By Hugo A. Jakobsen

Chemical Reactor Modeling closes the space among Chemical response Engineering and Fluid Mechanics. The moment version involves volumes:
Volume 1: Fundamentals.
Volume 2: Chemical Engineering Applications
In quantity 1 many of the basic concept is gifted. a couple of numerical version simulation program examples are given to clarify the hyperlink among thought and functions. In quantity 2 the chemical reactor gear to be modeled are defined. numerous engineering versions are brought and discussed.

A survey of the often used numerical tools, algorithms and schemes is supplied. a couple of sensible engineering purposes of the modeling instruments are awarded and mentioned. The operating ideas of numerous experimental innovations hired so one can get facts for version validation are outlined.

The monograph is based on lectures usually taught within the fourth and 5th years graduate classes in shipping phenomena and chemical reactor modeling and in a publish graduate direction in sleek reactor modeling on the Norwegian college of technology and expertise, division of Chemical Engineering, Trondheim, Norway. the target of the e-book is to give the basics of the single-fluid and multi-fluid versions for the research of unmarried and multiphase reactive flows in chemical reactors with a chemical reactor engineering instead of mathematical bias. equipped into thirteen chapters, it combines theoretical features and useful functions and covers a number of the contemporary study in numerous components of chemical reactor engineering. This booklet encompasses a survey of the fashionable literature within the box of chemical reactor modeling.

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Extra info for Chemical Reactor Modeling Multiphase Reactive Flows

Example text

The governing equations are applied to turbulent flows in the subsequent portion of sections in the chapter. The theory of single phase materials is not only of principal importance analyzing single phase reactor systems, it also serves as basis for the description of multiphase flows. 1 Basic Principles of Fluid Mechanics Fluid mechanics is the study of motions of gases and liquids. In the literature the subject is often divided into compressible and incompressible flows. However, the strict mathematical definitions of these two types of flows are not trivial.

1 Stoichiometric Formulation . . . . . . . . . . 2 Non-stoichiometric formulation . . . . . . . . 659 660 660 663 665 666 670 674 References . . . . . . . . . . . . . . . . . . . . . . . . . . 677 7 679 679 Agitation and Fluid Mixing Technology . . . . . . . . . 1 Tank Geometry and Impeller Design . . . . . . . . . . 2 Fluid Shear Rates, Impeller Pumping Capacity and Power Consumption . . . . . . . . . . . . . . .

4 Turbulent Reactive Flow in Stirred Tank . . . . 4 Heat Transfer in Stirred Tank Reactors . . . . . . . . . 5 Scale-up of Single Phase Non-Reactive Turbulent Stirred Tanks . . . . . . . . . . . . . . . . . . . . . . . 6 Mixing of Multi-Phase Systems . . . . . . . . . . . . 7 Governing Equations in Relative and Absolute Frames . . 1 Governing Eulerian Flow Equations in the Laboratory Frame . . . . . . . .

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