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1. Третье национальное сообщение Республики Узбекистан по рамочной конвенции ООН об изменении климата. Центр гидрометеорологической службы при Кабинете Министров Республики Узбекистан. – Ташкент, 2016, -220с.
2. Авезов Р.Р., Орлов А.Ю. Солнечные системы отопления и горячего водоснабжения. -Ташкент.: Фан, 1988. -288с.
3. Duffie J., Beckman W. “Solar engineering of thermal processes”, New York, Wiley, p. 928, 2013.
4. Al-Sanea S.A., Zedan M.F., Al-Hussain S.N. Effect of thermal mass on performance of insulated building walls and the concept of energy savings potential / Applied Energy 89 (2012) 430–442.
5. Asan H., Sancaktar Y.S. Effects of Wall’s thermophysical properties on time lag and decrement factor / Energy and Buildings 28 (1998) 159-166.
6. Rossia M., Rocco V. M. External walls design: The role of periodic thermal transmittance and internalareal heat capacity / Energy and Buildings 68 (2014) 732–740.
7. Aste N., Leonforte F., Manfren M., Mazzon M. Thermal inertia and energy efficiency – Parametric simulation assessment on a calibrated case study / Applied Energy 145 (2015) 111–123.
8. Asan H. Investigation of wall’s optimum insulation position from maximum time lag and minimum decrement factor point of view / Energy and Buildings 32, 2000. 197–203.
9. Kontoleon K.J., Theodosiou Th.G., Tsikaloudaki K.G. The influence of concrete density and conductivity on walls’ thermal inertia parameters under a variety of masonry and insulation placements / Applied Energy 112 (2013) 325–337.
10. Ҫengel Y.A., Ghajar A.J. Heat and Mass Transfer: Fundamentals & Applications / New York, McGraw-Hill, p. 1208, 2015.
11. http://thermalinfo.ru/svojstva-materialov/strojmaterialy/teploprovodnost-stroitelnyh-materialov-ih-plotnost-i-teploemkost