COMSOL 5: The Practical Manual of the Chemical Engineer for Fluid Mechanics Since most chemical processing applications are either partially or entirely in liquid phase, chemical engineers need to master fluid mechanics. This knowledge is particularly valuable in the biochemical and chemical industries, energy, fermentation, materials, metallurgy, petroleum, pharmaceuticals, polymer and waste processing industry. Fluid Mechanics for Chemical Engineers: With Microfluidics, CFD, and COMSOL Multiphysics 5, the third edition, systematically presents fluid mechanics from the point of view of a chemical engineer who must understand actual physical behavior and solve real world problems.
Based on the award-winning Academy Award for Choice, this edition also features the famous COMSOL Multiphysics 5 program. This third edition contains comprehensive coverage of both microfluidic and fluid fluid dynamics, which systematically demonstrates CFD through detailed examples using COMSOL Multiphysics 5 and ANSYS Fluent.
The chapter on turbulence now offers valuable CFD techniques to investigate practical situations such as turbulent mixing and recycled flow. The first part provides a clear, concise, and traceable introduction to the mechanics of fluid, including physical properties; Basic price rules and basic principles of flow through equipment.
The second part turns into microscopic fluid mechanics. Differential equations of flow mechanics for flow-related problems, some of which include polymer processing, non-rotary, non-rotary, and porous media flows from the boundary layers to lubrication, dissolving, and thin membrane applications. Two-phase flow, and non-Newtonian liquids, including flexible and flexible fluids, electromagnetic and electric current flows including electrolysis, electrophoresis, flow potential, and conversion Lord mechanical fluid compatibility with ANSYS Fluent and COMSOL Multiphysics ten new examples COMSOL 5: the flow boundary layer, non-newtonian flow, the flow of the jet, the flow lathe, lubrication, the spread of momentum, turbulent flow, and others.
More than 300 problems are presented at the end of the different complexity chapter, including many University of Cambridge exams. The author covers all materials required for the fluid mechanics part of the professional engineer exam..
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