An Introduction to Modeling and Simulation of Particulate Flows

This book PDF is perfect for those who love Science genre, written by T. I. Zohdi and published by SIAM which was released on 01 January 2007 with total hardcover pages 194. You could read this book directly on your devices with pdf, epub and kindle format, check detail and related An Introduction to Modeling and Simulation of Particulate Flows books below.

An Introduction to Modeling and Simulation of Particulate Flows
Author : T. I. Zohdi
File Size : 53,7 Mb
Publisher : SIAM
Language : English
Release Date : 01 January 2007
ISBN : 0898718929
Pages : 194 pages
Get Book

An Introduction to Modeling and Simulation of Particulate Flows by T. I. Zohdi Book PDF Summary

The relatively recent increase in computational power available for mathematical modeling and simulation raises the possibility that modern numerical methods can play a significant role in the analysis of complex particulate flows. An Introduction to Modeling and Simulation of Particulate Flows focuses on basic models and physically based computational solution strategies for the direct and rapid simulation of flowing particulate media. Its emphasis is primarily on fluidized dry particulate flows in which there is no significant interstitial fluid, although fully coupled fluid-particle systems are discussed as well. An introduction to basic computational methods for ascertaining optical responses of particulate systems also is included. The successful analysis of a wide range of applications requires the simulation of flowing particulate media that simultaneously involves near-field interaction and contact between particles in a thermally sensitive environment. These systems naturally occur in astrophysics and geophysics; powder processing pharmaceutical industries; bio-, micro- and nanotechnologies; and applications arising from the study of spray processes involving aerosols, sputtering, and epitaxy. Audience: written for computational scientists, numerical analysts, and applied mathematicians, it will be of interest to civil and mechanical engineers and materials scientists. It is also suitable for first-year graduate students in the applied sciences, engineering, and applied mathematics who have an interest in the computational analysis of complex particulate flows.

An Introduction to Modeling and Simulation of Particulate Flows

The relatively recent increase in computational power available for mathematical modeling and simulation raises the possibility that modern numerical methods can play a significant role in the analysis of complex particulate flows. An Introduction to Modeling and Simulation of Particulate Flows focuses on basic models and physically based computational solution

Get Book
Modeling of Gas to Particle Mass Transfer in Turbulent Flows

This Brief focuses on the dispersion of high-porosity particles, their entrainment into the vapor-laden stream, and the condensation of vapor onto the particles. The authors begin with a simple/static problem, focusing on transport within the particle. They go on to consider the high-resolution simulation of particles in a turbulent

Get Book
Modelling and Simulation of Particulate Flows in Curved Ducts

Download or read online Modelling and Simulation of Particulate Flows in Curved Ducts written by Derrick Ovunda Njobuenwu, published by Unknown which was released on 2010. Get Modelling and Simulation of Particulate Flows in Curved Ducts Books now! Available in PDF, ePub and Kindle.

Get Book
Modeling and Simulation of Infectious Diseases

The COVID-19 pandemic that started in 2019-2020 has led to a gigantic increase in modeling and simulation of infectious diseases. There are numerous topics associated with this epoch-changing event, such as (a) disease propagation, (b) transmission, (c) decontamination, and (d) vaccines. This is an evolving field. The targeted objective of

Get Book
An Introduction to Compressed Sensing

Compressed sensing is a relatively recent area of research that refers to the recovery of high-dimensional but low-complexity objects from a limited number of measurements. The topic has applications to signal/image processing and computer algorithms, and it draws from a variety of mathematical techniques such as graph theory, probability

Get Book
Interpolatory Methods for Model Reduction

Dynamical systems are a principal tool in the modeling, prediction, and control of a wide range of complex phenomena. As the need for improved accuracy leads to larger and more complex dynamical systems, direct simulation often becomes the only available strategy for accurate prediction or control, inevitably creating a considerable

Get Book
Dynamics of Charged Particulate Systems

The objective of this monograph is to provide a concise introduction to the dynamics of systems comprised of charged small-scale particles. Flowing, small-scale, particles ("particulates'') are ubiquitous in industrial processes and in the natural sciences. Applications include electrostatic copiers, inkjet printers, powder coating machines, etc., and a variety of manufacturing

Get Book
Multiphase reacting flows  modelling and simulation

This book describes the most widely applicable modeling approaches. Chapters are organized in six groups covering from fundamentals to relevant applications. The book covers particle-based methods and also discusses Eulerian-Eulerian and Eulerian-Lagrangian techniques based on finite-volume schemes. Moreover, the possibility of modeling the poly-dispersity of the secondary phases in Eulerian-Eulerian

Get Book