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Tom
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11--12, 14--16
Opis fizyczny
Bibliogr. 21 poz., il.
Twórcy
Bibliografia
- [1] Klosowski. J.M., Wolf. A.T. (2009), „The Historyk of Sealants", Handbook of Sealant Technology, Taylor and Francis (CRC), Boca Raton, Florida, USA, pp. 3-25.
- [2] De Buyl. F. (2001), „Silicone Sealants and Structural Adhesives", International Journal of Adhesion and Adhesives,21 (5), pp. 411-422.
- [3] Wolf. A.T. (2000), „Durability of Silicone Sealants", RILEM State-of-the-Art Report, RILEM Publications, Bagneux, France, pp.253-273.
- [4] Roodman. D.M., Lenssen. N. (1995), A Building Revolution: How Ecology and Health Concerns are Transforming Construction, Worldwatch Paper 124, Worldwatch Institute, Oxon Hill, MD, USA.
- [5] (2006), UNEP SBCI Sustainable Building and Construction lnitiatives www.unepsbci.org/SBCIRessources/Brochures, United Nations Environment Program, Paris, France
- [6] (1993), www.uia-architectes.org/texte/england/2aaf1.html
- [7] Duijvestein. K. (2009), "4P Tetraeder" www.tudelft.nl/live/pagina.jsp?id=fc9730d5-555f-47a4-a229-03921708737d&lang=en
- [8] Sartori. l., Hestnes. A.G. (2007), „Energy Use in the Life Cycle of Conventional and Low-Energy Buildings: A Review Article", Energy and Buildings 39, pp. 249-257.
- [9] (2003), Environmentally Sustainable Buildings: Challenges and Policies, Organization for Economic Co-operation and Development (OECD), Paris, France
- [10] (2008), Updated List of LCI Values, Committee for Health-related Evaluation of Building Products (AgBB),Berlin, Germany, www.umweltbundesamt.de/building-products
- [11] Carbary. L.D., Fiby. A. (2007) „A Thermal Modeling Comparison of Typical Curtainwall Glazing Systems", Proceedings of Glass Processing Days 2007 (GPD), Tamglass, Tampere, Finland, pp. 282-286.
- [12] Carbary. L.D., Hayez. V., Wolf. A.T., Bhandari. M. (2009), „Energy Usage Comparisons of Typical Building Types in Various Locations", Proceedings of Glass Processing Days 2009 (GPD), Tamglass, Tampere, Finland, pp. 89-94.
- [13] Becker. R. (2009), „Air Leakage of Curtain Wells - Diagnostics and Remediation", Journal of Building Physics OnlineFirst, November 5, 2009, doi:0.1177/1744259109349665, available at http://jen.sagepub.com/cgi/rapidpdf/1744259109349665v1 .pdf
- [14] Wolf. A.T. (2002), „Design and Material Selection Factors that Influence the Service-life and Utility Value of Dual-sealed Insulating Glass Units", Proceedings of 9th International Conference on Durability of Building Materials and Components - 9DBMC, March 17-20, 2002, CSIRO, Highett, Victoria, Australia, 2, 106/1-106/10.
- [15] Holck. 0., Svendsen. S. (2006), Performance, Durability and Sustainability of Advanced Windows and Solar Components for Building Envelopes, Final Report, Subtask C: Sustainability, Project C3: Durability Assessment of Windows and Glazing Units, Solar Heating and Cooling Program, International Energy Agency IEA, Paris, France.
- [16] www.antarcticstation.org
- [17] Steindl Glas (2004), www.steindlglas.com/Referenzen/Pardatschgrat
- [18] www.primetower.ch
- [19] Lallemand. P, Beckers. S. (2004), „Berlaymont, Bruxelles, Façade Double Peau", L’Architecture D'Aujourd’hui, 355, pp. 122-123.
- [20] Erhorn. H., Erhorn-Kluttig. H. (2004), Energy Certification of the Berlaymont Building, Summary of the Results of the German Calculations according to DIN V18599, Fraunhofer-lnstitut für Bauphysik, Stuttgart, Germany
- [21] Carbary. LD.
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Bibliografia
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bwmeta1.element.baztech-article-BTB2-0061-0099