Publication: Numerical solution techniques
Program
KU-Authors
KU Authors
Co-Authors
Avci, Ahmet Kerim
Publication Date
Language
Type
Embargo Status
Journal Title
Journal ISSN
Volume Title
Alternative Title
Abstract
The present chapter provides an overview of several numerical techniques that can be used to solve model equations of ordinary and partial differential type, both of which are frequently encountered in multiphase catalytic reactor analysis and design. Brief theories of the ordinary differential equation solution methods are provided. The techniques and software involved in the numerical solution of partial differential equation sets, which allow accurate prediction of nonreactive and reactive transport phenomena in conventional and nonconventional geometries, are explained briefly. The chapter is concluded with two case studies that demonstrate the application of numerical solution techniques in modeling and simulation of hydrocarbon-to-hydrogen conversions in catalytic packed-bed and heat-exchange integrated microchannel reactors.
Source
Publisher
Wiley
Subject
Engineering, Chemical and biological engineering
Citation
Has Part
Source
Multiphase Catalytic Reactors: Theory, Design, Manufacturing, and Applications
Book Series Title
Edition
DOI
10.1002/9781119248491.ch11