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A Conservative Level Set Method for Interface Capturing in Two-Phase Flows (CROSBI ID 615022)

Prilog sa skupa u zborniku | izvorni znanstveni rad | međunarodna recenzija

Vukčević, Vuko ; Jasak, Hrvoje A Conservative Level Set Method for Interface Capturing in Two-Phase Flows // Proceedings of the jointly organized 11th. World Congress on Computational Mechanics - WCCM XI 5th. European Congress on Computational Mechanics - ECCM V 6th European Congress on Computational Fluid Dynamics - ECFD VI / Onate, Eugenio ; Oliver, Xavier ; Huerta, Antonio (ur.). Barcelona: International Center for Numerical Methods in Engineering (CIMNE), 2014. str. 1082-1095

Podaci o odgovornosti

Vukčević, Vuko ; Jasak, Hrvoje

engleski

A Conservative Level Set Method for Interface Capturing in Two-Phase Flows

This paper presents a novel conservative Level Set (LS) method for inter- face capturing in two-phase flows. The purpose of this study is to compare the method with Volume of Fluid (VOF) and analytical or experimental results. Second order Finite Volume (FV) method is used for domain discretization. The most common approach for interface capturing with FV is the VOF method which is conservative. Special treatment in discretization is required to maintain a sharp inter- face, which can cause numerical difficulties. The LS method ([2], [3]) is based on a signed distance function to keep track of the interface and avoids this problem. However, a draw- back of the LS method is lack of mass conservation since the signed distance function does not represent any preservable physical quantity. This paper describes a novel approach to conserve the volume using the LS method for incompressible two-phase flows. After the advection of the LS variable, global volume change is measured and the signed distance function is explicitly corrected via source term to compensate for volume change. The value of the term is iteratively obtained by successive linear approximations to a given tolerance. To correct the signed distance function, a redistancing equation is used, as presented in [4]. The redistancing equation is reformulated to allow solving it implicitly. The complete mathematical model is implemented in the open source CFD software Open- FOAM [5]. It is based on incompressible Navier-Stokes equations with Newtonian viscos- ity. The pressure-velocity coupling is solved using the PISO algorithm. Validation of the implemented method is done on two test cases. The first case describes a standing wave in a 2D wave tank. The second case describes a 3D dam break on a square column [7].

Conservative Level Set; Finite Volume; Two-Phase Flows; OpenFOAM; Free Surface Oscillations in 2D Tank; 3D Dam Break

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Podaci o prilogu

1082-1095.

2014.

objavljeno

Podaci o matičnoj publikaciji

Proceedings of the jointly organized 11th. World Congress on Computational Mechanics - WCCM XI 5th. European Congress on Computational Mechanics - ECCM V 6th European Congress on Computational Fluid Dynamics - ECFD VI

Onate, Eugenio ; Oliver, Xavier ; Huerta, Antonio

Barcelona: International Center for Numerical Methods in Engineering (CIMNE)

978-84-942844-7-2

Podaci o skupu

11th. World Congress on Computational Mechanics - WCCM XI 5th. European Congress on Computational Mechanics - ECCM V 6th European Congress on Computational Fluid Dynamics - ECFD VI

predavanje

20.07.2014-25.07.2014

Barcelona, Španjolska

Povezanost rada

Brodogradnja, Strojarstvo

Poveznice