CALCULATION OF THERMAL AND ENERGY PARAMETERS OF MODERN SOLAR GREENHOUSES IN STEADY-STATE MODE

Authors

  • G.N. Uzakov Doctor of technical science (DSc), professor, Karshi state technical university
  • Sh. Ergashev PhD in technical science, Associate professor, Karshi state technical university
  • S.Z. Fatilloyev PhD student, Bukhara state technical university Bukhara State Technical University,

DOI:

https://doi.org/10.55640/

Keywords:

thermal energy, fuel consumption, solar energy, heat load, outdoor air temperature, temperature-humidity regime, steady-state mode.

Abstract

The article presents the methodology for calculating the heat load of modern solar greenhouses and the analysis of the obtained results. The seasonal variation of the required heating power for greenhouses with polyethylene film and polycarbonate glazed coverings was studied depending on the outdoor air temperature and solar radiation. In a greenhouse with a useful area of 100 m², the maximum heat load is 18.0 kW for a double-layer polyethylene covering and 13.0 kW for a polycarbonate covering. It was found that the use of a polycarbonate transparent covering can reduce the heat load by 1.38 times or by 25–28% compared to a double-layer film covering.

Downloads

Download data is not yet available.

References

1.Climate Change & Sustainable Develоpment: New Challenges оf the Century: Mоnоgraph. – Mykоlaiv: PMBSNU – Rzeszоw: RzUT, 2021. – 492 p.

2. Guler, E.; Kandemir, S.Y.; Acikkalp, E.; Ahmadi, M.H. Evaluatiоn оf sustainable energy perfоrmance fоr ОECD cоuntries. Energy Sоurces Part B Ecоn. Plan. Pоlicy 2021, 16, 491–514.

3. Tian, Y.; Yang, Z.; Liu, Y.; Cai, X.; Shen, Y. Lоng-term thermal stability and settlement оf heat pipe-prоtected highway embankment in warm permafrоst regiоns. Eng. Geоl. 2021, pp. 269-292

4. Jоuhara H, Anastasоv V, Khamis I. Pоtential оf heat pipe technоlоgy in nuclear seawater desalinatiоn. Desalinatiоn 2009; pp. 61-249

5. Srimuang W, Amatachaya P. A review оf the applicatiоns оf heat pipe heat exchangers fоr heat recоvery. Renew Sustain Energy Rev 2012; pp. 15-16

6. Gupta M, Singh V, Kumar R, Said Z. A review оn thermоphysical prоperties оf nanоfluids and heat transfer applicatiоns. Renew Sustain Energy Rev 2017; pp. 70-74

7. Rittidech S, Terdtооn P, Murakami M, Kamоnpet P, Jоmpakdee W. Cоrrelatiоn tо predict heat transfer characteristics оf a clоsed-end оscillating heat pipe at nоrmal оperating cоnditiоn. Appl Therm Eng 2003;23:497-510

8.Вардияшвили А.А. “Разработка и исследования многофункциональных энергоэффектных гелиотехнических комплексов с использованием энергетических отходов”. Монография. Карши «Насаф» нашриёти 2013 г. 9,6 п.л

9. Вардияшвили А.А. “Солнечный сельский дом с гелиотеплицей”. Монография. Издательство «Насаф» Карши 2017 г. 165 с.

10. Хайриддинов, Б.Э., Холмирзаев, Н.С., Халимов, Г.Г., Рысбаев, А.С. and Эргашев, Ш.Х., 2018. Муқобил энергия манбаларидан фойдаланиш. Монография. Т.“ADAD PLYUS, 417.

Downloads

Published

2025-12-12

How to Cite

CALCULATION OF THERMAL AND ENERGY PARAMETERS OF MODERN SOLAR GREENHOUSES IN STEADY-STATE MODE. (2025). Journal of Multidisciplinary Sciences and Innovations, 4(11), 1440-1450. https://doi.org/10.55640/

Similar Articles

1-10 of 3239

You may also start an advanced similarity search for this article.