The Vofi library has been developed to accurately calculate the volume fraction field demarcated by implicitly-defined fluid interfaces in Cartesian grids with cubic cells. The method enlists a number of algorithms to compute the integration limits and the local height function, that is the integrand of a double Gauss-Legendre integration with a variable number of nodes. Tests in two and three dimensions are presented to demonstrate the accuracy of the method and are provided in the software distribution with C/C++ and FORTRAN interfaces.

Bnà, S., Manservisi, S., Scardovelli, R., Yecko, P., Zaleski, S. (2016). Vofi - A library to initialize the volume fraction scalar field. COMPUTER PHYSICS COMMUNICATIONS, 200, 291-299 [10.1016/j.cpc.2015.10.026].

Vofi - A library to initialize the volume fraction scalar field

MANSERVISI, SANDRO;SCARDOVELLI, RUBEN;
2016

Abstract

The Vofi library has been developed to accurately calculate the volume fraction field demarcated by implicitly-defined fluid interfaces in Cartesian grids with cubic cells. The method enlists a number of algorithms to compute the integration limits and the local height function, that is the integrand of a double Gauss-Legendre integration with a variable number of nodes. Tests in two and three dimensions are presented to demonstrate the accuracy of the method and are provided in the software distribution with C/C++ and FORTRAN interfaces.
2016
Bnà, S., Manservisi, S., Scardovelli, R., Yecko, P., Zaleski, S. (2016). Vofi - A library to initialize the volume fraction scalar field. COMPUTER PHYSICS COMMUNICATIONS, 200, 291-299 [10.1016/j.cpc.2015.10.026].
Bnà, S.; Manservisi, S.; Scardovelli, R; Yecko, P.; Zaleski, S.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/535559
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