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Energy consumption conditioned by shapes of buildings

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In accordance with long-term strategic objectives of reducing emissions and improving energy efficiency, adoption of the European Parliament on May 18, 2010 and the adoption of 2010/31/EU raised the commitment by 2020 to reduce total greenhouse gas emissions by et least 20%. The Directive requires Member state to design all new buildings with nearly zero until December 31 2020. Aims of Directive can be applied in conjunction excellent thermal parameters of buildings envelope design energy-efficient buildings and shape solutions. For optimal design EEB has a major impact outside geometry, i.e. compact of shape and surface topography. After construction of the EEB is a possible number of parameters to modify, but the shape that has been proposed in the early stage of architectural design usually remains unchanged throughout the life of building. This paper provides analysis of building shape (ground plan and vertical division) and their impact of shape factor FT of buildings. For some shape is provide a parametric analysis obtained from a comprehensive whole building energy simulation. Parametric analysis regards orientation of buildings to the cardinal point and ratio of glazing to the building envelope wall.
Rocznik
Tom
Strony
46--53
Opis fizyczny
Bibliogr. 7 poz., rys., tab., wykr.
Twórcy
autor
  • Technical University of Košice, Slovakia
autor
  • Technical University of Košice, Slovakia
Bibliografia
  • 1. Alanzia A., Seo D., Krartim, Impact of building shape on thermal performance of office buildings in Kuwait, Energy Conversion and Management 2009, 50, 822-828.
  • 2.Lis P., Wpływ ukształtowania architektoniczno-funkcjonalnego budynków szkół na zużycie ciepła do ogrzewania, Gospodarka Paliwami i Energią 2004, LII (595), 1, 4-8.
  • 3.Lis P., Shape index of school buildings and energy consumption for heating, [in:] Budownictwo o zoptymalizowanym potencjale energetycznym, ed. T. Bobko, Wyd. Politechniki Częstochowskiej, Częstochowa 2004, 204-208.
  • 4.Mitigation of disasters in health facilities: Volume 3: Architectural issues. PAHO, 1993.
  • 5.Energy Plus Version V6.0 Documentation, October 2010.
  • 6.STN 73 0540, 1-4: Thermal performance of buildings and components. Thermal protection of buildings, Part 1: Terminology, Part 2: Functional requirements, Part 3: Properties of environments, Part 4: Methods of calculation. SUTN 2006.
  • 7.STN EN ISO 13790: Thermal performance of buildings. Calculation of energy use for heating.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-003987d3-a8be-401f-bec0-1431101e4302
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