Volume 2: Theory and Fundamental Research; Aerospace Heat Transfer; Gas Turbine Heat Transfer; Computational Heat Transfer 2009
DOI: 10.1115/ht2009-88189 View full text |Buy / Rent full text
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Abstract: Heat transfer characteristics of an impinging air jet are experimentally investigated under a fixed pumping power condition. The effects of dimensionless pumping power on the Nusselt number are considered. The focus is on cases where the nozzle-to-plate spacing is equal to or less than one nozzle diameter. The results show that the Nusselt number is independent of the nozzle-to-plate spacing under fixed pumping power conditions, while the Nusselt number increases with decreasing the nozzle-to-plate spacing und… Show more

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“…Although numerous studies have been conducted to demonstrate the impact of Reynolds (Re) number and nozzleto-plate spacing on local and average heat transfer characteristics of a slot nozzle impinging steady jet, [3,4,5,6,7,8,9,10,11], limited information is available at low Re numbers (<2,500). Choo et al [9] studied the local and average heat transfer characteristics of a micro-scale slot jet impinging on a heated flat plate.…”
Section: Introductionmentioning
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“…Although numerous studies have been conducted to demonstrate the impact of Reynolds (Re) number and nozzleto-plate spacing on local and average heat transfer characteristics of a slot nozzle impinging steady jet, [3,4,5,6,7,8,9,10,11], limited information is available at low Re numbers (<2,500). Choo et al [9] studied the local and average heat transfer characteristics of a micro-scale slot jet impinging on a heated flat plate.…”
Section: Introductionmentioning
“…At a Re number > 2,500, however, the effect of the jet-to-plate spacing on the Nu number was found to be significant. Choo and Kim [31] also studied the heat transfer characteristics of an impinging air jet under a fixed pumping power condition. Results show that Nu number is independent of nozzle-toplate spacing under a fixed pumping power.…”
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