A Modification of the Switch Function in the Elrod Cavitation Algorithm

Author:

Fesanghary M.1,Khonsari M. M.1

Affiliation:

1. Department of Mechanical Engineering, Louisiana State University, 2508 Patrick Taylor Hall, Baton Rouge, LA 70803

Abstract

The implementation of the mass-conservative cavitation algorithm, as derived by Elrod, requires an automatic setting of a binary switch function that delineates the full-film and cavitation zones. Abrupt changes associated with this function often causes convergence and instability issues. A method is that which improves numerical instability and overcomes the convergence issues caused by the conventional binary switch function. Two test cases are presented, which show that by using the new switching algorithm together with a successive over-relaxation solver, the Elrod cavitation algorithm converges up to 61% faster while it is less prone to numerical instabilities.

Publisher

ASME International

Subject

Surfaces, Coatings and Films,Surfaces and Interfaces,Mechanical Engineering,Mechanics of Materials

Reference9 articles.

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2. Stieber, W., and Schwimmlager, D., 1933, Verein Deutscher Ingenieure, Berlin.

3. Jakobsson, B., and Floberg, L., 1957, “The Finite Journal Bearing Considering Vaporization,” Transactions of Chalmers University of Technology, Guthenberg, Technical Report No. 190.

4. Olsson, K. , 1965, “Cavitation in Dynamically Loaded Bearings,” Transactions of Chalmers University of Technology, Guthenberg, Technical Report No. 308.

5. A Cavitation Algorithm;Elrod;ASME J. Lubr. Technol.

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