Transport Phenomena Fundamentals

Transport Phenomena Fundamentals

Plawsky, Joel L.

Taylor & Francis Ltd

03/2020

862

Dura

Inglês

9781138080560

15 a 20 dias

1708

Descrição não disponível.
Part I Transport Fundamentals and 1-D Systems. Introductory Concepts. Flows, Gradients, and Transport Properties. Transport Properties of Materials. One-Dimensional, Steady-State, Diffusive Transport. Generation. Accumulation. Conservative Transport and Waves. Transport Enhancement Using Extended Surfaces. Part II Multidimensional, Convective, and Radiative Transport. Multidimensional Effects, Potential Functions, and Fields. Convective Transport: Microscopic Balances. Macroscopic or Engineering Balances. Convective Transport on a Flat Plate (Laminar Boundary Layers). Convective Transport: Systems with Curvature. Turbulent Boundary Layers. Radiative Transport. Nomenclature. Appendix A. Appendix B. Appendix C. Appendix D. Appendix E. Appendix F. Appendix G. Appendix H. Index.
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Mole Fraction Profile;viscosity of a suspension;Ordinary Differential Equation;diffusive transport;Energy Balance;convective transport;Equimolar Counterdiffusion;Blackbody Emissive Powers;balance equation approach;Mass Transfer Coefficient;heat, mass, and momentum transport;Energy Density;interfacial thermal resistance;Momentum Transport;Molar Flux;General Balance Equation;Mass Transfer;Chapman Enskog Theory;Thiele Modulus;Catalyst Pellet;Laplace's Equation;Mole Fraction;Wave Travels;Radiation Shield;View Factors;Adiabatic Temperature Rise;Continuity Equation;Net Radiative Heat Flux;Finite Thermal Conductivity;U-tube Manometer;Emissive Power