QUYOSH HAVO ISITGICHIDA ISSIQLIK ALMASHINUVI JARAYONINI JADALLASHTIRISH

Maqolaning asosiy mazmuni

Azizbek Bulturov
Zulxumor Boboyeva

Abstrak

Quyosh havo isitgichi sanoatda va binolarni isitishda keng qo'llaniladigan isitish qurilmasi bo'lib, ushbu tizim yutuvchi plastinadagi turli xil qovurg'a konstruksiyalarini tekshirish uchun ishlatiladi. Turli qovurg'alarga ega quyosh havo isitgichlari bo'yicha sharh yutuvchi plastina orqali issiqlik uzatilishining turlicha tezligini ko'rsatadi. Ushbu tadqiqotda yutuvchi plastinadagi qovurg'alarning turli shakllari keltirilgan va ularning sonli tahlili amalga oshirilgan. Maqolada quyosh havo isitgichini o'rganish uchun eng maqbul konstruksiyani tavsiya etish maqsadida turli qovurg'a konstruksiyalari tadqiq qilingan.

Maqola tafsilotlari

Bo'lim

Maqolalar

Qanday iqtibos keltirish kerak

QUYOSH HAVO ISITGICHIDA ISSIQLIK ALMASHINUVI JARAYONINI JADALLASHTIRISH. (2023). Research Focus International Scientific Journal, 1(2), 96-101. https://doi.org/10.66073/researchfocus.v1i2.2539

Adabiyotlar

D. Jin, M. Zhang, P. Wang, and S. Xu, ―Numerical investigation of heat transfer and fluid flow in a solar air heater duct with multi Vshaped ribs on the absorber plate,‖ Energy, vol. 89, pp. 178–190, 2015.

V. B. Gawande, A. S. Dhoble, D. B. Zodpe, and S. Chamoli, ―Experimental and CFD investigation of convection heat transfer in solar air heater with reverse L-shaped ribs,‖ Sol. Energy, vol. 131, pp. 275–295, 2016.

M. Nem and J. Kasperski, ―Experimental investigation of concentrated solar air-heater with internal multiple-fin array,‖ Renew. Energy, vol. 97, pp. 722–730, 2016.

N. K. Pandey, V. K. Bajpai, and Varun, ―Experimental investigation of heat transfer augmentation using multiple arcs with gap on absorber plate of solar air heater,‖ Sol. Energy, vol. 134, pp. 314–326, 2016.

A. S. Yadav and J. L. Bhagoria, ―A numerical investigation of square sectioned transverse rib roughened solar air heater,‖ Int. J. Therm. Sci., vol. 79, pp. 111–131, 2014.

N. S. Deo, S. Chander, and J. S. Saini, ―Performance analysis of solar air heater duct roughened with multigap V-down ribs combined with staggered ribs,‖ Renew. Energy, vol. 91, pp. 484– 500, 2016.

R. Karwa and K. Chauhan, ―Performance evaluation of solar air heaters having v-down discrete rib roughness on the absorber plate,‖ Energy, vol. 35, no. 1, pp. 398–409, 2010.

R. Nowzari, N. Mirzaei, and L. B. Y. Aldabbagh, ―Finding the best configuration for a solar air heater by design and analysis of experiment,‖ Energy Convers. Manag., vol. 100, pp. 131–137, 2015. Research Focus, Uzbekistan 100 www.ReFocus.uz RESEARCH FOCUS | VOLUME 1 | ISSUE 2 | 2022 ISSN: 2181-3833 ResearchBip (14) | Zenodo | Google Scholar | UIF (8.3)

A. K. Patil, ―Heat transfer mechanism and energy efficiency of artificially roughened solar air heaters—A review,‖ Renew. Sustain. Energy Rev., vol. 42, pp. 681–689, 2015.

A. Lanjewar, J. L. Bhagoria, and R. M. Sarviya, ―Heat transfer and friction in solar air heater duct with W-shaped rib roughness on absorber plate,‖ Energy, vol. 36, no. 7, pp. 4531–4541, 2011.

A. Acır and İ. Ata, ―A study of heat transfer enhancement in a new solar air heater having circular type turbulators,‖ J. Energy Inst., pp. 1–11, 2015.

T. Alam and M. H. Kim, ―A critical review on artificial roughness provided in rectangular solar air heater duct,‖ Renew. Sustain.

Energy Rev., vol. 69, no. July 2016, pp. 387–400, 2017. Research Focus, Uzbekistan 101 www.ReFocus.uz