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  • Online Resource  (2)
  • Universidade Federal do Parana  (2)
  • Unknown  (2)
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  • Online Resource  (2)
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  • Universidade Federal do Parana  (2)
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  • 1
    In: Revista de Engenharia Térmica, Universidade Federal do Parana, Vol. 16, No. 1 ( 2017-06-30), p. 81-
    Abstract: This article investigates numerically, using the Constructal Design method, a system that combines a square cavity with upper sliding wall and a triangular fin subjected to the mixed convection effect. The objectives are to evaluate the influence of the fin aspect ratio (H1/L1) on the average Nusselt number on the fin surface and to analyze the effect of the fraction of the area of the triangular fin relative to the square cavity (φ). The proposed problem is assumed two-dimensional, laminar, incompressible and steady flows. For the buoyancy forces it is considered the Boussinesq approximation. In order to generalize the results, the problem is solved in dimensionless form. The fluid flowing through the cavity presents the thermophysical properties defined by the Prandtl number (Pr = 0.71). The buoyancy force in the flow is defined by the Rayleigh number (RaH = 104), while the flow regime is governed by the Reynolds number (ReH = 102). The optimum fin geometry that maximizes the heat transfer between the finned cavity and the surrounding fluid is obtained through the Constructal Design method. The numerical solution of the conservation equations of mass, momentum and energy is calculated with the finite volume method, using the commercial fluid dynamics software FLUENT®. The geometry and mesh computational domain were developed in GAMBIT® package. As results, it was found that the optimal configurations of H1/L1 presented a gain in the thermal performance of up to 15% in relation to the other geometries. In addition, the heat transfer has great dependence on the variation of the fraction of area (φ).
    Type of Medium: Online Resource
    ISSN: 1676-1790
    URL: Issue
    Language: Unknown
    Publisher: Universidade Federal do Parana
    Publication Date: 2017
    detail.hit.zdb_id: 2236541-2
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  • 2
    Online Resource
    Online Resource
    Universidade Federal do Parana ; 2018
    In:  Revista de Engenharia Térmica Vol. 17, No. 1 ( 2018-06-30), p. 73-
    In: Revista de Engenharia Térmica, Universidade Federal do Parana, Vol. 17, No. 1 ( 2018-06-30), p. 73-
    Abstract: This article addresses finite element approximations for elasto-viscoplastic flows. Numerical simulations aiming at investigating the role of elasticity for inertialess flows of viscoplastic materials within lid-driven cavity.The mechanical model is made up of the usual governing equations for incompressible fluids coupled with a Oldroyd-B type equation (de Souza Mendes, 2011) modified to incorporate the dependency both of relaxation and retardation time as the viscoplastic viscosity on the strain rate. These parameters depend on the material microstructure, which level is described by an structure parameter . This model is approximated by a multi-field Galerkin least-squares formulation (Behr et al., 1993) in terms of extra-stress tensor, the pressure field and the velocity vector. Results, focused on the determination of yield surface topology, investigate the influence of elastic and viscous governing parameters on the flow pattern.
    Type of Medium: Online Resource
    ISSN: 1676-1790
    URL: Issue
    Language: Unknown
    Publisher: Universidade Federal do Parana
    Publication Date: 2018
    detail.hit.zdb_id: 2236541-2
    Location Call Number Limitation Availability
    BibTip Others were also interested in ...
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