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Information Journal Paper

Title

NUMERICAL INVESTIGATION OF SILICA GEL-WATER ADSORPTION CHILLERS WITH PLATE FINS BED

Pages

  95-112

Abstract

 One of the cooling systems that has received considerable attentions in recent years is the ADSORPTION CHILLER, which works based on the adsorption and desorption of a working fluid in a solid porous bed. Different parameters such as FIN HEIGHT directly affect the bed heat and mass transfer processes, and therefore, the performance of the ADSORPTION CHILLERs. In the present study a numerical model has been introduced to optimize the FIN HEIGHT in a RD SILICA GEL bed with water as the working fluid. A control volume approach has been employed to determine the temperature distributions in the heat transfer fluid, metal tube, and fins, while the simultaneous solutions of the heat and mass transfer equations should be carried out in a three dimensional coordinate system for the adsorption bed. It was found that the coefficient of performance increases and specific cooling power decreases as the FIN HEIGHT of the bed increases.

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    APA: Copy

    MAHDAVIKHAH, M., MAMOURIAN, M., & NIAZMAND, H.. (2014). NUMERICAL INVESTIGATION OF SILICA GEL-WATER ADSORPTION CHILLERS WITH PLATE FINS BED. JOURNAL OF APPLIED AND COMPUTATIONAL SCIENCES IN MECHANICS (JOURNAL OF SCHOOL OF ENGINEERING), 25(1 (9)), 95-112. SID. https://sid.ir/paper/196202/en

    Vancouver: Copy

    MAHDAVIKHAH M., MAMOURIAN M., NIAZMAND H.. NUMERICAL INVESTIGATION OF SILICA GEL-WATER ADSORPTION CHILLERS WITH PLATE FINS BED. JOURNAL OF APPLIED AND COMPUTATIONAL SCIENCES IN MECHANICS (JOURNAL OF SCHOOL OF ENGINEERING)[Internet]. 2014;25(1 (9)):95-112. Available from: https://sid.ir/paper/196202/en

    IEEE: Copy

    M. MAHDAVIKHAH, M. MAMOURIAN, and H. NIAZMAND, “NUMERICAL INVESTIGATION OF SILICA GEL-WATER ADSORPTION CHILLERS WITH PLATE FINS BED,” JOURNAL OF APPLIED AND COMPUTATIONAL SCIENCES IN MECHANICS (JOURNAL OF SCHOOL OF ENGINEERING), vol. 25, no. 1 (9), pp. 95–112, 2014, [Online]. Available: https://sid.ir/paper/196202/en

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