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Quantitative visualization of asymmetric gas flow in constricted microchannels by using pressure-sensitive paint
Journal article   Peer reviewed

Quantitative visualization of asymmetric gas flow in constricted microchannels by using pressure-sensitive paint

Chih-Yung Huang, Ying-Hsuan Chen, Shaw-An Wan and Yu-Chuan Wang
Journal of Micromechanics and Microengineering, Vol.26(10), 105002
23/08/2016

Abstract

asymmetric gas flow constricted microchannel pressure-sensitive paint visualization
Asymmetric flow in constricted microchannel devices was quantitatively investigated using a pressure-sensitive paint (PSP) technique. For microchannel devices with constriction ratios of 2 : 1 and 5 : 1, detailed pressure maps for the region around the constriction structure were obtained and enabled visualization of the flow field. Symmetric flow was observed in the microchannel device with a constriction ratio of 2 : 1 at the Reynolds number range 2-165. In the microchannel with a constriction ratio of 5 : 1, a deflected flow pattern was clearly identified from PSP measurements at Reynolds numbers exceeding 107. Furthermore, PSP measurements showed a pressure difference of up to 2.5 kPa between the two lateral locations corresponding to y = 0.15 W (W is the microchannel width) downstream of the constriction at a Reynolds number of 279. The pressure difference resulted from asymmetric bifurcation of the flow.

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