2012
DOI: 10.2298/tsci101120080t
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Numerical study of the conjugate heat transfer in a horizontal pipe heated by Joulean effect

Abstract: The three dimensional mixed convection heat transfer in a electrically heated horizontal pipe conjugated to a thermal conduction through the entire solid thickness is investigated by taking into account the thermal dependence of the physical properties of the fluid and the outer heat losses. The model equations of continuity, momentum and energy are numerically solved by the finite volume method. The pipe thickness, the Prandtl and the Reynolds numbers are fixed while the Grashof number is varied from 10… Show more

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Cited by 13 publications
(5 citation statements)
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“…2. The numerical code used, is a transformation of the code developed in the first step by Boufendi and Afrid [16] and in the second step by Touahri and Boufendi [17][19]. .…”
Section: International Journal Of Materials Mechanics and Manufacturmentioning
confidence: 99%
“…2. The numerical code used, is a transformation of the code developed in the first step by Boufendi and Afrid [16] and in the second step by Touahri and Boufendi [17][19]. .…”
Section: International Journal Of Materials Mechanics and Manufacturmentioning
confidence: 99%
“…The spatial discretization of diffusive terms and the pressure gradients follows the implicit second order central difference scheme. The obtained system of linearised algebraic equations are solved by using SIMPLER algorithm with step time of ∆ * = 10 -4 marching is continued until the steady state is attained and confirmed by the satisfaction of mass and energy balance in the * , * , * directions (Benkhedda et al, 2017, Touahri et al, 2012.…”
Section: Numerical Resolutionmentioning
confidence: 99%
“…Zeitoun [9] numerically investigated the heat transfer for laminar flow in partial uniformly heated horizontal tubes, but without considering buoyancy effect. Other numerical studies by Boufendi and Afrid [10], Touahri and Boufendi, [11] and Piva et al [12] and experimental studies by Ghajar and Tam [13], Mohammed and Salman [14], Coutier and…”
Section: Introductionmentioning
confidence: 99%