Gabriel, Weslei VianaPeixoto, Johne Jesus MolSilva, Ciro AzevedoSilva, Carlos Antônio daSilva, Itavahn Alves daSeshadri, Varadarajan2017-11-082017-11-082017GABRIEL, W. L. et al. Journal of Materials Processing Technology, v. 245, p. 232-240, 2017. DisponÃvel em: <http://www.sciencedirect.com/science/article/pii/S0924013617300584>. Acesso em: 29 set. 2017.0924-0136http://www.repositorio.ufop.br/handle/123456789/9119A single nozzle design with three lateral ports has been proposed to feed a beam blank mold. Techniquesof physical modeling and computational fluid dynamics (CFD) were applied to evaluate the fluid flowas a function of port angle, immersion depth and flow rate. The overall features of the flow field are notaffected by changing the values of these parameters. The proposed design is characterized by: increasingfluctuation intensity at the meniscus and high impact velocities in certain regions of the broad face of theflanges. The oscillation intensity increases with decreasing immersion depth, increasing inclination of theexit ports, and increasing flow rates. These values vary also along the free surface of the mold, being largeron the flange opposite to the submerged entry nozzle (SEN) for all configurations. The impact velocitiesat the flange were affected only by the flow rate, reaching a maximum value of 0.45 m/s.en-USrestritoBeam blankContinuous castingFluid flowaSubmerged entry nozzlesThe influence of the geometry of a three orifice nozzle on the flowfield inside a beam blank mold.Artigo publicado em periodicohttp://www.sciencedirect.com/science/article/pii/S0924013617300584https://doi.org/10.1016/j.jmatprotec.2017.02.014