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Information Journal Paper

Title

MHD NANOFLUID FLOW ANALYSIS IN A SEMI-POROUS CHANNEL BY A COMBINED SERIES SOLUTION METHOD

Pages

  124-137

Keywords

LEAST SQUARE METHOD (LSM) 

Abstract

 In this paper, Least Square Method (LSM) and Differential Transformation Method (DTM) are used to solve the problem of laminar NANOFLUID flow in a SEMI-POROUS CHANNEL in the presence of transverse magnetic field. Due to existence some shortcomings in each method, a novel and efficient method named LS-DTM is introduced which omitted those defects and has an excellent agreement with numerical solution. In the present study, the effective thermal conductivity and viscosity of NANOFLUID are calculated by Maxwell–Garnetts (MG) and Brinkman models, respectively. The influence of the three dimensionless numbers: the NANOFLUID volume friction, Hartmann number and Reynolds number on non-dimensional velocity profile are considered. The results show that velocity boundary layer thickness decrease with increase of Reynolds number and nanoparticle volume friction and it increases as Hartmann number increases.

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    APA: Copy

    NOURI, R., GANJI, D.D., & HATAMI, M.. (2013). MHD NANOFLUID FLOW ANALYSIS IN A SEMI-POROUS CHANNEL BY A COMBINED SERIES SOLUTION METHOD . TRANSPORT PHENOMENA IN NANO AND MICRO SCALES, 1(2), 124-137. SID. https://sid.ir/paper/336991/en

    Vancouver: Copy

    NOURI R., GANJI D.D., HATAMI M.. MHD NANOFLUID FLOW ANALYSIS IN A SEMI-POROUS CHANNEL BY A COMBINED SERIES SOLUTION METHOD . TRANSPORT PHENOMENA IN NANO AND MICRO SCALES[Internet]. 2013;1(2):124-137. Available from: https://sid.ir/paper/336991/en

    IEEE: Copy

    R. NOURI, D.D. GANJI, and M. HATAMI, “MHD NANOFLUID FLOW ANALYSIS IN A SEMI-POROUS CHANNEL BY A COMBINED SERIES SOLUTION METHOD ,” TRANSPORT PHENOMENA IN NANO AND MICRO SCALES, vol. 1, no. 2, pp. 124–137, 2013, [Online]. Available: https://sid.ir/paper/336991/en

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