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Laminar natural convection in an air-filled square cavity with partitions on the top wall
Authors:W Wu  CY Ching
Affiliation:1. Facultad de Ingeniería de la Universidad Autónoma de Yucatán, Av. Industrias no Contaminantes por Periférico Norte, Apdo. Postal 150 Cordemex, Mérida, Yucatán, Mexico;2. Applied Physics Department, CINVESTAV-Unidad Mérida, Carretera Antigua a Progreso km 6, Cordemex, Mérida, Yucatán 97310, Mexico;1. College of Engineering, Haïl University, Haïl City, Saudi Arabia;2. Unité de Recherche de Métrologie et des Systèmes Energétiques, Ecole Nationale d''Ingénieurs, 5000 Monastir, University of Monastir, Tunisia;3. Department of Mechanical Engineering, Technology Faculty, Firat University, Elazig, Turkey;4. Department of Mechanical Engineering, King Abdulaziz University, Jeddah, Saudi Arabia
Abstract:The laminar natural convection in an air-filled square cavity with a partition on the top wall was experimentally investigated. Temperature measurements and flow visualizations were performed for cases with heated and cooled vertical walls (corresponding to a global Grashof number GrH of approximately 1.3 × 108) and non-dimensional top wall temperatures θT of 0.56 (insulated) to 2.3. Experiments were performed with an aluminum partition with non-dimensional height HP/H of 0.0625 and 0.125 attached to the top wall at x/H = 0.1, 0.2, 0.4 and 0.6. The blockage effect and/or the thermal effect of the partition resulted in changes to the temperature and flow fields, but were mainly limited to the vicinity of the partition. The partition on the heated top wall resulted in a recirculating flow between the partition and the heated vertical wall. For a given partition height, the structure of this recirculating flow was dependent on the partition location and θT. A thermal boundary layer developed along the rear surface of the partition due to the thermal effect of the partition. The ambient temperature outside the boundary layer and Nu near the corner region was affected by the partition height due to the change in the recirculating flow and due to the thermal effect on the rear surface of the partition.
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