دراسة أداء مجمعات شمسية كهروحرارية تحت الظروف المناخية لمدينة طرابلس باستخدام برنامج المحاكاة TRNSYS
DOI:
https://doi.org/10.36602/ijeit.v3i1.372الكلمات المفتاحية:
المجمعات الشمسية الكهروحرارية، المجمعات الشمسية الهجينة، PVT، TRNSYS، Photovoltaic-Thermal Collectorالملخص

التنزيلات
المراجع
[1] نوري الكشريو و محمد ماشينه, “تحليل فني– اقتصادي لتوليد الكهرباء باستخدام الطاقة الشمسية في ليبيا (الجزء الأول),” ارسلت لمجلة البحوث الهندسية, 2016.
[2] M. R. Zaroug, “Country Energy profile (Libya),” IEA Energy Statistics Course, no. March. pp. 1–34, 2013.
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[6] TRNSYS17, “A Transient Systems Simulation Program,” TRNSYS Simul. Platform, Sol. Energy Lab. Univ. Wisconsin-Madison, USA, pp. 1–5, 2015.
[7] I. A. Gravagne and K. Van Treuren, “On the Use of TRNSYS in a Solar Energy Technical Elective TRNSYS in Solar Energy TRNSYS in the Classroom,” in ASEE Gulf-Southwest Annual Conference, 2008.
[8] B. Solimpeks, “PowerVolt & PowerTherm,” Data sheet. [Online]. Available: http://www.solarchoice.net.au/blog/wp-content/uploads/Solimpeks-Data-Sheet-PowerVolt-PowerTherm.pdf.
[9] P. Hofmann, P. Dupeyrat, K. Kramer, and M. Hermann, “Measurements and Benchmark of Pv-T Collectors According To En12975 and Development of a Standardized Measurement Procedure,” in Eurosun 2010 - 2nd international congress on Heating, Cooling and Buildings, 2010.
[10] Meteonorm, “Meteonorm - Global meteorological database,” Meteotest, 2012. [Online]. Available: http://meteonorm.com/.
[11] “EN 12976-2:2006 Thermal solar systems and components – Factory made systems – Part 2: Test methods,” 2006.
[12] “EN 12976-1:2006 Thermal solar systems and components – Factory made systems – Part 1: General requirements,” 2006.
[13] S. Bonk, “Methodology for the Assessment of the Hot Water Comfort of Factory Made Systems and Custom Built Systems,” 2012.
التنزيلات
منشور
إصدار
القسم
الرخصة
الحقوق الفكرية (c) 2016 The International Journal of Engineering & Information Technology (IJEIT)

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