Oil–water two‐phase flow in microchannels: Flow patterns and pressure drop measurements
Двухфазный поток масло–вода в микроканалах: режимы течения и измерения перепада давления
2008-12-01
SCID: 54.1/a2bx3xhn
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Lockhart–Martinelli modelflow patternsmicrochannelsoil–water two-phase flowtwo-phase pressure drop
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Abstract (AI)
Abstract This paper investigates oil–water two‐phase flows in microchannels of 793 and 667 µm hydraulic diameters made of quartz and glass, respectively. By injecting one fluid at a constant flow rate and the second at variable flow rate, different flow patterns were identified and mapped and the corresponding two‐phase pressure drops were measured. Measurements of the pressure drops were interpreted using the homogeneous and Lockhart–Martinelli models developed for two‐phase flows in pipes. The results show similarity to both liquid–liquid flow in pipes and to gas–liquid flow in microchannels. We find a strong dependence of pressure drop on flow rates, microchannel material, and the first fluid injected into the microchannel.
Key Findings
1
Different flow patterns were identified and mapped by varying the flow rate of the second injected fluid while holding the first at constant flow rate.
2
Measured behavior shows similarity to both liquid–liquid flow in pipes and gas–liquid flow in microchannels.
3
Oil–water two-phase flows were characterized in microchannels with hydraulic diameters 793 µm (quartz) and 667 µm (glass).
4
Pressure drop depends strongly on flow rates, microchannel material (quartz vs glass), and which fluid was injected first.
5
Two-phase pressure drops were measured for the observed flow patterns and interpreted using homogeneous and Lockhart–Martinelli pipe flow models.
Research Object
Oil–water two-phase flow in microchannels (793 µm quartz and 667 µm glass hydraulic diameters)
Research Subject
Flow patterns and two-phase pressure drop dependence on flow rates, microchannel material, and injection order, interpreted with homogeneous and Lockhart–Martinelli models
Publication Details
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2008-12-01
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