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Impingement of water droplets on wedges and double-wedge airfoils at supersonic speedsAn analytical solution has been obtained for the equations of motion of water droplets impinging on a wedge in a two-dimensional supersonic flow field with a shock wave attached to the wedge. The closed-form solution yields analytical expressions for the equation of the droplet trajectory, the local rate of impingement and the impingement velocity at any point on the wedge surface, and the total rate of impingement. The analytical expressions are utilized to determine the impingement on the forward surfaces of diamond airfoils in supersonic flow fields with attached shock waves. The results presented include the following conditions: droplet diameters from 2 to 100 microns, pressure altitudes from sea level to 30,000 feet, free-stream static temperatures from 420 degrees r, free stream Mach numbers from 1.1 to 2.0, semiapex angles for the wedge from 1.14 degrees to 7.97 degrees, thickness-to-chord ratios for the diamond airfoil from 0.02 to 0.14, chord lengths from 1 to 20 feet, and angles of attack from zero to the inverse tangent of the airfoil thickness-to-chord ratio.
Document ID
19930091104
Acquisition Source
Legacy CDMS
Document Type
Other
Authors
Serafini, John S
Date Acquired
September 6, 2013
Publication Date
January 1, 1954
Report/Patent Number
NACA-TR-1159
Report Number: NACA-TR-1159
Accession Number
93R20394
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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