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Information Journal Paper

Title

A NUMERICAL ANALYSIS OF THE PHASE CHANGE PROCESS IN A THERMAL STORAGE SYSTEM, USING ENTHALPY METHOD

Pages

  51-62

Abstract

 In this work, a numerical analysis of heat transfer in a THERMAL STORAGE SYSTEM has been performed using ENTHALPY METHOD. In this method, the solution is based on a fixed grid and the governing equations are modified such that they are valid for both phases. The heat transfer in the THERMAL STORAGE SYSTEM is the conjugate problem: PHASE CHANGE material and the transient forced convection between the fluid heat transfer and the wall. The system consists of two concentric cylinders, whose working fluid flows through inner pipe and its outer cylinder has been filled with the PHASE CHANGE material. The system works periodically and the governing heat transfer equations for the working fluid and for the PHASE CHANGE material are solved numerically. The differential flow equations and heat transfer have been discredited using the finite volume approach which, are solved using an iterative procedure. Temperature, enthalpy, and heat transfer coefficient inside the THERMAL STORAGE SYSTEM have been obtained and the results of the two cases have been compared, which are in relatively close agreements.

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    APA: Copy

    PIRKANDI, J., KESHAVARZ, A., & ZIABASHAR HAGH, M.. (2006). A NUMERICAL ANALYSIS OF THE PHASE CHANGE PROCESS IN A THERMAL STORAGE SYSTEM, USING ENTHALPY METHOD. AEROSPACE MECHANICS JOURNAL, 2(2), 51-62. SID. https://sid.ir/paper/101792/en

    Vancouver: Copy

    PIRKANDI J., KESHAVARZ A., ZIABASHAR HAGH M.. A NUMERICAL ANALYSIS OF THE PHASE CHANGE PROCESS IN A THERMAL STORAGE SYSTEM, USING ENTHALPY METHOD. AEROSPACE MECHANICS JOURNAL[Internet]. 2006;2(2):51-62. Available from: https://sid.ir/paper/101792/en

    IEEE: Copy

    J. PIRKANDI, A. KESHAVARZ, and M. ZIABASHAR HAGH, “A NUMERICAL ANALYSIS OF THE PHASE CHANGE PROCESS IN A THERMAL STORAGE SYSTEM, USING ENTHALPY METHOD,” AEROSPACE MECHANICS JOURNAL, vol. 2, no. 2, pp. 51–62, 2006, [Online]. Available: https://sid.ir/paper/101792/en

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