Coaxial Impingement of Axisymmetric Jets.
Donald Rockwell, Edmund M. Herrold
Abstract
Donald Rockwell, Edmund M. Herrold
Abstract
A system of axially impinging axisymmetric jets was examined experimentally using water as the working fluid. A wide range of jet Reynolds number was considered for several jet nozzle exit spacings. The location of the radial jet (impact surface) for a given ratio of flows from the two nozzles was found to be a strong function of the jet Reynolds number. The flow instabilities which can occur in this system of impacting jets have been grouped into two classes - axial mode and radial mode. These instabilities can offer an explanation of time dependence of the flow measured by other investigators. (Author)
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A system of axially impinging axisymmetric jets was examined experimentally using water as the working fluid. A wide range of jet Reynolds number was considered for several jet nozzle exit spacings. The location of the radial jet (impact surface) for a given ratio of flows from the two nozzles was found to be a strong function of the jet Reynolds number. The flow instabilities which can occur in this system of impacting jets have been grouped into two classes - axial mode and radial mode. These instabilities can offer an explanation of time dependence of the flow measured by other investigators. (Author)
Key concepts: Reynolds number, Nozzle, Jet (fluid), Mechanics, Axial symmetry, Rotational symmetry, Coaxial, Physics