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Representing a unique approach to the study of fluid flows, Viscous Flows demonstrates the utility of theoretical concepts and solutions for interpreting and predicting fluid flow in practical applications. By critically comparing all relevant classes of theoretical solutions with experimental data and/or general numerical solutions, it focuses on the range of validity of theoretical expressions rather than on their intrinsic character.This book features extensive use of dimensional analysis on both models and variables, and extensive development of theoretically based correlating equations. The range of applicability of most theoretical solutions is shown to be quite limited; however, in combination they are demonstrated to be more reliable than purely empirical expressions, particularly in novel applications.
Identification of Geometries and Dimensionless ValuesMomentum Transfer, Viscosity, and Shear StressNewtonian Flow between Parallel PlatesNewtonian Flow in Round Tubes and Circular AnnuliNon-Newtonian Flow through ChannelsThin Films and Other Open, Gravitational FlowsCouette FlowsDerivation of the General Mass and Force-Momentum BalancesModified Forms of the General Mass and Force-Momentum BalancesExact, Closed-Form Solutions of the Equations of MotionThe Blasius Solution for Laminar Flow along a Flat PlateIntegral Boundary-Layer Solution for Laminar Flow along a Flat PlateExperimental Results and Extended Solutions for Laminar Flow along a Flat PlateLaminar Flow over Wedges and DisksLaminar Flow over a Circular CylinderLaminar Flow over a Solid SphereThe Motion of Bubbles and DropletsGeneralized Methods and Other GeometriesFlow through Porous MediaThe Relative Motion of Fluids and Dispersed SolidsAppendicesIndices