Flow and heat transfer characteristic of inclined oval trench dimples with numerical simulation

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Abstract

In this work, flow and heat transfer in a channel having oval trench dimples were investigated numerically. 3-D channel flow with a cross-section of 300-mm width and 32-mm height were created using Computational Fluid Dynamic (CFD) with ANSYS, Fluent (V.15.0). Five oval trench dimples with 3-mm depth, 10.0-mm width and 45-mm length arranging with a single row and in-line configuration were located on the bottom surface of the channel. Reynolds number based on hydraulic diameter of the channel were fixed at Re=20,000 whereas a dimple inclined angle defined as the angle of dimple centreline to the mainstream was varied at 0, 15, 30 and 45 degrees. k − w SST turbulent model was used to solve governing Equations. The result show that longitudinal vortex flow occurred at θ=15° to 45° which would be enhance heat transfer on the surface. When inclined angle became larger, the areas of Nusselt number and high total pressure coefficient took place at dimple edge in +Z direction. The peak of average spanwise Nusselt numbers took place for the case of θ=45°. Moreover, the area of high spanwise average Nusselt numbers (Nu>100) for the case θ=30° was the largest.

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APA

Piya, I., Narato, P., Wae-Hayee, M., & Nuntadusit, C. (2020). Flow and heat transfer characteristic of inclined oval trench dimples with numerical simulation. CFD Letters. Penerbit Akademia Baru. https://doi.org/10.37934/cfdl.12.11.6171

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