Fluid MechanicsAcademic Press, 2010 M01 20 - 904 páginas Fluid mechanics, the study of how fluids behave and interact under various forces and in various applied situations—whether in the liquid or gaseous state or both—is introduced and comprehensively covered in this widely adopted text. Fluid Mechanics, Fourth Edition is the leading advanced general text on fluid mechanics.
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Página viii
... Derivative ........ 55 4. Streamline, Path Line, and Streak Line ............................. 57 5. Reference Frame ... Derivatives of Volume Integrals .............................. 82 3. Conservation of Mass ...
... Derivative ........ 55 4. Streamline, Path Line, and Streak Line ............................. 57 5. Reference Frame ... Derivatives of Volume Integrals .............................. 82 3. Conservation of Mass ...
Página xxi
... derivatives have been generalized, as have been streamfunctions. Additional material has been added to the chapters on laminar flows and boundary layers. The treatment of one-dimensional gasdynamics has been extended. More problems have ...
... derivatives have been generalized, as have been streamfunctions. Additional material has been added to the chapters on laminar flows and boundary layers. The treatment of one-dimensional gasdynamics has been extended. More problems have ...
Página 14
... derivative of h with respect to T, keeping p constant. Equation (1.15) has an analogous interpretation. It is important to note that the specific heats as defined are thermodynamic properties, because they are defined in terms of other ...
... derivative of h with respect to T, keeping p constant. Equation (1.15) has an analogous interpretation. It is important to note that the specific heats as defined are thermodynamic properties, because they are defined in terms of other ...
Página 16
... derivative is taken at constant entropy. As sound is composed of small density perturbations, it also propagates at speed c. For incompressible fluids ρ is independent of p, and therefore c = ∞. Thermal Expansion Coefficient In a ...
... derivative is taken at constant entropy. As sound is composed of small density perturbations, it also propagates at speed c. For incompressible fluids ρ is independent of p, and therefore c = ∞. Thermal Expansion Coefficient In a ...
Página 22
... derivative is taken at constant values of entropy and salinity. In the reference state these variables are uniform, so that dpa = c2dρa. Therefore, the density in the neutrally stable state varies due to the compressibility effect at a ...
... derivative is taken at constant values of entropy and salinity. In the reference state these variables are uniform, so that dpa = c2dρa. Therefore, the density in the neutrally stable state varies due to the compressibility effect at a ...
Contenido
1 | |
25 | |
53 | |
81 | |
139 | |
Irrotational Flow | 165 |
Gravity Waves | 213 |
Dynamic Similarity | 279 |
Turbulence | 537 |
Geophysical Fluid Dynamics | 603 |
Aerodynamics | 679 |
Compressible Flow | 713 |
Introduction to Biofluid
Mechanics | 765 |
Some Properties of
Common Fluids | 841 |
Curvilinear Coordinates | 845 |
Founders of
Modern Fluid Dynamics | 851 |
Laminar Flow | 295 |
Boundary Layers and Related
Topics | 339 |
Computational Fluid
Dynamics | 411 |
Instability | 467 |
Visual Resources | 855 |
Index | 857 |
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Términos y frases comunes
approximation assumed atmosphere average becomes blood body boundary conditions boundary layer called Chapter circulation components Consider constant continuity coordinates cylinder decreases defined density depends derivative determined developed direction discussed distribution drag dynamics effects element energy equal equation example expressed field Figure finite flow fluid follows force function given gives gravity heat horizontal important increases initial instability integral irrotational length limit linear mass mean Mechanics method momentum motion moving normal Note obtain particle plane plate positive potential pressure problem propagation region relation represents requires result Reynolds number rotation scale shear shock shown shows side similarity solution speed steady streamlines stress surface surface tension temperature tensor theory tube turbulent unit variables vector velocity viscous volume vortex vorticity wall wave written zero