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Modelling propelling force in swimming using numerical simulations

Marinho, D.A.; Barbosa, Tiago M.; Mantha, V.; Rouboa, A.I.; Silva, A.J.

In the sports field, numerical simulation techniques have been shown to provide useful information about performance and to play an important role as a complementary tool to physical experiments. Indeed, this methodology has produced significant improvements in equipment design and technique prescription in different sports (Kellar et al., 1999; Pallis et al., 2000; Dabnichki & Avital, 2006). In swimming, this ...

Data: 2012   |   Origem: Biblioteca Digital do IPB

The effect of wearing a cap on the swimmers passive drag

Marinho, D.A.; Mantha, V.; Rouboa, A.I.; Vilas-Boas, J.P.; Machado, L.; Barbosa, Tiago M.; Silva, A.J.

Data: 2011   |   Origem: Biblioteca Digital do IPB

The effect of wearing a cap on the swimmers passive drag

Marinho, D.A.; Mantha, V.; Rouboa, A.I.; Vilas-Boas, J.P.; Machado, L.; Barbosa, Tiago M.; Silva, A.J.

Data: 2011   |   Origem: Biblioteca Digital do IPB

The effect on swimmer’s hydrodynamic drag wearing two swimsuits

Marinho, D.A.; Mantha, V.; Ramos, R.; Barbosa, Tiago M.; Vilas-Boas, J.P.; Rouboa, A.; Silva, A.J.

Data: 2011   |   Origem: Biblioteca Digital do IPB

Dinâmica computacional de fluidos: análise do coeficiente de arrasto durante o ...

Ramos, R.J.; Marinho, D.A.; Mantha, V.; Barbosa, Tiago M.; Rouboa, A.; Ribeiro, J.; Machado, L.; Vilas-Boas, J.P.; Silva, A.J.

O objectivo deste estudo foi analisar o efeito da profundidade no arrasto hidrodinâmico durante o deslize subaquático, utilizando a dinâmica computacional de fluidos.

Data: 2011   |   Origem: Biblioteca Digital do IPB

The gliding phase in swimming: the effect of water depth

Marinho, D.A.; Barbosa, Tiago M.; Mantripragada, N.; Vilas-Boas, J.P.; Rouard, A.; Mantha, V.; Rouboa, A.; Silva, A.J.

Aiming to achieve higher performances, swimmers should maximize each component of swimming races. During starts and turns, the gliding phase represents a determinant part of these race components. Thus, the depth position allowing minimizing the hydrodynamic drag force represents an important concern in swimming research. The aim of this study was to analyse the effect of depth on drag during the underwater gli...

Data: 2010   |   Origem: Biblioteca Digital do IPB

The gliding phase in swimming: the effect of water depth

Marinho, D.A.; Barbosa, Tiago M.; Mantripragada, N.; Vilas-Boas, J.P.; Rouard, A.; Mantha, V.; Rouboa, A.; Silva, A.J.

The aim of this study was to analyse the effect of depth on drag during the underwater gliding. CFD simulations were applied to the flow around a 3D model of a male adult swimmer in a prone gliding position with the arms extended at the front. The domain to perform the simulations was created with 3.0 m depth, 3.0 m width and 11.0 m length. The drag coefficient and the hydrodynamic drag force were computed, usi...

Data: 2010   |   Origem: Biblioteca Digital do IPB

Computational fluid dynamics: the analysis of drag coefficient during the glid...

Marinho, D.A.; Ramos, R.; Mantha, V.; Barbosa, Tiago M.; Rouboa, A.; Silva, A.J.

The aim of the current study was to analyse the effect of depth on hydrodynamic drag coefficient during the underwater gliding, using computational fluid dynamics.

Data: 2010   |   Origem: Biblioteca Digital do IPB

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Fundação para a Ciência e a Tecnologia Universidade do Minho   Governo Português Ministério da Educação e Ciência Programa Operacional da Sociedade do Conhecimento União Europeia