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Two-phase frictional pressure drop and flow behaviour up- and downstream of a sharp return bend

(2016) APPLIED THERMAL ENGINEERING. 93(C). p.824-838
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pressure drop, flow behaviour, Two-phase flow, capacitance sensor, return bend, SMALL-DIAMETER TUBES, VOID FRACTION SENSOR, AIR-WATER FLOW, HORIZONTAL TUBES, PATTERN, R-410A, CALIBRATION, SUBJECT, PIPES, MODEL

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Citation

Please use this url to cite or link to this publication:

Chicago
De Kerpel, Kathleen, Sven De Schampheleire, Timothy De Keulenaer, and Michel De Paepe. 2016. “Two-phase Frictional Pressure Drop and Flow Behaviour up- and Downstream of a Sharp Return Bend.” Applied Thermal Engineering 93 (C): 824–838.
APA
De Kerpel, K., De Schampheleire, S., De Keulenaer, T., & De Paepe, M. (2016). Two-phase frictional pressure drop and flow behaviour up- and downstream of a sharp return bend. APPLIED THERMAL ENGINEERING, 93(C), 824–838.
Vancouver
1.
De Kerpel K, De Schampheleire S, De Keulenaer T, De Paepe M. Two-phase frictional pressure drop and flow behaviour up- and downstream of a sharp return bend. APPLIED THERMAL ENGINEERING. 2016;93(C):824–38.
MLA
De Kerpel, Kathleen, Sven De Schampheleire, Timothy De Keulenaer, et al. “Two-phase Frictional Pressure Drop and Flow Behaviour up- and Downstream of a Sharp Return Bend.” APPLIED THERMAL ENGINEERING 93.C (2016): 824–838. Print.
@article{6951623,
  author       = {De Kerpel, Kathleen and De Schampheleire, Sven and De Keulenaer, Timothy and De Paepe, Michel},
  issn         = {1359-4311},
  journal      = {APPLIED THERMAL ENGINEERING},
  keyword      = {pressure drop,flow behaviour,Two-phase flow,capacitance sensor,return bend,SMALL-DIAMETER TUBES,VOID FRACTION SENSOR,AIR-WATER FLOW,HORIZONTAL TUBES,PATTERN,R-410A,CALIBRATION,SUBJECT,PIPES,MODEL},
  language     = {eng},
  number       = {C},
  pages        = {824--838},
  title        = {Two-phase frictional pressure drop and flow behaviour up- and downstream of a sharp return bend},
  url          = {http://dx.doi.org/10.1016/j.applthermaleng.2015.10.064},
  volume       = {93},
  year         = {2016},
}

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