Fundamentals of hydro- and aeromechanics
Tietjens, Oskar G.| Call Number | 533.6 T44F |
| Author | Tietjens, Oskar G. |
| Title | Fundamentals of hydro- and aeromechanics |
| Publication | New York: Dover Publications, 1957 |
| Physical Description | 270 p. illus. 21 cm. |
| Series | Engineering societies monographs |
| Notes | "Corresponds to the first volume of the German edition [published under title: Hydro- und Aeormechanik]" |
| Contents | Equilibrium and stability -- Application of the pressure equation to permanent gases.Stability of air masses -- Static lift on gas-filled aircraft -- Surface tension -- Methods of description -- Geometry of the vector field -- Acceleration of a fluid particle -- Equation of continuity -- The Eulerian equation and its integration along a streamline -- Potential motion -- Two-dimensional potential motion -- Vortex motion -- The influence of conpressibility -- Theories of energy and momentum -- The equation of Navier-Stokes for viscous fluids. |
| Subject | FLUID MECHANICS. Aerodynamics. Fluides, M�ecanique des. A�erodynamique. Hydrodynamica. A�erodynamica. |
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$a Equilibrium and stability -- Application of the pressure equation to permanent gases.Stability of air masses -- Static lift on gas-filled aircraft -- Surface tension -- Methods of description -- Geometry of the vector field -- Acceleration of a fluid particle -- Equation of continuity -- The Eulerian equation and its integration along a streamline -- Potential motion -- Two-dimensional potential motion -- Vortex motion -- The influence of conpressibility -- Theories of energy and momentum -- The equation of Navier-Stokes for viscous fluids.
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| Notes | "Corresponds to the first volume of the German edition [published under title: Hydro- und Aeormechanik]" |
| Contents | Equilibrium and stability -- Application of the pressure equation to permanent gases.Stability of air masses -- Static lift on gas-filled aircraft -- Surface tension -- Methods of description -- Geometry of the vector field -- Acceleration of a fluid particle -- Equation of continuity -- The Eulerian equation and its integration along a streamline -- Potential motion -- Two-dimensional potential motion -- Vortex motion -- The influence of conpressibility -- Theories of energy and momentum -- The equation of Navier-Stokes for viscous fluids. |
| Subject | FLUID MECHANICS. Aerodynamics. Fluides, M�ecanique des. A�erodynamique. Hydrodynamica. A�erodynamica. |