The Optimal Design of Chemical Reactors
Title | The Optimal Design of Chemical Reactors PDF eBook |
Author | Rutherford Aris |
Publisher | Elsevier |
Pages | 204 |
Release | 2016-06-03 |
Genre | Technology & Engineering |
ISBN | 1483221431 |
Mathematics in Science and Engineering, Volume 3: The Optimal Design of Chemical Reactors: A Study in Dynamic Programming covers some of the significant problems of chemical reactor engineering from a unified point of view. This book discusses the principle of optimality in its general baring on chemical processes. Organized into nine chapters, this volume begins with an overview of the whole range of optimal problems in chemical reactor design. This text then provides the fundamental equations for reactions and reactors. Other chapters consider the objective function needed to define a realistic optimal problem and explain separately the main types of chemical reactors and their associated problems. This book discusses as well the three problems with a stochastic element. The final chapter deals with the optimal operation of existing reactors that may be regarded as partial designs in which only some of the variables can be optimally chosen. This book is a valuable resource for chemical engineers.
Chemical Reactor Design
Title | Chemical Reactor Design PDF eBook |
Author | E. B. Nauman |
Publisher | |
Pages | 426 |
Release | 1987 |
Genre | Chemical reactors |
ISBN | 9780471859307 |
Modeling of Chemical Kinetics and Reactor Design
Title | Modeling of Chemical Kinetics and Reactor Design PDF eBook |
Author | A. Kayode Coker |
Publisher | Gulf Professional Publishing |
Pages | 1132 |
Release | 2001-07-26 |
Genre | Science |
ISBN | 9780884154815 |
This reference conveys a basic understanding of chemical reactor design methodologies that incorporate both control and hazard analysis. It demonstrates how to select the best reactor for any particular chemical reaction, and how to estimate its size to determine the best operating conditions.
Handbook of Chemical Reactor Design, Optimization, and Scaleup
Title | Handbook of Chemical Reactor Design, Optimization, and Scaleup PDF eBook |
Author | Bruce Nauman |
Publisher | McGraw Hill Professional |
Pages | 626 |
Release | 2001-10-21 |
Genre | Technology & Engineering |
ISBN | 007139558X |
THE MODERN GUIDE TO CHEMICAL REACTORS In the best professional sourcebook on chemical reactors ever written, world-class expert Bruce Nauman provides toos, information, and hands-on expertise to make important engineering tasks and decisions easier. Clearly and in depth, CHEMICAL REACTOR DESIGN, OPTIMIZATION AND SCALEUP provides-- * Up-to-date information to help chemical and process engineers save time, money, and materials * Decision-aiding coverage of every aspect of selection, design factors and parameters, optimization, and scaleup * A convenient source of explained formulas, principles, and data * Numerous detailed examples * Worked mathematical solutions * The latest information on reactor design for biochemicals and polymers, as well as other newer and standard substances DESIGN AND SPECIFY CHEMICAL REACTORS CONFIDENTLY, WITH STATE-OF-THE-ART SKILLS
The Optimal Design of Chemical Reactors A Study in Dynamic Programming by Rutherford Aris
Title | The Optimal Design of Chemical Reactors A Study in Dynamic Programming by Rutherford Aris PDF eBook |
Author | Rutherford Aris |
Publisher | Elsevier |
Pages | 204 |
Release | 2000-04-01 |
Genre | Mathematics |
ISBN | 008095779X |
In this book, we study theoretical and practical aspects of computing methods for mathematical modelling of nonlinear systems. A number of computing techniques are considered, such as methods of operator approximation with any given accuracy; operator interpolation techniques including a non-Lagrange interpolation; methods of system representation subject to constraints associated with concepts of causality, memory and stationarity; methods of system representation with an accuracy that is the best within a given class of models; methods of covariance matrix estimation;methods for low-rank matrix approximations; hybrid methods based on a combination of iterative procedures and best operator approximation; andmethods for information compression and filtering under condition that a filter model should satisfy restrictions associated with causality and different types of memory.As a result, the book represents a blend of new methods in general computational analysis,and specific, but also generic, techniques for study of systems theory ant its particularbranches, such as optimal filtering and information compression.- Best operator approximation,- Non-Lagrange interpolation,- Generic Karhunen-Loeve transform- Generalised low-rank matrix approximation- Optimal data compression- Optimal nonlinear filtering
Chemical Reactor Design
Title | Chemical Reactor Design PDF eBook |
Author | Juan A. Conesa |
Publisher | John Wiley & Sons |
Pages | 350 |
Release | 2019-12-04 |
Genre | Science |
ISBN | 3527346309 |
A guide to the technical and calculation problems of chemical reactor analysis, scale-up, catalytic and biochemical reactor design Chemical Reactor Design offers a guide to the myriad aspects of reactor design including the use of numerical methods for solving engineering problems. The author - a noted expert on the topic - explores the use of transfer functions to study residence time distributions, convolution and deconvolution curves for reactor characterization, forced-unsteady-state-operation, scale-up of chemical reactors, industrial catalysis, design of multiphasic reactors, biochemical reactors design, as well as the design of multiphase gas-liquid-solid reactors. Chemical Reactor Design contains several examples of calculations and it gives special emphasis on the numerical solutions of differential equations by using the finite differences approximation, which offers the background information for understanding other more complex methods. The book is designed for the chemical engineering academic community and includes case studies on mathematical modeling by using of MatLab software. This important book: - Offers an up-to-date insight into the most important developments in the field of chemical, catalytic, and biochemical reactor engineering - Contains new aspects such as the use of numerical methods for solving engineering problems, transfer functions to study residence time distributions, and more - Includes illustrative case studies on MatLab approach, with emphasis on numerical solution of differential equations using the finite differences approximation Written for chemical engineers, mechanical engineers, chemists in industry, complex chemists, bioengineers, and process engineers, Chemical Reactor Design addresses the technical and calculation problems of chemical reactor analysis, scale-up, as well as catalytic and biochemical reactor design.
Chemical Reactor Design and Control
Title | Chemical Reactor Design and Control PDF eBook |
Author | William L. Luyben |
Publisher | John Wiley & Sons |
Pages | 425 |
Release | 2007-07-16 |
Genre | Technology & Engineering |
ISBN | 0470134909 |
Chemical Reactor Design and Control uses process simulators like Matlab®, Aspen Plus, and Aspen Dynamics to study the design of chemical reactors and their dynamic control. There are numerous books that focus on steady-state reactor design. There are no books that consider practical control systems for real industrial reactors. This unique reference addresses the simultaneous design and control of chemical reactors. After a discussion of reactor basics, it: Covers three types of classical reactors: continuous stirred tank (CSTR), batch, and tubular plug flow Emphasizes temperature control and the critical impact of steady-state design on the dynamics and stability of reactors Covers chemical reactors and control problems in a plantwide environment Incorporates numerous tables and shows step-by-step calculations with equations Discusses how to use process simulators to address diverse issues and types of operations This is a practical reference for chemical engineering professionals in the process industries, professionals who work with chemical reactors, and students in undergraduate and graduate reactor design, process control, and plant design courses.