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Information Journal Paper

Title

ENTROPY GENERATION ANALYSIS FOR VARIABLE THERMAL CONDUCTIVITY MHD RADIATIVE NANOFLUID FLOW THROUGH CHANNEL

Pages

  1123-1134

Abstract

 The present work inspects the entropy generation on radiative heat transfer in the flow of VARIABLE THERMAL CONDUCTIVITY optically thin viscous Cu–water NANOFLUID with an external magnetic field through a parallel isothermal plate channel. Our approach uses the power series from the governing non-linear differential equations for small values of thermal conductivity variation parameter which are then analysed by various generalizations of Hermite- Pade approximation method. The influences of the pertinent flow parameters on velocity, temperature, thermal conductivity criticality conditions and entropy generation are discussed quantitatively both numerically and graphically. A stability analysis has been performed for the rate of heat transfer which signifies that the lower solution branch is stable and physically acceptable, whereas the upper solution branch is unstable.

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    APA: Copy

    ALAM, MD.S., ALIM, M.A., & KHAN, M.A.H.. (2016). ENTROPY GENERATION ANALYSIS FOR VARIABLE THERMAL CONDUCTIVITY MHD RADIATIVE NANOFLUID FLOW THROUGH CHANNEL. JOURNAL OF APPLIED FLUID MECHANICS (JAFM), 9(3), 1123-1134. SID. https://sid.ir/paper/307733/en

    Vancouver: Copy

    ALAM MD.S., ALIM M.A., KHAN M.A.H.. ENTROPY GENERATION ANALYSIS FOR VARIABLE THERMAL CONDUCTIVITY MHD RADIATIVE NANOFLUID FLOW THROUGH CHANNEL. JOURNAL OF APPLIED FLUID MECHANICS (JAFM)[Internet]. 2016;9(3):1123-1134. Available from: https://sid.ir/paper/307733/en

    IEEE: Copy

    MD.S. ALAM, M.A. ALIM, and M.A.H. KHAN, “ENTROPY GENERATION ANALYSIS FOR VARIABLE THERMAL CONDUCTIVITY MHD RADIATIVE NANOFLUID FLOW THROUGH CHANNEL,” JOURNAL OF APPLIED FLUID MECHANICS (JAFM), vol. 9, no. 3, pp. 1123–1134, 2016, [Online]. Available: https://sid.ir/paper/307733/en

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