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Aiding and opposing mechanisms of mixed convection in a shear- and buoyancy-driven cavity

Journal Article · · International Communications in Heat and Mass Transfer
OSTI ID:20005539

Combined forced and natural (mixed) convection in which neither the forced nor the natural convection effects are dominant and both modes are in a comparable level arise in many natural and technological processes. The present study was conducted to numerically investigate the transport mechanism of laminar combined convection in a shear- and buoyancy-driven cavity. The focus was on the interaction of the forced convection induced by the moving wall with the natural convection induced by the buoyancy. Two orientations of thermal boundary conditions at the cavity walls are considered in order to simulate the aiding and opposing buoyancy mechanisms. Velocity and temperature distributions of the flow are carried out through a stream function-vorticity transformation with a finite difference scheme. Parametric studies of the effect of the mixed convection parameter, GR/RE{sup 2}, on the fluid flow and heat transfer have been performed. Calculations cover Re=100, Pr=0.71 and Gr/Re{sup 2} the range of 0.01--100. Three different regimes are observed with increasing Fr/Re{sup 2}. Forced convection (with negligible natural convection), mixed convection (comparable forced and natural convection) and natural convection (with negligible forced convection). The code developed was carefully tested for the two limiting cases, the pure forced convection and the pure natural convection, for which experimental and numerical data are available.

Research Organization:
Karadeniz Technical Univ., Trabzon (TR)
OSTI ID:
20005539
Journal Information:
International Communications in Heat and Mass Transfer, Journal Name: International Communications in Heat and Mass Transfer Journal Issue: 7 Vol. 26; ISSN 0735-1933; ISSN IHMTDL
Country of Publication:
United States
Language:
English

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