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Boundary flow along circular cylinder
Karman-Prandtl mixing-length theory for fluid flow over flat surface with laminar sublayer near boundary is adapted to flow along infinite circular cylinder; experimental results for smooth and rough pipe flows are invoked in order to develop nature of boundary flow over range of conditions from quasi-smooth to fully turbulent regimes; drag coefficient for tangential friction is evaluated as function of Reynolds number and surface roughness.
Boundary flow along circular cylinder
Karman-Prandtl mixing-length theory for fluid flow over flat surface with laminar sublayer near boundary is adapted to flow along infinite circular cylinder; experimental results for smooth and rough pipe flows are invoked in order to develop nature of boundary flow over range of conditions from quasi-smooth to fully turbulent regimes; drag coefficient for tangential friction is evaluated as function of Reynolds number and surface roughness.
Boundary flow along circular cylinder
ASCE -- Proc (J Hydraulics Div)
Reid, R.O. (Autor:in) / Wilson, B.W. (Autor:in)
1963
20 pages
Aufsatz (Zeitschrift)
Englisch
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