Assessment Of An Analysis For Predicting The Mixing Of Two Laminar Flows PDF Download

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Micro and Macro Mixing

Micro and Macro Mixing
Author: Henning Bockhorn
Publisher: Springer Science & Business Media
Total Pages: 345
Release: 2009-12-26
Genre: Science
ISBN: 3642045499

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The homogenization of single phase gases or liquids with chemical reactive components by mixing belongs to one of the oldest basic operations applied in chemical engineering. The mixing process is used as an essential step in nearly all processes of the chemical industry as well as the pharmaceutical and food ind- tries. Recent experimentally and theoretically based results from research work lead to a fairly good prediction of the velocity fields in differend kinds of mixers, where as predictions of simultaneously proceeding homogeneous chemical re- tions, are still not reliable in a similar way. Therefore the design of equipment for mixing processes is still derived from measurements of the so called “mixing time” which is related to the applied methods of measurement and the special - sign of the test equipment itself. The cooperation of 17 research groups was stimulated by improved modern methods for experimental research and visualization, for simulations and nume- cal calculations of mixing and chemical reactions in micro and macro scale of time and local coordinates. The research work was financed for a six years period within the recently finished Priority Program of the German Research Foundation (DFG) named “Analysis, modeling and numerical prediction of flow-mixig with and without chemical reactions (SPP 1141)”. The objective of the investigations was to improve the prediction of efficiencies and selectivities of chemical re- tions on macroscopic scale.


Laminar Flow Forced Convection in Ducts

Laminar Flow Forced Convection in Ducts
Author: R. K. Shah
Publisher: Academic Press
Total Pages: 492
Release: 2014-06-28
Genre: Technology & Engineering
ISBN: 1483191303

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Laminar Flow Forced Convection in Ducts is a sourcebook for compact heat exchanger analytical data. This book describes the analytical solutions for laminar fluid flow and forced convection heat transfer in circular and noncircular pipes, including applicable differential equations and boundary conditions involving velocity and temperature problems of fluid flow. The book also discusses fluid flow—how much power is required to pump fluids through the heat exchanger, as well as the heat transfer—the determination of q" distribution, and the temperature of fluid and walls. The text also analyzes the coolant or heat transfer fluid flows in a nuclear power reactor composed of a bundle of circular section fuel rods located inside a round tube. R.A. Axford addresses fluid flow and heat transfers results for the rod bundle geometry in "Heat Transfer in Rod Bundles." The book also provides an overview and guidelines that can be used for the designer and the applied mathematician. This book is suitable for engineers working in electronics, aerospace, instrumentation, and biomechanics that use cooling or heating exchanges or solar collection systems.


Energy Research Abstracts

Energy Research Abstracts
Author:
Publisher:
Total Pages: 496
Release: 1985
Genre: Power resources
ISBN:

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Applied Mechanics Reviews

Applied Mechanics Reviews
Author:
Publisher:
Total Pages: 960
Release: 1981
Genre: Mechanics, Applied
ISBN:

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On the Mixing of Laminar and Turbulent Axially Symmetric Compressible Flows

On the Mixing of Laminar and Turbulent Axially Symmetric Compressible Flows
Author: Gdalia Kleinstein
Publisher:
Total Pages: 75
Release: 1963
Genre:
ISBN:

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A unified analysis to solve mixing problems in volving momentum, energy, and mass transfer in both laminar and turbulent axially symmetric compressible flow is presented. The method is based on the linearization of the conservation equations in the plane of the von Mises varia bles while retaining the essential nonlinear nature of the equations in the physical plane. The application of this method to a laminar flow problem is shown to be in good agreement with a numerical solution of the boundary layer equa tions obtained by Pai. The application of this method to turbulent flow requires an expression for the eddy viscosity. Prandtl's formulation has been applied successfully to problems involv ing incompressible flow. To allow for compressi bility effects, a possible modification of Prandtl's formulation, suggested by Ferri, is in vestigated. When this expression for eddy vis cosity is introduced, the application of the present method to compressible turbulent flow yields analytical results which are in good agreement with available experimental data. (Author).