Marker-and-cell techinique for solving axisymmetric free surface flows (1996)
- Authors:
- USP affiliated authors: CASTELO FILHO, ANTONIO - ICMC ; CUMINATO, JOSE ALBERTO - ICMC ; TOME, MURILO FRANCISCO - ICMC
- Unidade: ICMC
- Subjects: FUNÇÕES ESPECIAIS; COMPUTAÇÃO APLICADA
- Language: Inglês
- Imprenta:
- Publisher: Abcm/Ufsc
- Publisher place: Florianopolis
- Date published: 1996
- Source:
- Título: Proceedings
- Conference titles: Congresso Brasileiro de Engenharia e Ciencias Termicas
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ABNT
TOMÉ, Murilo Francisco et al. Marker-and-cell techinique for solving axisymmetric free surface flows. 1996, Anais.. Florianopolis: Abcm/Ufsc, 1996. . Acesso em: 28 dez. 2025. -
APA
Tomé, M. F., Castelo, A., Murakami, J., & Cuminato, J. A. (1996). Marker-and-cell techinique for solving axisymmetric free surface flows. In Proceedings. Florianopolis: Abcm/Ufsc. -
NLM
Tomé MF, Castelo A, Murakami J, Cuminato JA. Marker-and-cell techinique for solving axisymmetric free surface flows. Proceedings. 1996 ;[citado 2025 dez. 28 ] -
Vancouver
Tomé MF, Castelo A, Murakami J, Cuminato JA. Marker-and-cell techinique for solving axisymmetric free surface flows. Proceedings. 1996 ;[citado 2025 dez. 28 ] - Parallel solution of free surface flows
- An effective implementation of surface tension using the marker and cell method for axisymmetric and planar 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
- 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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