Chemical Reaction Engineering : A Computer-Aided Approach /
Follow step-by-step explanations to understand mathematical models – algebraic and differential equations – of chemical reactors and how numerical models workin computer implementation. Learn the basics behind current user-friendly tools in numerical simulation and optimization of reactor systems (P...
Main Authors: | , , , , |
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Format: | software, multimedia |
Language: | eng |
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Berlin : De Gruyter,
2023
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Subjects: | |
Online Access: | https://www-degruyter-com.ezproxy.utm.my/document/doi/10.1515/9783110797985/html#contents |
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author | Salmi, Tapio, author 495136 Hernández Carucci, José Rafael, author 654065 Wärnå, Johan, author 495138 de Araújo Filho, César A., author 654066 De Gruyter (Online service) 654067 |
author_facet | Salmi, Tapio, author 495136 Hernández Carucci, José Rafael, author 654065 Wärnå, Johan, author 495138 de Araújo Filho, César A., author 654066 De Gruyter (Online service) 654067 |
author_sort | Salmi, Tapio, author 495136 |
collection | OCEAN |
description | Follow step-by-step explanations to understand mathematical models – algebraic and differential equations – of chemical reactors and how numerical models workin computer implementation. Learn the basics behind current user-friendly tools in numerical simulation and optimization of reactor systems (Python, Matlab, Julia and gPROMS). Discover how to select the right algorithm for specific reactor models from homogenous to multiphase systems and structured reactors in detailed discussions at the end of each chapter. In this second edition, 20 solved example simulations performed in MATLAB and Python are included for demonstration purposes. |
first_indexed | 2024-07-04T04:50:45Z |
format | software, multimedia |
id | KOHA-OAI-TEST:611173 |
institution | Universiti Teknologi Malaysia - OCEAN |
language | eng |
last_indexed | 2024-12-08T04:39:56Z |
publishDate | 2023 |
publisher | Berlin : De Gruyter, |
record_format | dspace |
spelling | KOHA-OAI-TEST:6111732024-10-06T11:13:51ZChemical Reaction Engineering : A Computer-Aided Approach / Salmi, Tapio, author 495136 Hernández Carucci, José Rafael, author 654065 Wärnå, Johan, author 495138 de Araújo Filho, César A., author 654066 De Gruyter (Online service) 654067 software, multimedia Electronic books 631902 Berlin : De Gruyter,2023engFollow step-by-step explanations to understand mathematical models – algebraic and differential equations – of chemical reactors and how numerical models workin computer implementation. Learn the basics behind current user-friendly tools in numerical simulation and optimization of reactor systems (Python, Matlab, Julia and gPROMS). Discover how to select the right algorithm for specific reactor models from homogenous to multiphase systems and structured reactors in detailed discussions at the end of each chapter. In this second edition, 20 solved example simulations performed in MATLAB and Python are included for demonstration purposes.Includes index.1 Introduction -- 2 Kinetics in reaction engineering -- 3 Modelling of homogeneous systems -- 4 Modelling of fixed beds and fluidized beds -- 5 Modelling of three-phase systems -- 6 Modelling of gas-liquid systems -- 7 Structured reactors -- 8 Modelling of unsteady-state reactor systems -- 9 Equipment and models for laboratory experiments -- 10 Parameter estimation in reaction engineering -- References -- Exercises -- Appendices -- Appendix A. Numerical strategies in the solution of nonlinear algebraic equations and ordinary differential equations Two kinds of numerical tasks appear very often in solving tasks -- Appendix B. Computer simulation of CSTR, PFR and batch reactor models -- Appendix C. Numerical simulation of non-isothermal tubular reactors -- IndexFollow step-by-step explanations to understand mathematical models – algebraic and differential equations – of chemical reactors and how numerical models workin computer implementation. Learn the basics behind current user-friendly tools in numerical simulation and optimization of reactor systems (Python, Matlab, Julia and gPROMS). Discover how to select the right algorithm for specific reactor models from homogenous to multiphase systems and structured reactors in detailed discussions at the end of each chapter. In this second edition, 20 solved example simulations performed in MATLAB and Python are included for demonstration purposes.MATLABChemical reactorsChemical engineeringChemical Engineeringhttps://www-degruyter-com.ezproxy.utm.my/document/doi/10.1515/9783110797985/html#contentsURN:ISBN:9783110797985 |
spellingShingle | MATLAB Chemical reactors Chemical engineering Chemical Engineering Salmi, Tapio, author 495136 Hernández Carucci, José Rafael, author 654065 Wärnå, Johan, author 495138 de Araújo Filho, César A., author 654066 De Gruyter (Online service) 654067 Chemical Reaction Engineering : A Computer-Aided Approach / |
title | Chemical Reaction Engineering : A Computer-Aided Approach / |
title_full | Chemical Reaction Engineering : A Computer-Aided Approach / |
title_fullStr | Chemical Reaction Engineering : A Computer-Aided Approach / |
title_full_unstemmed | Chemical Reaction Engineering : A Computer-Aided Approach / |
title_short | Chemical Reaction Engineering : A Computer-Aided Approach / |
title_sort | chemical reaction engineering a computer aided approach |
topic | MATLAB Chemical reactors Chemical engineering Chemical Engineering |
url | https://www-degruyter-com.ezproxy.utm.my/document/doi/10.1515/9783110797985/html#contents |
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