作者: Joel L. Plawsky
DOI:
关键词: Continuity equation 、 Classical mechanics 、 Boundary value problem 、 Mass transfer 、 Heat transfer 、 Transport phenomena 、 Thermal conduction 、 Boundary layer 、 Convection 、 Chemistry
摘要: Part I Transport Fundamentals and 1-D Systems Introductory Concepts Introduction Scope of Phenomena Preliminary Assumptions Equilibrium Foundations Defining Fluid Statics Buoyancy Stability Fluids in Rigid Body Motion Problems References Flows, Gradients, Properties Momentum Transport: Newton's Law Viscosity Energy Fourier's Heat Conduction Mass Fick's Diffusion Charge Ohm's Driving Force: Resistance Flux Laws Two Three Dimensions Mechanistic Differences between the Primary Secondary Fluxes Failure Linear Flux: Gradient Summary Materials Gases Liquids: Free Volume Theory Thermal Conductivity Liquids Solids Diffusivity Conductivity, Mobility, Resistivity 1-D, Steady-State, Diffusive Boundary Conditions Condition Catalog Steady-State Composite Media Variable Properties, Coupled Transport, Multiple Generation on Boundary: One-Dimensional with at Constant Terms Accumulation Introduction. Lumped Capacitance Internal Gradients Generalized Solutions Semi-Infinite Moving Periodic Flow a Rotating Cylindrical System Conservative Waves Enhancement Using Extended Surfaces Transfer: Finned Gills, Lungs, etc Reaction Catalyst Pellet II Multidimensional, Convective, Radiative Multidimensional Effects, Potential Functions, Fields Laplace's Equation Generation, Sources, Sinks, Poisson's Transient Convective Microscopic Balances Macroscopic or Engineering Continuity Balance Mechanical Balance: Bernoulli's Species Charged Flat Plate (Laminar Layers) Coefficients, Cf, h, kc, k+- Layer Definitions Derivation Equations Analogies Hydrodynamic Layers Transfer Simplified Ionic Curvature over Cylinders Spheres Velocity Profiles Tubes Applications Coefficients Taylor Dispersion Turbulent Structure Representing Reynolds Components Friction Factors Other Maxwell's Blackbody Graybody View Exchange Nomenclature Appendix A: Vector Mathematics A.1 Addition Subtraction A.2 Multiplication: The Dot, Cross, Dyad Products A.3 Differentiation: Divergence, Gradient, Curl, Laplacian A.4 Useful Relations B: Mathematical Functions C: First Eigenvalue for External Convection D: Exact Solution to E: Emission F: Thermodynamic Collision Integrals G: Comsol(R) Modules Index