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NASA NTRS · 20040027960

A Cartesian Adaptive Level Set Method for Two-Phase Flows

Abstract

In the present contribution we develop a level set method based on local anisotropic Cartesian adaptation as described in Ham et al. (2002). Such an approach should allow for the smallest possible Cartesian grid capable of resolving a given flow. The remainder of the paper is organized as follows. In section 2 the level set formulation for free surface calculations is presented and its strengths and weaknesses relative to the other free surface methods reviewed. In section 3 the collocated numerical method is described. In section 4 the method is validated by solving the 2D and 3D drop oscilation problem. In section 5 we present some results from more complex cases including the 3D drop breakup in an impulsively accelerated free stream, and the 3D immiscible Rayleigh-Taylor instability. Conclusions are given in section 6.

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BibTeXRIS

Ham, F., Young, Y.-N.. 2003-01-01. A Cartesian Adaptive Level Set Method for Two-Phase Flows. https://ntrs.nasa.gov/citations/20040027960

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