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FRICTION IN PIPES AND CHANNELS
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acid adiabatic saturation temperature angles approximately axis boiling boundary layer calculated centipoises Chem compression compressor condensation constant convection cooling curve cylinder delivery density diameter diffusion direction of flow distance eddy enthalpy equation expressed film coefficient flow rate fluid flowing force frictional losses gases given heat transfer coefficient humidity ideal gas increase Inst isentropic isothermal kinetic energy laminar sub-layer length liquid logarithmic mean mass rate mass transfer maximum meter molecular molecules momentum obtained orifice partial pressure pipe piston plane plate Prandtl pressure drop pump radiation rate of flow rate of transfer ratio relation Reynolds analogy Reynolds Number shear stress shown in Fig specific heat steam surface temperature difference thermal conductivity thickness tower Trans tube turbulent flow unit area unit mass valves vanes vaporisation vapour velocity venturi meter viscosity volume wall wet bulb temperature