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Scientific Computing in Chemical Engineering Book

Scientific Computing in Chemical Engineering
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Scientific Computing in Chemical Engineering, Scientific Computing in Chemical Engineering gives the state of the art from the point of view of the numerical mathematicians as well as from the engineers. The application of modern methods in numerical mathematics on problems in chemical engineering, e, Scientific Computing in Chemical Engineering
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  • Scientific Computing in Chemical Engineering
  • Written by author Frerich Keil
  • Published by Springer-Verlag New York, LLC, 7/31/2012
  • Scientific Computing in Chemical Engineering gives the state of the art from the point of view of the numerical mathematicians as well as from the engineers. The application of modern methods in numerical mathematics on problems in chemical engineering, e
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Authors

Combustion of Coal in Pressurized Fluidized Bed Reactors 1
Parallel Evolutionary Algorithms for Optimizing the Unifac Matrix on Workstation Clusters 11
Euler/Euler Modelling of Fluidized Bed Fluiddynamics 22
Dynamic Dimension Reduction in ODE Models 29
Compact Finite Difference Methods for the Solution of Chemical Engineering Problems 44
Advantages of an Adaptive Method: The Simulation of a Fixed-Bed Reactor with Periodic Flow Reversal 51
A Mathematical Model of Emulsion Polymerization 60
Differential-Algebraic Systems in the Chemical Process Simulation 68
Optimal Temperature Control of Semibatch Polymerization Reactors 75
Micro- and Macro-Scales in Porous Reactors and Their Modelling 84
Application of Numerical Methods in Process Engineering 92
Simulation of Reacting Particles Applying Orthogonal Collocation on Finite Elements 111
Partitioning in Reaction Kinetics 122
Qualitative Properties of a Model for Carrier Facilitated Groundwater Contaminant Transport 129
Numerical Solution of Reaction-Diffusion Equations 136
Parameter Estimation and Optimal Control for Dynamic Chemical Processes 142
Analysis of Unsteady State Chemical Reactors by Continuation Methods 149
On Line Recognition of Critical States in Chemical Reaction Systems 156
PDEX1M - A Software Package for the Numerical Solution of Parabolic Systems in One Space Dimension 163
Modelling and simulation of complex biochemical processes, taking the Biogas Tower Reactor as an example 170
Subspace Search Methods for Large Scale Nonlinear Optimization 183
Computersimulation of the Self-Heating and Auto-Ignition of Activated Carbon Adsorbers 190
Optimization of Three-Dimensional Catalyst Pore Structures 198
Bacterial Growth and Bioremediation 205
Numerical Treatment of Diffusion-Reaction-Equations with the Method of Lines 212
An Adaptive Algorithm for Solving the Biharmonic Equation on Sparse Grids 219
Parameter Estimation in Chemical Engineering, a Case Study for Resin Production 226
Modelling of Chemical Reaction Systems - Parameter Redundancy and Effective Kinetics 239
A Wavelet-Galerkin Method Applied to Separation Processes 246
Application of Automatically Reduced Reaction Mechanisms in the Calculation of Turbulent Reactive Flows 253


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