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Fundamental Concepts and Fluid Properties
Basic Concepts from Thermodynamics and Mechanics
12 other sections not shown
acceleration adiabatic analysis approximation assumed assumptions average back pressure body force boundary layer Calculations Chapter coefficient compressible considered constant continuity equation control volume coordinate system curve cylinder defined density diameter direction drag drag coefficient duct dx dy dz element energy equation example exit area experimental flow velocity fluid mechanics follows force acting friction factor frictionless ft/sec function given heat transfer ideal gas incompressible flow inlet integral isentropic flow laminar flow length liquid Mach number mass flow rate momentum equation nondimensional normal nozzle one-dimensional pipe potential flow problem psia pump ratio reservoir Reynolds number rotating shearing stress shock shown in Fig Solution speed sphere stagnation streamfunction streamline supersonic surface tension tank temperature thermodynamics throat torque total pressure tube turbulent flow variables variation vary velocity velocity component velocity profile versus vertical viscosity zero