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Information Journal Paper

Title

NUMERICAL SIMULATION OF NON-NEWTONIAN CORE ANNULAR FLOW THROUGH RECTANGLE RETURN BENDS

Pages

  431-441

Abstract

 The volume of fluid (VOF) model together with the continuum surface stress (CSS) model is proposed to simulate the core annular of NON-NEWTONIAN oil and water flow through the RECTANGLE RETURN BENDS (II-bends). A comprehensive investigation is conducted to generate the profiles of volume fraction, pressure and velocity. The influences of oil properties, flow direction, and bend geometric parameters on hydrodynamic of non- Newtonian oil and water CORE ANNULAR FLOW in II-bends are discussed. Through computational simulations the proper bend geometric parameters were identified, these results are useful for designing and optimizing the pipefitting system.

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    APA: Copy

    JIANG, F., LONG, Y., WANG, Y.J., LIU, Z.Z., & CHEN, C.G.. (2016). NUMERICAL SIMULATION OF NON-NEWTONIAN CORE ANNULAR FLOW THROUGH RECTANGLE RETURN BENDS. JOURNAL OF APPLIED FLUID MECHANICS (JAFM), 9(1), 431-441. SID. https://sid.ir/paper/307570/en

    Vancouver: Copy

    JIANG F., LONG Y., WANG Y.J., LIU Z.Z., CHEN C.G.. NUMERICAL SIMULATION OF NON-NEWTONIAN CORE ANNULAR FLOW THROUGH RECTANGLE RETURN BENDS. JOURNAL OF APPLIED FLUID MECHANICS (JAFM)[Internet]. 2016;9(1):431-441. Available from: https://sid.ir/paper/307570/en

    IEEE: Copy

    F. JIANG, Y. LONG, Y.J. WANG, Z.Z. LIU, and C.G. CHEN, “NUMERICAL SIMULATION OF NON-NEWTONIAN CORE ANNULAR FLOW THROUGH RECTANGLE RETURN BENDS,” JOURNAL OF APPLIED FLUID MECHANICS (JAFM), vol. 9, no. 1, pp. 431–441, 2016, [Online]. Available: https://sid.ir/paper/307570/en

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