RAF - Repository of the Faculty of Architecture
University of Belgrade, Faculty of Architecture
    • English
    • Српски
    • Српски (Serbia)
  • English 
    • English
    • Serbian (Cyrillic)
    • Serbian (Latin)
  • Login
View Item 
  •   RAF
  • Arhitektonski fakultet
  • Publikacije istraživača / Researchers' publications
  • View Item
  •   RAF
  • Arhitektonski fakultet
  • Publikacije istraživača / Researchers' publications
  • View Item
JavaScript is disabled for your browser. Some features of this site may not work without it.

Lack of regulation on the energy efficiency in Serbia in terms of the assessment of the impact of thermal bridges

Thumbnail
2020
Aleksandar_2020_IOP_Conf._Ser.__Earth_Environ._Sci._410_012077.pdf (1.317Mb)
Authors
Rajčić, Aleksandar
Đukanović, Ljiljana
Radivojević, Ana
Conference object (Published version)
Metadata
Show full item record
Abstract
As one of the aspects of sustainable architecture, the energy efficiency of buildings has largely come to life and has found its practical application in modern construction practice. Active action towards the achievement of the adequate energy performance of buildings implies the creation of appropriate regulations, providing basic guidelines for securing energy efficiency in the design and construction of buildings. In that sense, with a dozen years of delay in relation to the introduction of the EPBD, Serbia has adopted its legal regulations regarding energy efficiency in buildings, being in force since 2012. Respecting the basic guidelines of the original directive, the regulations in Serbia were the subject of major changes in relation to the previous ones, making a major shift in the boundaries of the relevant parameters and the basic methodology of calculating the energy performance of buildings. However, in practice, it has been shown that some of the factors that are important... for the design and energy behaviour of the buildings have been treated inadequately. This particularly refers to the problem of thermal bridges, whose impact on the overall energy performance of the buildings is too simplified. Consequently, depending on the complexity of the building, the prescribed calculation methodology often yields significantly fewer energy needs than they actually are. By taking the view that the influence of thermal bridges, regardless of their type and character, is treated as an arbitrary magnification of surface transmission loss in the function of magnifying the surface of the thermal envelope, the real impact of both linear and point heat losses is neglected. While the issue of an adequate calculation of linear losses is directly related to the way of designing the building, that is, to the conception of details, the question of the impact of point losses is a consequence of the structure of thermal envelope elements. The paper presents two types of critical cases of thermal bridges: the treatment of linear thermal bridges for which research has shown that their influence can significantly exceed those envisaged by the current rulebook, and the influence of point heat bridges, as seen in the specific case of ventilated façades in which this problem is present.

Keywords:
energy efficiency / regulations / calculation method / thermal bridges
Source:
IOP Conference Series: Earth and Environmental Science, 2020, 410, 1-11
Publisher:
  • IOP Publishing Ltd
Funding / projects:
  • Integration and harmonization of sound insulation in buildings in the context of sustainable housing (RS-36026)
  • Research and systematization of housing development in Serbia in the context of globalization and European integrations for the purpose of improving housing quality and standards (RS-36034)

