An effective implementation of surface tension using the marker and cell method for axisymmetric and planar flows (2005)
- Authors:
- USP affiliated authors: CASTELO FILHO, ANTONIO - ICMC ; TOMÉ, MURILO FRANCISCO - ICMC ; CUMINATO, JOSÉ ALBERTO - ICMC
- Unidade: ICMC
- Assunto: MECÂNICA DOS FLUÍDOS COMPUTACIONAL
- Language: Inglês
- Source:
- Título: SIAM Journal on Scientific Computing
- ISSN: 1064-8275
- Volume/Número/Paginação/Ano: v. 26, p. 1340-1368, 2005
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ABNT
MANGIAVACCHI, Norberto et al. An effective implementation of surface tension using the marker and cell method for axisymmetric and planar flows. SIAM Journal on Scientific Computing, v. 26, p. 1340-1368, 2005Tradução . . Acesso em: 28 dez. 2025. -
APA
Mangiavacchi, N., Castelo, A., Tomé, M. F., Cuminato, J. A., Oliveira, M. L. B. de, & Mckee, S. (2005). An effective implementation of surface tension using the marker and cell method for axisymmetric and planar flows. SIAM Journal on Scientific Computing, 26, 1340-1368. -
NLM
Mangiavacchi N, Castelo A, Tomé MF, Cuminato JA, Oliveira MLB de, Mckee S. An effective implementation of surface tension using the marker and cell method for axisymmetric and planar flows. SIAM Journal on Scientific Computing. 2005 ; 26 1340-1368.[citado 2025 dez. 28 ] -
Vancouver
Mangiavacchi N, Castelo A, Tomé MF, Cuminato JA, Oliveira MLB de, Mckee S. An effective implementation of surface tension using the marker and cell method for axisymmetric and planar flows. SIAM Journal on Scientific Computing. 2005 ; 26 1340-1368.[citado 2025 dez. 28 ] - Parallel solution of free surface flows
- Marker-and-cell technique for soving axysimetric free surface flows
- Solving viscoelastic free surface flows of a second-order fluid using a marker-and-cell approach
- Die-swell, splashing drop an a numerical technique for solving the oldroyd B model for axisymmetric free surface flows
- Marker-and-cell techinique for solving axisymmetric free surface flows
- Freeflow: an integrated simulation system for three-dimensional free surface flows
- GENSMAC3D: implementation of the navier-stokes equations and boundary conditions for 3D free surface flows
- A combination of implicit and adaptative upwind tools for the numerical solution of incompressible free surface flows
- GENSMACVISCO: a numerical technique for simulating viscoelastic free surface flows
- Gensmac3D: a numerical methods for solving unsteady three-dimensional free surface flows
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