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Information Journal Paper

Title

FINITE DIFFERENCE ANALYSIS OF UNSTEADY MHD FREE CONVECTIVE FLOW OVER MOVING SEMI-INFINITE VERTICAL CYLINDER WITH CHEMICAL REACTION AND TEMPERATURE OSCILLATION EFFECTS

Pages

  157-167

Abstract

 In the present study, the effects of chemical reaction on unsteady FREE CONVECTION flow of a viscous, electrically conducting, and incompressible fluid past a moving semi-infinite vertical cylinder with mass transfer and TEMPERATURE OSCILLATION is studied. The dimensionless governing partial differential equations are solved using an IMPLICIT FINITE-DIFFERENCE METHOD of Crank–Nicolson type, which is stable and convergent. The transient velocity, transient temperature, and transient concentration profiles are studied for various parameters. The local as well as average skin-friction, Nusselt number, and Sherwood number are also analyzed and presented graphically. The results are compared with available computations in the literature, and are found to be in good agreement.

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  • Cite

    APA: Copy

    RAJESH, V., BEG, O. ANWAR, & SRIDEVI, CH.. (2016). FINITE DIFFERENCE ANALYSIS OF UNSTEADY MHD FREE CONVECTIVE FLOW OVER MOVING SEMI-INFINITE VERTICAL CYLINDER WITH CHEMICAL REACTION AND TEMPERATURE OSCILLATION EFFECTS. JOURNAL OF APPLIED FLUID MECHANICS (JAFM), 9(1), 157-167. SID. https://sid.ir/paper/307555/en

    Vancouver: Copy

    RAJESH V., BEG O. ANWAR, SRIDEVI CH.. FINITE DIFFERENCE ANALYSIS OF UNSTEADY MHD FREE CONVECTIVE FLOW OVER MOVING SEMI-INFINITE VERTICAL CYLINDER WITH CHEMICAL REACTION AND TEMPERATURE OSCILLATION EFFECTS. JOURNAL OF APPLIED FLUID MECHANICS (JAFM)[Internet]. 2016;9(1):157-167. Available from: https://sid.ir/paper/307555/en

    IEEE: Copy

    V. RAJESH, O. ANWAR BEG, and CH. SRIDEVI, “FINITE DIFFERENCE ANALYSIS OF UNSTEADY MHD FREE CONVECTIVE FLOW OVER MOVING SEMI-INFINITE VERTICAL CYLINDER WITH CHEMICAL REACTION AND TEMPERATURE OSCILLATION EFFECTS,” JOURNAL OF APPLIED FLUID MECHANICS (JAFM), vol. 9, no. 1, pp. 157–167, 2016, [Online]. Available: https://sid.ir/paper/307555/en

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