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Information Journal Paper

Title

REDUCTION IN HEAT TRANSFER BETWEEN TWO CONCENTRIC CYLINDERS, THICK AND LONG USING THICK RADIATION SHIELDS WITH TEMPERATURE- DEPENDENT EMISSIVITY

Pages

  61-72

Abstract

 In this study, the rate of heat transfer between two CONCENTRIC CYLINDERS, thick and long in steady state investigated using analytical methods and the concept of net RADIATION HEAT TRANSFER and energy balance equation at the boundaries. Also, the net RADIATION HEAT TRANSFER, percentage reduction in heat transfer, temperature and emissivity calculated while there are one, two and three radiation shields with temperature-dependent emissivity. The findings reveal that, one radiation shield with lower emissivity (tungsten) can reduce the net heat transfer even better than two and three radiation shields with higher emissivity(silicon carbide). Also, is obtained an optimized for combination of two and three radiation shields with different materials.

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    Cite

    APA: Copy

    S., SADODIN, & JABBARI, F.. (2012). REDUCTION IN HEAT TRANSFER BETWEEN TWO CONCENTRIC CYLINDERS, THICK AND LONG USING THICK RADIATION SHIELDS WITH TEMPERATURE- DEPENDENT EMISSIVITY. JOURNAL OF MODELING IN ENGINEERING, 9(27), 61-72. SID. https://sid.ir/paper/173766/en

    Vancouver: Copy

    S. SADODIN, JABBARI F.. REDUCTION IN HEAT TRANSFER BETWEEN TWO CONCENTRIC CYLINDERS, THICK AND LONG USING THICK RADIATION SHIELDS WITH TEMPERATURE- DEPENDENT EMISSIVITY. JOURNAL OF MODELING IN ENGINEERING[Internet]. 2012;9(27):61-72. Available from: https://sid.ir/paper/173766/en

    IEEE: Copy

    SADODIN S., and F. JABBARI, “REDUCTION IN HEAT TRANSFER BETWEEN TWO CONCENTRIC CYLINDERS, THICK AND LONG USING THICK RADIATION SHIELDS WITH TEMPERATURE- DEPENDENT EMISSIVITY,” JOURNAL OF MODELING IN ENGINEERING, vol. 9, no. 27, pp. 61–72, 2012, [Online]. Available: https://sid.ir/paper/173766/en

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