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Gas-liquid flow in slightly inclined pipes

✍ Scribed by Eric Grolman; Jan M.H. Fortuin


Publisher
Elsevier Science
Year
1997
Tongue
English
Weight
880 KB
Volume
52
Category
Article
ISSN
0009-2509

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✦ Synopsis


The modified apparent rough surface (MARS) model is presented, which facilitates prediction of liquid holdup and pressure gradient in gas liquid flow through horizontal and slightly sloping pipes. The model is based on two steady-state, one-dimensional momentum balance equations, which include the superficial velocities and transport properties of gas and liquid, the diameter of the pipe and its angle from the horizontal. Separate correlations are proposed for the interfacial friction factorJl, the liquid-to-wall friction factor j}, the interfacial perimeter S~ and the wetted perimeter SL. Predicted values of liquid holdup and pressure gradient are verified against results of 2400 carefully performed, laboratory experiments in horizontal and sloping glass pipes (-3 ~< fl ~< + 6') of 15, 26 and 51 mm diameter. The liquid holdup ct, ranges from 0 to 0.42, and the superficial liquid velocity ULS from 0 to 0.06 m s 1 and the superficial gas velocity UGs from 1.8 to 34 m s-~. The gas liquid systems used are air~water and air/tetradecane (n-C~4H3o) at atmospheric pressure and room temperature. Significant effects of small inclination angles were found at low gas flow rates, leading to an eightjbld increase in liquid holdup and more than afimrlohl increase in pressure gradient compared to horizontal flow. Nevertheless, the average relative error in the prediction of liquid holdup and pressure gradient is less than 10%.


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