QUYOSH ISSIQXONASI QURITGICHIDAN FOYDALANGAN HOLDA BOSHQARILADIGAN TABIIY KONVEKSIYA QURITISH REJIMI BILAN UZUMNI QURITISH

Authors

  • Anvar Shavkatovich Ro‘zmetov Toshkent davlat agrar universiteti 2-bosqich magistranti

Keywords:

quyosh issiqxona quritgichi; uzumni quritish; yangi quritish rejimi; boshqariladigan tabiiy konveksiya; termal ishlash; quritish kinetikasi.

Abstract

Ma’lumki, tabiiy konveksiya quyosh nuri bilan quritish jarayoni oziq-ovqat mahsulotlarini quritishning oddiy va arzon usuli hisoblanadi, ammo quritish tezligi sekin bo‘lganligi sababli namlik yuqori bo‘lgan agromahsulotlarni quritishda oddiy foydalanuvchilar uchun afzal emas. Ayni paytda, majburiy konveksiya quritish jarayoni bunday mahsulotlar uchun eng mos keladi, lekin uning iqtisodiy maqsadga muvofiqligi yuqori boshlang‘ich va texnik xarajatlar tufayli ta’sir qilishi mumkin. Shu sababli, ushbu tadqiqot energiyani tejash uchun ikki turdagi qoplama materiallari bilan qoplangan oddiy va arzon issiqxona quritgich foydalanildi. Ushbu qoplamalar shisha va politelindan iborat bo‘lib, uzumni quritish uchun quyosh issiqxonasi quritgichidan foydalangan holda boshqariladigan tabiiy konveksiya quritish rejimini ishlab chiqdik.

References

Tawfik, M.A.; Sagade, A.A.; Palma-Behnke, R.; Abd Allah, W.E.; Hanan, M. Performance evaluation of solar cooker with tracking type bottom reflector retrofitted with a novel design of thermal storage incorporated absorber plate. J. Energy Storage 2022, 51,104432.

United Nations Department of Economic and Social Affairs, Population Division. World Population Prospects 2022: Summary of Results 2022. UN DESA/POP/2022/TR/NO.3. 2022. Available online: https://reliefweb.int/report/world/world-population- prospects-2022-summary-results (accessed on 30 July 2022).

Tawfik, M.A.; El-Tohamy, M.; Metwally, A.A.; Khallaf, A.M.; Abd Allah, W.E. Experimental and numerical investigation of thermal performance of a new design solar parabolic dish desalination system. Appl. Therm. Eng. 2022,214,118827.

Kant, K.; Shukla, A.; Sharma, A.; Kumar, A.; Jain, A. Thermal energy storage based solar drying systems: A review. Innov. Food Sci. Emerg. Technol. 2016, 34, 86-99.

Moses, J.A.; Norton, T.; Alagusundaram, K.; Tiwari, B.K. Novel drying techniques for the food industry. Food Eng. Rev. 2014, 6, 43-55. [CrossRef]

Mugi, V.R.; Chandramohan, V.P. Energy, exergy and economic analysis of an indirect type solar dryer using green chilli: A comparative assessment of forced and natural convection. Therm. Sci. Eng. Prog. 2020,24,100950.

Sethi, V.P.; Dhiman, M. Design, space optimization and modelling of solar-cum-biomass hybrid greenhouse crop dryer using flue gas heat transfer pipe network. Sol. Energy 2020, 206,120-135.

Patil, R.; Gawande, R.A. Review on solar tunnel greenhouse drying system. Renew. Sustain. Energy Rev. 2016, 56, 196-214.

Rabha, D.K.; Muthukumar, P. Performance studies on a forced convection solar dryer integrated with a paraffin wax-based latent heat storage system. Sol. Energy 2017,149, 214-226.

Saini, V.; Tiwari, S.; Tiwari, G.N. Environ economic analysis of various types of photovoltaic technologies integrated with greenhouse solar drying system. J. Clean. Prod. 2017,156, 30-40.

Downloads

Published

2023-07-27

How to Cite

Ro‘zmetov , A. S. (2023). QUYOSH ISSIQXONASI QURITGICHIDAN FOYDALANGAN HOLDA BOSHQARILADIGAN TABIIY KONVEKSIYA QURITISH REJIMI BILAN UZUMNI QURITISH. Educational Research in Universal Sciences, 2(6 SPECIAL), 38–44. Retrieved from http://erus.uz/index.php/er/article/view/3329