Viscous effects on the position of cavitation separation from smooth bodies

Author:

Arakeri Vijay H.

Abstract

Flow visualization by the schlieren technique in the neighbourhood of a fully developed cavity on two axisymmetric headforms has shown the existence of laminar boundary-layer separation upstream of cavitation separation, and the distance between the two separations to be strongly dependent on Reynolds number. Based on present results, a semi-empirical method is developed to predict the position of cavitation separation on a smooth body. The method applies only in the Reynolds-number range when the cavitating body possesses laminar boundary-layer separation under non-cavitating conditions. Calculated positions of cavitation separation on a sphere by the method show good agreement with experimentally observed positions.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference21 articles.

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2. Arakeri, V. H. 1971 Water tunnel investigation of scale effects in cavitation detachment from smooth slender bodies and characteristics of flow past a bi-convex hydro-foil.Cal. Inst. Tech. Rep. E-79A-12.

3. Armstrong, A. H. 1953 Abrupt and smooth separation in plane and axisymmetric flow.Mem. Arm. Res. Est. G.B. no. 22/63.

4. Hoyt, J. W. 1966 Wall effect on ITTC standard head shape pressure coefficients. 11thITTC Formal Contribution.

5. Plesset, M. S. 1949 The dynamics of cavitation bubbles.J. Appl. Mech. A.S.M.E. 16,277.

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