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Information Journal Paper

Title

STUDY PERFORMANCE OF SOLAR AIR HEATERS ARRANGEMENT OBSTACLES IN THE AIR CHANNEL, WITH FUZZY LOGIC USING

Pages

  329-341

Abstract

 In this paper, using FUZZY LOGIC, performs three types of SOLAR AIR HEATERS with different transparent cover with makeup and without makeup obstacles barriers on absorbent in the channel air, in a wide range of air flow rate in the range of 0 to 30 degree angular position, by calculating the energy efficiency and EXERGY efficiency study. It also simulates the flow, the impact of the barriers arrangement on the flow air the study. By placing barriers on the absorbent in addition to the turbulent flow, directs air to the entire channel, prolonged air path in the channel. Air heaters with two transparent cover and the absorber arrangement barriers has been the best performance and this analyze predict the OPTIMUM VOLUMETRIC FLOW RATE from the perspective of energy in the range of 85 to 90 and from the perspective of EXERGY, in the range of 40 to 50 cubic meters per hour per square meter at the angle of 0 to 5 degrees. The comparison of FUZZY LOGIC analysis with experimental analysis shows, FUZZY LOGIC Energy and EXERGY analysis is a powerful method for SOLAR AIR HEATERS and compared with the experimental results the maximum error of %1.37 experiencing.

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  • Cite

    APA: Copy

    YARI, SH., & SAFARZADEH, H.. (2016). STUDY PERFORMANCE OF SOLAR AIR HEATERS ARRANGEMENT OBSTACLES IN THE AIR CHANNEL, WITH FUZZY LOGIC USING. JOURNAL OF SOLID AND FLUID MECHANICS, 6(4 ), 329-341. SID. https://sid.ir/paper/212749/en

    Vancouver: Copy

    YARI SH., SAFARZADEH H.. STUDY PERFORMANCE OF SOLAR AIR HEATERS ARRANGEMENT OBSTACLES IN THE AIR CHANNEL, WITH FUZZY LOGIC USING. JOURNAL OF SOLID AND FLUID MECHANICS[Internet]. 2016;6(4 ):329-341. Available from: https://sid.ir/paper/212749/en

    IEEE: Copy

    SH. YARI, and H. SAFARZADEH, “STUDY PERFORMANCE OF SOLAR AIR HEATERS ARRANGEMENT OBSTACLES IN THE AIR CHANNEL, WITH FUZZY LOGIC USING,” JOURNAL OF SOLID AND FLUID MECHANICS, vol. 6, no. 4 , pp. 329–341, 2016, [Online]. Available: https://sid.ir/paper/212749/en

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