7. AE_2_2026_2(23)-79-8....pdf
Science ID: FQD-0825-0058
Science ID: MQD-1225-0063
Khusenov A.A., Uzakov G.N., Rakhimov A.Kh., Ergashev Sh.H. Evaluation of heat losses of the solar greenhouse during the heating season // E3S Web of Conferences. – 2023. – Vol. 411. – Art. 01025.
Ergashev Sh.H., Fayziev T.A., Khusenov A.A. Mathematical modeling of heat regime of underground heat accumulator // AIP Conference Proceedings. – 2023. – Vol. 2612. – Art. 030019.
To‘xliyev M.M., Ovlayev J.O. Takomillashtirilgan quyosh quritish qurilmasining harorat rejimini tadqiqot qilish // Innovatsion texnologiyalar. – Qarshi, 2022. – № 1(45). – B. 36–40.
To‘xliyev M.M. Mavsumiy quyosh kollektorlarining samaradorligini oshirish va tadqiqot qilish // Namangan davlat universiteti ilmiy axborotnomasi. – Namangan, 2019. – № 2. – B. 49–52.
Emad A.A. Utilization of a solar greenhouse as a solar dryer for drying dates under the climatic conditions of the Eastern Province of Saudi Arabia // Journal of Agricultural Science. 2012. Vol. 4. Pp. 237–246.
Rosegrant M.W., Magalhaes E., Valmonte-Santos R.A., Mason-D’Croz D. Returns to Investment in Reducing Postharvest Food Losses and Increasing Agricultural Productivity Growth // In: Prioritizing Development: A Cost Benefit Analysis of the United Nations’ Sustainable Development Goals; Lomborg B. (Ed.). Cambridge: Cambridge University Press, 2018. Pp. 322–338.
Arumugam S., Rangarajan J.M., Brijesh K., Tiwari A.G. Pulse Foods // Brian McKenna (Ed.). 2nd ed. Cambridge, MA, USA: Academic Press, 2021. Pp. 193–212.
Bennamoun L., Belhamri A. Design and simulation of a solar dryer for agricultural products // Journal of Food Engineering. 2003. Vol. 59. Pp. 259–266.