Search Results - Taïar, R.
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Shock response spectrum analysis of fatigued runners
Benjamin, D., Odof, S., Abbès, B., Fourchet, F., Christiaen, B., Taïar, R.Published in Sensors (2022)“…Taïar, R.…”
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Shock response spectrum analysis in running performance
Benjamin, D., Odof, S., Abbes, B., Nolot, J. B., Erre, D., Fourchet, F., Taiar, R.Published in Computer Methods in Biomechanics and Biomedical Engineering (2020)“…Taiar, R.…”
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Numerical streamline patterns at swimmer`s surface using RANS equations
Arfaoui, A., Popa, C. V., Taiar, R., Polidori, G., Fohanno, S.Published in Journal of Applied Biomechanics (2012)“…Taiar, R.…”
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Comparison of plantar pressure distribution in adolescent runners at low vs. high running velocity
Fourchet, F., Kelly, L., Horobeanu, C., Loepelt, H., Taiar, R., Millet, G. P.Published in Gait and Posture (2012)“…Taiar, R.…”
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Turbulence model choice for the calculation of drag forces when using the CFD method
Zaidi, H., Fohanno, S., Taiar, R., Polidori, G.Published in Journal of Biomechanics (2010)“…Taiar, R.…”
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Analysis of swimmers` velocity during the underwater gliding motion following grab start
Elipot, M., Hellard, P., Taiar, R., Boissière, E., Rey, J. L., Lecat, S., Houel, N.Published in Journal of Biomechanics (2009)“…Taiar, R.…”
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Inverse dynamic modelling of swimmers impulse during a grab start
Houel, N., Taiar, R., Marchand, F. H., Rey, J. L., Boissiere, E., Lecat, S., Quievre, J., Hellard, P.Published in Biomechanics and Medicine in Swimming X (2006)“…Taiar, R.…”
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Skin-friction drag analysis from the forced convection modeling in simplified underwater swimming
Polidori, G., Taiar, R., Fohanno, S., Mai, T. H., Lodini, A.Published in Journal of Biomechanics (2006)“…Taiar, R.…”
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Hydrodynamics optimization in butterfly swimming: position, drag coefficient and performance
Taiar, R., Sagnes, P., Henry, C., Dufour, A. B., Rouard, A. H.Published in Journal of Biomechanics (1999)“…Taiar, R.…”
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biomechanics
swimming
analysis
hydrodynamics
movement
modelling
running
investigation method
measuring procedure
software
start
velocity
buoyancy
fluid
mathematic-logical model
performance
pressure
propulsion
relation
resistance
strength
technique
acceleration
aerodynamics
angel
basic motor action
butterfly swimming
cinematography
dynamometry
fatigue