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|a Hauke, G.
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|a An Introduction to Fluid Mechanics and Transport Phenomena
|h [electronic resource] /
|c by G. Hauke.
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|a 1st ed. 2008.
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264 |
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|a Dordrecht :
|b Springer Netherlands :
|b Imprint: Springer,
|c 2008.
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|a XIX, 296 p.
|b online resource.
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|a Fluid Mechanics and Its Applications,
|x 0926-5112 ;
|v 86
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|a Springer eBook Collection
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|a Fundamentals -- Basic Concepts in Fluid Mechanics -- Elementary Fluid Kinematics -- Fluid Forces -- Fluid Statics -- Conservation Principles -- Transport Theorems -- Integral Conservation Principles -- Constitutive Equations -- Differential Conservation Principles -- Dimensional Analysis. Theory and Applications -- Dimensional Analysis -- Dimensionless Equations and Numbers -- Transport Phenomena at Interfaces -- to the Boundary Layer -- Momentum, Heat and Mass Transport -- Self Evaluation -- Self Evaluation Exercises -- Appendices -- Collection of Formulae -- Classification of Fluid Flow -- Substance Properties -- A Brief Introduction to Vectors, Tensors and Differential Operators -- Useful Tools of Calculus -- Coordinate Systems -- Reference Systems -- Equations of State -- Multicomponent Reacting Systems.
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|a This book presents the foundations of fluid mechanics and transport phenomena in a concise way. It is suitable as an introduction to the subject as it contains many examples, proposed problems and a chapter for self-evaluation. The solutions to all problems are displayed in the corresponding appendix. The content is divided into four parts: fundamentals, conservation principles, dimensional analysis and transport phenomena at interfaces. The transport phenomena of momentum, heat and mass are presented from a rigorous fluid mechanics point of view, and they are explained using a unified, systematic approach, including the analogies between the various transport phenomena.
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|a Loaded electronically.
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|a Electronic access restricted to members of the Holy Cross Community.
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|a Fluid mechanics.
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650 |
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|a Thermodynamics.
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650 |
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|a Heat engineering.
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650 |
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|a Heat transfer.
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650 |
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|a Mass transfer.
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650 |
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|a Continuum physics.
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