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PMID: 37512729 Published · epublish English Journal Article

Simulations of Flows via CFD in Microchannels for Characterizing Entrance Region and Developing New Correlations for Hydrodynamic Entrance Length.

Micromachines ·Vol. 14 ·No. 7 ·2023-07-14

Ray DR, Das DK

Abstract

Devices with microchannels are relatively new, and many correlations are not yet developed to design them efficiently. In microchannels, the flow regime is primarily laminar, where entrance length may occupy a significant section of the flow channel. Therefore, several computational fluid dynamic simulations were performed in this research to characterize the developing flow regime. The new correlations of entrance length were developed from a vast number of numerical results obtained from these simulations. A three-dimensional laminar flow for 37 Reynolds numbers (0.1, 0.2, …, 1, 2, …, 10, 20, …, 100, 200, …, 1000), primarily in low regime with water flow through six rectangular microchannels (aspect ratio: 1, 0.75, 0.5, 0.25, 0.2, 0.125), has been modeled, conducting 222 simulations to characterize flow developments and ascertain progressive velocity profile shapes. Examination of the fully developed flow condition was considered using traditional criteria such as velocity and incremental pressure drop number. Additionally, a new criterion was presented based on fRe. Numerical results from the present simulations were validated by comparing the fully developed velocity profile, friction factor, and hydrodynamic entrance length for Re > 100 in rectangular channels, for which accurate data are available in the literature. There is a need for hydrodynamic entrance length correlations in a low Reynolds number regime (Re < 100). So, the model was run numerous times to generate a vast amount of numerical data that yielded two new correlations based on the velocity and fRe criteria.

Keywords
CFD simulations entrance length low Reynolds number microchannel
作者与单位
共 2 位作者,点击展开单位 / ORCID
Ray Dustin R
Department of Mechanical Engineering, University of Alaska Fairbanks, Fairbanks, AK 99775-5905, USA.
Das Debendra K
Department of Mechanical Engineering, University of Alaska Fairbanks, Fairbanks, AK 99775-5905, USA.
Article Info
Journal
Micromachines
Abbr.
Micromachines (Basel)
ISSN
2072-666X
Published
2023-07-14
电子出版
2023-00-14
Language
English
Country/Region
Switzerland
NLM ID
101640903
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