Fully updated and expanded to reflect advances in modern mathematics, this fourth edition boasts 40 new homework problems (nearly 150 in total); new appendix material summarizing vectors, tensors, complex variables, and governing equations in common coordinate systems; and a new chapter on similarity solutions, group invariance solutions, separation of variables solutions, and some Fourier series representations. Illustrating basic equations and strategies to analyze fluid dynamics, mechanisms, and behavior, this new edition also contains reworked line drawings, revised problems, and extended…mehr
Fully updated and expanded to reflect advances in modern mathematics, this fourth edition boasts 40 new homework problems (nearly 150 in total); new appendix material summarizing vectors, tensors, complex variables, and governing equations in common coordinate systems; and a new chapter on similarity solutions, group invariance solutions, separation of variables solutions, and some Fourier series representations. Illustrating basic equations and strategies to analyze fluid dynamics, mechanisms, and behavior, this new edition also contains reworked line drawings, revised problems, and extended end-of-chapter questions for clarification and expansion of key concepts.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Iain G. Currie is a Professor Emeritus in the Department of Mechanical and Industrial Engineering at University of Toronto, Canada. He holds a Bachelor's degree in Mechanical Engineering from the University of Strathclyde, a Master's degree from the University of British Columbia, and Ph.D. from the California Institute of Technology. He has taught fluid mechanics at the undergraduate and graduate levels for many years. His research involves fluid structure interactions, and he has become involved in studying low Reynolds number flows of both Newtonian and non-Newtonian fluids.
Inhaltsangabe
Part I: Governing Equations Basic Conservation Laws. Flow Kinematics. Special Forms of the Governing Equations. Part II: Ideal-Fluid Flow Two-Dimensional Potential Flows. Three-Dimensional Potential Flows. Surface Waves. Part III: Viscous Flows of Incompressible Fluids Exact Solutions. Low Reynolds Number Solutions. Boundary Layers. Buoyancy-Driven Flows. Part IV: Compressible Flow of Inviscid Fluids Shock Waves. One-Dimensional Flows. Multidimensional Flows. Part V: Methods of Mathematical Analysis Some Useful Methods of Analysis Appendices.
Part I: Governing Equations Basic Conservation Laws. Flow Kinematics. Special Forms of the Governing Equations. Part II: Ideal-Fluid Flow Two-Dimensional Potential Flows. Three-Dimensional Potential Flows. Surface Waves. Part III: Viscous Flows of Incompressible Fluids Exact Solutions. Low Reynolds Number Solutions. Boundary Layers. Buoyancy-Driven Flows. Part IV: Compressible Flow of Inviscid Fluids Shock Waves. One-Dimensional Flows. Multidimensional Flows. Part V: Methods of Mathematical Analysis Some Useful Methods of Analysis Appendices.
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