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contributor authorSexton, Andrew
contributor authorPunch, Jeff
contributor authorStafford, Jason
contributor authorJeffers, Nicholas
date accessioned2019-02-28T11:01:30Z
date available2019-02-28T11:01:30Z
date copyright10/10/2017 12:00:00 AM
date issued2018
identifier issn0022-1481
identifier otherht_140_03_032201.pdf
identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4251838
description abstractLiquid microjets are emerging as candidate primary or secondary heat exchangers for the thermal management of next generation photonic integrated circuits (PICs). However, the thermal and hydrodynamic behavior of confined, low Reynolds number liquid slot jets is not yet comprehensively understood. This investigation experimentally examined jet outlet modifications—in the form of tabs and chevrons—as techniques for passive control and enhancement of single-phase convective heat transfer. The investigation was carried out for slot jets in the laminar flow regime, with a Reynolds number range, based on the slot jet hydraulic diameter, of 100–500. A slot jet with an aspect ratio of 4 and a fixed confinement height to hydraulic diameter ratio (H/Dh) of 1 was considered. The local surface heat transfer and velocity field characteristics were measured using infrared (IR) thermography and particle image velocimetry (PIV) techniques. It was found that increases in area-averaged Nusselt number of up to 29% compared to the baseline case could be achieved without incurring additional hydrodynamic losses. It was also determined that the location and magnitude of Nusselt number and velocity peaks within the slot jet stagnation region could be passively controlled and enhanced through the application of outlet tabs of varying geometries and locations.
publisherThe American Society of Mechanical Engineers (ASME)
titlePassive Control and Enhancement of Low Reynolds Number Slot Jets Through the Use of Tabs and Chevrons
typeJournal Paper
journal volume140
journal issue3
journal titleJournal of Heat Transfer
identifier doi10.1115/1.4037786
journal fristpage32201
journal lastpage032201-12
treeJournal of Heat Transfer:;2018:;volume( 140 ):;issue: 003
contenttypeFulltext


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