DOI: 10.1088/1755-1315/410/1/012077

WoS: 000538681000077

Scopus: 2-s2.0-85079588636
[ Google Scholar ]
URI
https://raf.arh.bg.ac.rs/handle/123456789/830
Collections
  • Publikacije istraživača / Researchers' publications
Institution/Community
Arhitektonski fakultet
TY  - CONF
AU  - Rajčić, Aleksandar
AU  - Đukanović, Ljiljana
AU  - Radivojević, Ana
PY  - 2020
UR  - https://raf.arh.bg.ac.rs/handle/123456789/830
AB  - As one of the aspects of sustainable architecture, the energy efficiency of buildings has largely come to life and has found its practical application in modern construction practice. Active action towards the achievement of the adequate energy performance of buildings implies the creation of appropriate regulations, providing basic guidelines for securing energy efficiency in the design and construction of buildings. In that sense, with a dozen years of delay in relation to the introduction of the EPBD, Serbia has adopted its legal regulations regarding energy efficiency in buildings, being in force since 2012. Respecting the basic guidelines of the original directive, the regulations in Serbia were the subject of major changes in relation to the previous ones, making a major shift in the boundaries of the relevant parameters and the basic methodology of calculating the energy performance of buildings. However, in practice, it has been shown that some of the factors that are important for the design and energy behaviour of the buildings have been treated inadequately. This particularly refers to the problem of thermal bridges, whose impact on the overall energy performance of the buildings is too simplified. Consequently, depending on the complexity of the building, the prescribed calculation methodology often yields significantly fewer energy needs than they actually are. By taking the view that the influence of thermal bridges, regardless of their type and character, is treated as an arbitrary magnification of surface transmission loss in the function of magnifying the surface of the thermal envelope, the real impact of both linear and point heat losses is neglected. While the issue of an adequate calculation of linear losses is directly related to the way of designing the building, that is, to the conception of details, the question of the impact of point losses is a consequence of the structure of thermal envelope elements. The paper presents two types of critical cases of thermal bridges: the treatment of linear thermal bridges for which research has shown that their influence can significantly exceed those envisaged by the current rulebook, and the influence of point heat bridges, as seen in the specific case of ventilated façades in which this problem is present.
PB  - IOP Publishing Ltd
C3  - IOP Conference Series: Earth and Environmental Science
T1  - Lack of regulation on the energy efficiency in Serbia in terms of the assessment of the impact of thermal bridges
VL  - 410
SP  - 1
EP  - 11
DO  - 10.1088/1755-1315/410/1/012077
ER  - 
@conference{
author = "Rajčić, Aleksandar and Đukanović, Ljiljana and Radivojević, Ana",
year = "2020",
abstract = "As one of the aspects of sustainable architecture, the energy efficiency of buildings has largely come to life and has found its practical application in modern construction practice. Active action towards the achievement of the adequate energy performance of buildings implies the creation of appropriate regulations, providing basic guidelines for securing energy efficiency in the design and construction of buildings. In that sense, with a dozen years of delay in relation to the introduction of the EPBD, Serbia has adopted its legal regulations regarding energy efficiency in buildings, being in force since 2012. Respecting the basic guidelines of the original directive, the regulations in Serbia were the subject of major changes in relation to the previous ones, making a major shift in the boundaries of the relevant parameters and the basic methodology of calculating the energy performance of buildings. However, in practice, it has been shown that some of the factors that are important for the design and energy behaviour of the buildings have been treated inadequately. This particularly refers to the problem of thermal bridges, whose impact on the overall energy performance of the buildings is too simplified. Consequently, depending on the complexity of the building, the prescribed calculation methodology often yields significantly fewer energy needs than they actually are. By taking the view that the influence of thermal bridges, regardless of their type and character, is treated as an arbitrary magnification of surface transmission loss in the function of magnifying the surface of the thermal envelope, the real impact of both linear and point heat losses is neglected. While the issue of an adequate calculation of linear losses is directly related to the way of designing the building, that is, to the conception of details, the question of the impact of point losses is a consequence of the structure of thermal envelope elements. The paper presents two types of critical cases of thermal bridges: the treatment of linear thermal bridges for which research has shown that their influence can significantly exceed those envisaged by the current rulebook, and the influence of point heat bridges, as seen in the specific case of ventilated façades in which this problem is present.",
publisher = "IOP Publishing Ltd",
journal = "IOP Conference Series: Earth and Environmental Science",
title = "Lack of regulation on the energy efficiency in Serbia in terms of the assessment of the impact of thermal bridges",
volume = "410",
pages = "1-11",
doi = "10.1088/1755-1315/410/1/012077"
}
Rajčić, A., Đukanović, L.,& Radivojević, A.. (2020). Lack of regulation on the energy efficiency in Serbia in terms of the assessment of the impact of thermal bridges. in IOP Conference Series: Earth and Environmental Science
IOP Publishing Ltd., 410, 1-11.
https://doi.org/10.1088/1755-1315/410/1/012077
Rajčić A, Đukanović L, Radivojević A. Lack of regulation on the energy efficiency in Serbia in terms of the assessment of the impact of thermal bridges. in IOP Conference Series: Earth and Environmental Science. 2020;410:1-11.
doi:10.1088/1755-1315/410/1/012077 .
Rajčić, Aleksandar, Đukanović, Ljiljana, Radivojević, Ana, "Lack of regulation on the energy efficiency in Serbia in terms of the assessment of the impact of thermal bridges" in IOP Conference Series: Earth and Environmental Science, 410 (2020):1-11,
https://doi.org/10.1088/1755-1315/410/1/012077 . .

DSpace software copyright © 2002-2015  DuraSpace
About RAF | Send Feedback

OpenAIRERCUB
 

 

All of DSpaceInstitutions/communitiesAuthorsTitlesSubjectsThis institutionAuthorsTitlesSubjects

Statistics

View Usage Statistics

DSpace software copyright © 2002-2015  DuraSpace
About RAF | Send Feedback

OpenAIRERCUB