Numerical Simulation in Fluid Dynamics

Numerical Simulation in Fluid Dynamics
Author :
Publisher : SIAM
Total Pages : 222
Release :
ISBN-10 : 9780898713985
ISBN-13 : 0898713986
Rating : 4/5 (85 Downloads)

Synopsis Numerical Simulation in Fluid Dynamics by : Michael Griebel

In this translation of the German edition, the authors provide insight into the numerical simulation of fluid flow. Using a simple numerical method as an expository example, the individual steps of scientific computing are presented: the derivation of the mathematical model; the discretization of the model equations; the development of algorithms; parallelization; and visualization of the computed data. In addition to the treatment of the basic equations for modeling laminar, transient flow of viscous, incompressible fluids - the Navier-Stokes equations - the authors look at the simulation of free surface flows; energy and chemical transport; and turbulence. Readers are enabled to write their own flow simulation program from scratch. The variety of applications is shown in several simulation results, including 92 black-and-white and 18 color illustrations. After reading this book, readers should be able to understand more enhanced algorithms of computational fluid dynamics and apply their new knowledge to other scientific fields.

Coupled CFD-DEM Modeling

Coupled CFD-DEM Modeling
Author :
Publisher : John Wiley & Sons
Total Pages : 436
Release :
ISBN-10 : 9781119005131
ISBN-13 : 1119005132
Rating : 4/5 (31 Downloads)

Synopsis Coupled CFD-DEM Modeling by : Hamid Reza Norouzi

Discusses the CFD-DEM method of modeling which combines both the Discrete Element Method and Computational Fluid Dynamics to simulate fluid-particle interactions. Deals with both theoretical and practical concepts of CFD-DEM, its numerical implementation accompanied by a hands-on numerical code in FORTRAN Gives examples of industrial applications

Stochastic Simulation Optimization For Discrete Event Systems: Perturbation Analysis, Ordinal Optimization And Beyond

Stochastic Simulation Optimization For Discrete Event Systems: Perturbation Analysis, Ordinal Optimization And Beyond
Author :
Publisher : World Scientific
Total Pages : 274
Release :
ISBN-10 : 9789814513029
ISBN-13 : 9814513024
Rating : 4/5 (29 Downloads)

Synopsis Stochastic Simulation Optimization For Discrete Event Systems: Perturbation Analysis, Ordinal Optimization And Beyond by : Chun-hung Chen

Discrete event systems (DES) have become pervasive in our daily lives. Examples include (but are not restricted to) manufacturing and supply chains, transportation, healthcare, call centers, and financial engineering. However, due to their complexities that often involve millions or even billions of events with many variables and constraints, modeling these stochastic simulations has long been a “hard nut to crack”. The advance in available computer technology, especially of cluster and cloud computing, has paved the way for the realization of a number of stochastic simulation optimization for complex discrete event systems. This book will introduce two important techniques initially proposed and developed by Professor Y C Ho and his team; namely perturbation analysis and ordinal optimization for stochastic simulation optimization, and present the state-of-the-art technology, and their future research directions.

Computational Fluid Dynamics

Computational Fluid Dynamics
Author :
Publisher :
Total Pages : 224
Release :
ISBN-10 : 1523125837
ISBN-13 : 9781523125838
Rating : 4/5 (37 Downloads)

Synopsis Computational Fluid Dynamics by : Xiaofeng Liu

Mathematical Modelling of Fluid Dynamics and Nanofluids

Mathematical Modelling of Fluid Dynamics and Nanofluids
Author :
Publisher : CRC Press
Total Pages : 556
Release :
ISBN-10 : 9781000933369
ISBN-13 : 1000933369
Rating : 4/5 (69 Downloads)

Synopsis Mathematical Modelling of Fluid Dynamics and Nanofluids by : Katta Ramesh

Mathematical Modelling of Fluid Dynamics and Nanofluids serves as a comprehensive resource for various aspects of fluid dynamics simulations, nanofluid preparation, and numerical techniques. The book examines the practical implications and real-world applications of various concepts, including nanofluids, magnetohydrodynamics, heat and mass transfer, and radiation. By encompassing these diverse domains, it offers readers a broad perspective on the interconnectedness of these fields. The primary audience for this book includes researchers and graduate students who possess a keen interest in interdisciplinary studies within the realms of fluid dynamics, nanofluids, and biofluids. Its content caters to those who wish to deepen their knowledge and tackle complex problems at the intersection of these disciplines.

Multiphysics Modelling of Fluid-Particulate Systems

Multiphysics Modelling of Fluid-Particulate Systems
Author :
Publisher : Academic Press
Total Pages : 384
Release :
ISBN-10 : 9780128183465
ISBN-13 : 0128183462
Rating : 4/5 (65 Downloads)

Synopsis Multiphysics Modelling of Fluid-Particulate Systems by : Hassan Khawaja

Multiphysics Modelling of Fluid-Particulate Systems provides an explanation of how to model fluid-particulate systems using Eulerian and Lagrangian methods. The computational cost and relative merits of the different methods are compared, with recommendations on where and how to apply them provided. The science underlying the fluid-particulate phenomena involves computational fluid dynamics (for liquids and gases), computational particle dynamics (solids), and mass and heat transfer. In order to simulate these systems, it is essential to model the interactions between phases and the fluids and particles themselves. This book details instructions for several numerical methods of dealing with this complex problem. This book is essential reading for researchers from all backgrounds interested in multiphase flows or fluid-solid modeling, as well as engineers working on related problems in chemical engineering, food science, process engineering, geophysics or metallurgical processing. - Provides detailed coverage of Resolved and Unresolved Computational Fluid Dynamics - Discrete Element Method (CFD-DEM), Smoothed Particle Hydrodynamics, and their various attributes - Gives an excellent summary of a range of simulation techniques and provides numerical examples - Starts with a broad introduction to fluid-particulate systems to help readers from a range of disciplines grasp fundamental principles