[1]
MEM4WIN: Ultra thin glass membranes for advanced. adjustable and affordable quadruple glazing windows for zero-energy buildings. FP7-NMP. EU Research project. Brussels.
Google Scholar
[2]
P. Holzinger, Thin glass technology for insulating glass production. In: Glass performance days. 12th International Conference on Architectural and Automotive Glass, 2011. s. 556-578. ISBN 978- 952-5836-02-8.
Google Scholar
[3]
STN 73 0540-2 Thermal protection of buildings. Thermal performance of buildings and components. Part 2: Functional requirements. SUTN Bratislava, (2012).
Google Scholar
[4]
Calumen®II. simulation software to calculate key performance of glass. Saint Gobain. (2012).
Google Scholar
[5]
J. H. Gläser, B. Szyszka, Condensation on the outside surface of window glazing – what are the key parameters and how to avoid with Low-E coatings? Proceedings of Glass Performance Days. Finland. 2011, pp.212-217.
Google Scholar
[6]
D. Arastesh, H. Goudey, Ch. Kohler, Highly Insulating Glazing Systems using Non-Structural Center Glazing Layers. Lawrence Berkeley National Laboratory, LBNL-611E, (2008).
Google Scholar
[7]
I. Chmurny, Ultra thin glass membranes for advanced glazing of nZEB. Advanced Materials Research, vol. 899, pp.470-473, (2014).
DOI: 10.4028/www.scientific.net/amr.899.470
Google Scholar
[8]
V. Michálek, A. Puškár, D. Szabó, I. Chmúrny, Laboratory Measuring of Triple and Quadruple Glazing. Proceedings of 3rd Conference on Building Physics and Applied Technology (ATF 2014). Vienna, pp.175-182.
Google Scholar
[9]
STN EN ISO 12567-1, 2011 Thermal performance of windows and doors - Determination of thermal transmittance by the hot-box method - Part 1: Complete windows and doors.
DOI: 10.3403/02047871
Google Scholar
[10]
Haoyang Liu: The Development of Novel Windows systems. Towards Low Carbon Buildings. Doctoral Thesis, Nottingham, (2012).
Google Scholar
[11]
M. Čekon, R. Ingeli, Spectral emissivity of roof membranes and vapour barriers. Advanced Materials Research Vol. 1020 (2014) pp.21-24.
DOI: 10.4028/www.scientific.net/amr.1020.21
Google Scholar