis is laid on complex multi-physics applications like magnetohydrodynamics, combustion, aerodynamics with fluid-structure interaction, solved with various discretizations, e.g. finite difference, finite volume, multiresolution or lattice Boltzmann CFD schemes. Software design aspects and parallelization challenges are also considered. The book is addressed to graduate students and scientists in the fields of applied mathematics and computational engineering.