BINOGA INTEGRATSIYALANGAN FOTO VA FOTO-ISSIQLIK O‘ZGARTIRGICHLI TIZIMLARNI TAJRIBA JAROYONIDA O‘RGANISH
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quyosh simulyatorumumiy vergul ro'yxat seperatori fotoelektrik panelumumiy vergul ro'yxat seperatori kvadrat foto-sezgir stentiumumiy vergul ro'yxat seperatori RTD harorat sensoriumumiy vergul ro'yxat seperatori anemometrumumiy vergul ro'yxat seperatori kollektor##article.abstract##
Quyosh simulyatoridan foydalangan holda ish jismi havoga asoslangan ochiq
aylanishli binoga integratsiyalangan fotoelektrik/issiqlik tizimi tajribada o‘rganildi. Binoga
integratsiyalangan fotoelektrik/issiqlik tizimlarining o‘zgarishlari va polo-kristalli kremniy asosidagi
fotoelektrik panellardan foydalanish tizimlari o‘rganilgan. Tajriba natijalari shuni ko‘rsatadiki,
ekvivalent tizimda samaradorligi va binoga integratsiyalangan fotoelektrik/issiqlik tizimlarda
fotoelektrik panellar, binoga integratsiyalangan fotoelektrik/issiqlik tizimi bo‘shlig‘idagi pastki
yuzada ba'zida quyosh nurlanishining yutilishi tufayli yuqori issiqlik samaradorligini hosil qiladi.
Ushbu muammoni hal qilishning turli usullari mavjud bo‘lib, quyosh simulyatori, quyosh
radiatsiyasi, shamol tezligi va atrof-muhit harorati nuqtai nazaridan aniq va qayta ishlanadigan
sinov sharoitlarini hosil qiladi, bu prototipni xona haroratiga yaqin barqaror muhitda sinovdan
o‘tkazish imkonini beradi. Quyosh nurini taqlid qiluvchi lampalar quyosh spektriga yaqin nurlanishni
barqaror sharoitda ta'minlaydi. Ventilyator bo‘shliqdagi oqim bilan bir xil yo‘nalishda fotoelektrik
panel yuzasiga parallel ravishda turli xil shamol tezligini hosil qiladi.
Binoga integratsiyalangan fotoelektrik/issiqlik tizimlar ostidagi konstruktiv qo‘llabquvvatlovchi bo‘lgan izolyatsion qatlamdagi issiqlik samaradorligi, egilish burchagi 0 dan1800
daraja bo‘lganda, quyosh simulyatordagi nurlanishining tushishi 880 dan 940 Vt/m2
va shamolning
o‘rtacha tezligi 2 dan 3 m/s ni tashkil qiladi.
Xona harorati va quyosh simulyatorini radiatsiyasi intensivligini hisobga olgan holda foto va
foto-issiqlik o‘zgartirgichli tizimdan oqib о‘tayotgan havo harorati о‘zgarishini aniqlash bо‘yicha
nazariy va tajribaviy tadqiqotlar о‘tkazildi.
##submission.citations##
L. Zhu, Q. Li, M. Chen, K. Cao, and Y. Sun, “A simplified mathematical model for power output
predicting of Building Integrated Photovoltaic under partial shading conditions,” Energy
Convers. Manag., vol. 180, no. November 2018, pp. 831–843, 2019, doi:
1016/j.enconman.2018.11.036.
A.G. Komilov. Yu.Z. Nasrullaev., “Influence of the Ambient on the Parameters of a Photovoltaic
and Photovoltaic-thermal Converter Based on CIGS in Real Conditions,” Appl. Sol. Energy, vol.
, no. 1, pp. 16–22, 2021.
M. E. A. Slimani, M. Amirat, I. Kurucz, S. Bahria, A. Hamidat, and W. B. Chaouch, “A detailed
thermal-electrical model of three photovoltaic/thermal (PV/T) hybrid air collectors and
photovoltaic (PV) module: Comparative study under Algiers climatic conditions,” Energy
Convers. Manag., vol. 133, pp. 458–476, 2017, doi: 10.1016/j.enconman.2016.10.066.
Yu.Z.Nasrullayev, “Quyosh batareyalarni parametrlari o‘lchash uchun kichik o‘lchamli quyosh
simulyatorining nurlanish xarakteristikasi.,” Innov. texnologiyalar, Maxsus son, 2022, ISSN
-4732, pp. 118–121.
Yang.Tingting, “A numerical and experimental investigation of enhanced open - loop air-based
Building - Integrated Photovoltaic / Thermal systems,” Build. Civ. Environ. Eng. Present., 2015.
F. Bayrak, N. Abu-Hamdeh, K. A. Alnefaie, and H. F. Öztop, “A review on exergy analysis of
solar electricity production,” Renew. Sustain. Energy Rev., vol. 74, no. March, pp. 755–770,
, doi: 10.1016/j.rser.2017.03.012.
F. Spertino, J. Ahmad, A. Ciocia, and P. Di Leo, “Techniques and Experimental Results for
Performance Analysis of Photovoltaic Modules Installed in Buildings,” Energy Procedia, vol.
, no. September 2016, pp. 944–953, 2017, doi: 10.1016/j.egypro.2017.03.257.
Sauer K.J. Roessler T. & Hansen C.W. (2015)., “Modeling the Irradiance and Temperature
Dependence of Photovoltaic Modules in PVsyst. Photovoltaics.,” Photovoltaics. IEEE Journal;
(1), pp.152–158.
Akinyele D. Belikov J. Levron Y., “Battery Storage Technologies for Electrical Applications:
Impact in Stand-Alone Photovoltaic Systems.,” doi: https://doi.org/10.3390/en10111760.
A. H. Fanney, B. P. Dougherty, and M. W. Davis, “Performance and characterization of building
integrated photovoltaic panels,” Conf. Rec. IEEE Photovolt. Spec. Conf., no. December, pp.
–1496, 2002, doi: 10.1109/pvsc.2002.1190893.
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