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Calculation of the thermal dynamic performance of the residential buildings' walls

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Calculation of the thermal dynamic properties of the multi-layer wall isolation of residential buildings is presented in this paper. Taking into account that the final objective is to create a building with the highest energy efficiency ratio, i.e. with the lowest energy consumption, both for heating and cooling, it is necessary to realize the good thermal characteristics of the multi-layer wall. To obtain the optimal solution for the wall's structure, various wall structures with different thicknesses of the individual layers, were analyzed. Based on results, presented in this paper, one can conclude that for walls with the same total thickness, but various thicknesses of the individual layers, that constitute the complete wall structure, the differences appear in the delay of the change of the walls outside temperature. In that way, by varying those individual layers' thicknesses, one can obtain the optimal solution for the wall structure with the highest savings of energy.
Wydawca
Rocznik
Strony
212--221
Opis fizyczny
Bibliogr. 16 poz., rys., tab.
Twórcy
  • University of Belgrade, Serbia
  • University of Belgrade, Serbia
  • University of Žilina, Slovakia
  • University of Žilina, Slovakia
Bibliografia
  • 1.Albatayneh, A., Alterman, D., Page, A., Moghtaderi, B., 2019. The Significance of the Adaptive Thermal Comfort Limits on the Air-Conditioning Loads in a Temperate Climate. Sustainability, 11, 328-345.
  • 2.Balaras, C. A., 1996. The role of thermal mass on the cooling load of buildings: An overview of computational methods. Energy and Buildings, 24, 1-10.
  • 3.Brambilla, A., Bonvin, J., Flourentzou, F., Jusselme, T., 2018. On the Influence of Thermal Mass and Natural Ventilation on Overheating Risk in Offices. Buildings, 8, 47-58.
  • 4.EIA (US Energy Information Administration), 2016. International Energy Outlook 2016 With Projections to 2024. Washington, DC, US. https://www.eia.gov/outlooks/ieo/
  • 5.EN ISO 13786 Standard 2017: Thermal performance of building components - Dynamic thermal characteristics - Calculation methods.
  • 6.Ferrariand S., Zanotto, V., 2016. Building Energy Performance Assessment in Southern Europe. Springer, Berlin, Heidelberg, Leipzig, Germany.
  • 7.Giarma, C., Kontoleon, K. J., 2016. Dynamic thermal response of building material layers in aspect of their moisture content. Applied Energy, 170, 76-91.
  • 8.Gregory, K., Moghtaderi, B., Sugo, H., Page, A., 2008. Effect of thermal mass on the thermal performance of various Australian residential constructions systems, Energy and Buildings, 40, 459-465.
  • 9.Johra, H., Heiselberg, P., 2017. Influence of internal thermal mass on the indoor thermal dynamics and integration of phase change materials in furniture for building energy storage: A review. Renewable and Sustainable Energy Reviews, 69, 19-32.
  • 10.Koo, C., Kim, J., Lee, M., Jeong, K., Hong, T., 2015. A review on sustainable construction management strategies for monitoring, diagnosing, and retrofitting the building’s dynamic energy performance: Focused on the operation and maintenance phase. Applied Energy, 155.
  • 11.Kosnyb, J., Kossecka, E., 2002. Influence of insulation configuration on heating and cooling loads in a continuously used building. Energy and Buildings, 34, 321-331.
  • 12.Kruger, E., Cruz, E.G., Givoni, B., 2010. Effectiveness of indirect evaporative cooling and thermal mass in a hot arid climate. Building and Environment, 45, 1422-1433.
  • 13.McMullan, R., 2018. Environmental Science in Buildings. Palgrave Macmillan Education, London, UK.
  • 14.Mohammad, S., Shea, A., 2013. Performance Evaluation of Modern Building Thermal Envelope Designs in the Semi-Arid Continental Climate of Tehran. Energy and Buildings, 3, 674-688.
  • 15.Nicol, J. F., Humphreys, M.A., 2002. Adaptive thermal comfort and sustainable thermal standards for buildings. Energy and Buildings, 34, 563-572.
  • 16.Rules on the energy efficiency of the building, 2011. Official Gazette of Republic of Serbia, 11/2011.
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2019).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-30eea287-45a6-40a7-864f-77b489b9121e
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