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Measurement and Correlation of Pressure Drop for Gas-Liquid Two-phase Flow
FLUID FLOW AND TRANSPORT PHENOMENA
Chinese Journal of Chemical Engineering, 18(6) 940—947 (2010)
Measurement and Correlation of Pressure Drop for Gas-Liquid
Two-phase Flow in Rectangular Microchannels*
MA Youguang (马友光)**, JI Xiyan (季喜燕), WANG Dongji (王东继), FU Taotao (付涛涛)
and ZHU Chunying (朱春英)
School of Chemical Engineering and Technology, State Key Laboratory of Chemical Engineering, Tianjin Univer-
sity, Tianjin 300072, China
Abstract The pressure drop of gas-liquid two-phase flow in microchannel is of fundamental importance in heat
and mass transfer processes. In this work, the pressure drop of gas-liquid two-phase flow in horizontal rectangular
cross-section microchannels was measured by a pressure differential transducer system. Water, ethanol and
n-propanol were used as liquid phase to study the effects of capillary number on pressure drop; air was used as the
gas phase. Four microchannels with various dimensions of 100 μm × 200 μm, 100 μm × 400 μm, 100 μm × 800 μm
and 100 μm × 2000 μm (depth × width) were used for determining the influence of configuration on the pressure drop.
Experimental results showed that in micro-scale, the capillary number also affected the pressure drop remarkably,
and in spite of only one-fold difference in aspect ratio, the variation of pressure drop reached up to near three times
under the same experimental conditions. Taking the effects of aspect ratio and surface tension into account, a modi-
fied correlation for Chisholm parameter C in the Chisholm model was proposed for predicting the frictional multi-
plier 2lφ , and the predicted values by the proposed correlation showed a satisfactory agreement with experimental data.
Keywords pressure drop, rectangular cross-section microchannel, surface tension, configuration influence, Chis-
holm parameter C
1 INTRODUCTION
Over recent decades, microchemical technology
has received increasing attention as an innovation of
traditional chemical processes with more an
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