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Information Journal Paper

Title

Optimization of Solar Absorption Cooling System Considering Hourly Analysis

Pages

  11-19

Abstract

 Thermal modelling and optimal design of a Solar absorption cooling system are presented, and Hourly analysis is performed over the period of a year. Three design parameters are considered, and then the Real Parameter Genetic Algorithm (RPGA) is applied to obtain the minimum Total annual cost. The optimization results show that the solar cooling optimum configuration needs 1630 square meter collectors, a storage tank with 15000L capacity as well as an absorption chiller with 300kW capacity. The Hourly analysis shows that the space temperature fluctuates on average every 62 minutes during June and decreases to 51 minutes in September. In addition, the optimum number of collectors increases by 26. 67% with a 50% increment in electricity price while it decreases by 20% with a 50% decrement in electricity price. Finally, a sensitivity analysis on RPGA parameters is performed and results are reported.

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  • Cite

    APA: Copy

    Hajabdollahi, Zahra, Sedghi Dehnavi, Majid, & Hajabdollahi, Hassan. (2017). Optimization of Solar Absorption Cooling System Considering Hourly Analysis. JOURNAL OF RENEWABLE ENERGY AND ENVIRONMENT (JREE), 4(1), 11-19. SID. https://sid.ir/paper/343261/en

    Vancouver: Copy

    Hajabdollahi Zahra, Sedghi Dehnavi Majid, Hajabdollahi Hassan. Optimization of Solar Absorption Cooling System Considering Hourly Analysis. JOURNAL OF RENEWABLE ENERGY AND ENVIRONMENT (JREE)[Internet]. 2017;4(1):11-19. Available from: https://sid.ir/paper/343261/en

    IEEE: Copy

    Zahra Hajabdollahi, Majid Sedghi Dehnavi, and Hassan Hajabdollahi, “Optimization of Solar Absorption Cooling System Considering Hourly Analysis,” JOURNAL OF RENEWABLE ENERGY AND ENVIRONMENT (JREE), vol. 4, no. 1, pp. 11–19, 2017, [Online]. Available: https://sid.ir/paper/343261/en

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