Open-cell foams are promising to enhance heat transfer in many applications, such as electronics cooling. Though heat transfer coefficients are low, natural convection in opencell foams is used in low-end applications, as consumer electronics or switching devices. In this paper air natural convection in a vertical channel equipped with an open-cell foam, with a symmetric uniform heat flux boundary condition at the vertical sides, is investigated numerically. The foam is modeled as a continuous porous medium under the assumption of Local Thermal Non-Equilibrium (LTNE) between solid and fluid phases. Mass, momentum and energy equations are solved numerically under the appropriate boundary conditions by employing a commercial finite element code. The velocity of the fluid and the temperature of the solid as well as the global heat transfer oefficient, for different thermo-physical properties and morphologies of the foam, and for various channel aspect ratios, are predicted.

Natural convection in a vertical channel with open-cell foams / Andreozzi, Assunta; Bianco, Nicola; Iasiello, Marcello; Naso, Vincenzo. - (2019). (Intervento presentato al convegno 37th UIT Heat Transfer Conference tenutosi a Padova nel 24 - 26 Giugno 2019).

Natural convection in a vertical channel with open-cell foams

andreozzi assunta;bianco nicola;iasiello marcello;
2019

Abstract

Open-cell foams are promising to enhance heat transfer in many applications, such as electronics cooling. Though heat transfer coefficients are low, natural convection in opencell foams is used in low-end applications, as consumer electronics or switching devices. In this paper air natural convection in a vertical channel equipped with an open-cell foam, with a symmetric uniform heat flux boundary condition at the vertical sides, is investigated numerically. The foam is modeled as a continuous porous medium under the assumption of Local Thermal Non-Equilibrium (LTNE) between solid and fluid phases. Mass, momentum and energy equations are solved numerically under the appropriate boundary conditions by employing a commercial finite element code. The velocity of the fluid and the temperature of the solid as well as the global heat transfer oefficient, for different thermo-physical properties and morphologies of the foam, and for various channel aspect ratios, are predicted.
2019
Natural convection in a vertical channel with open-cell foams / Andreozzi, Assunta; Bianco, Nicola; Iasiello, Marcello; Naso, Vincenzo. - (2019). (Intervento presentato al convegno 37th UIT Heat Transfer Conference tenutosi a Padova nel 24 - 26 Giugno 2019).
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/756938
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