Retrofitting of fire stations in cold climate regions
Most of the urban housing stock in European cities consists of multi apartment buildings. Improvement of energy efficiency of the existing building stock is the key priority across the world. As such, unclassified buildings including fire stations present a significant potential for application of i...
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Peter the Great St. Petersburg Polytechnic University
2019-10-01
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doaj-04a85dbbb9324c48a90002277698833e2021-02-26T11:45:13ZengPeter the Great St. Petersburg Polytechnic UniversityИнженерно-строительный журнал2071-03052019-10-01906859210.18720/MCE.90.8Retrofitting of fire stations in cold climate regionsJurgis Zemitis0https://orcid.org/0000-0002-7812-3540Anatolijs Borodinecs1https://orcid.org/0000-0001-9004-7889Aleksejs Prozuments2https://orcid.org/0000-0002-3641-7540Aleksandrs Zajacs3https://orcid.org/0000-0002-3583-5978Riga Technical UniversityRiga Technical UniversityRiga Technical UniversityRiga Technical UniversityMost of the urban housing stock in European cities consists of multi apartment buildings. Improvement of energy efficiency of the existing building stock is the key priority across the world. As such, unclassified buildings including fire stations present a significant potential for application of innovative energy efficient measures. Despite the fact that fire stations account for a rather insignificant share on the scale of the total building stock, it is vitally important to ensure optimal thermal comfort as well as reduce energy consumption in those buildings. This in turn contributes in minimizing maintenance and running costs for municipalities. This paper analyses typology of Latvian fire stations and their energy consumption. Standardized IFC model was developed to evaluate effect of implementation of energy efficiency measures in a selected fire station. The study results showed that the proposed theoretical thermal energy consumption of developed standardised model correlates with the measured data. The measured average annual energy consumption including electricity for fire stations was 317 kWh/m2 and thermal energy for space heating – 135.4 kWh/m2. Based on theoretical model, different retrofitting scenarios were evaluated using IDA–ICE dynamic energy simulation software. The results of this study can be expanded and applied to other types of unclassified buildings (in countries with cold climate) such as police departments and prisons.https://engstroy.spbstu.ru/en/article/2019.90.8/buildingsenergy efficiencyenergy retrofit |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Jurgis Zemitis Anatolijs Borodinecs Aleksejs Prozuments Aleksandrs Zajacs |
spellingShingle |
Jurgis Zemitis Anatolijs Borodinecs Aleksejs Prozuments Aleksandrs Zajacs Retrofitting of fire stations in cold climate regions Инженерно-строительный журнал buildings energy efficiency energy retrofit |
author_facet |
Jurgis Zemitis Anatolijs Borodinecs Aleksejs Prozuments Aleksandrs Zajacs |
author_sort |
Jurgis Zemitis |
title |
Retrofitting of fire stations in cold climate regions |
title_short |
Retrofitting of fire stations in cold climate regions |
title_full |
Retrofitting of fire stations in cold climate regions |
title_fullStr |
Retrofitting of fire stations in cold climate regions |
title_full_unstemmed |
Retrofitting of fire stations in cold climate regions |
title_sort |
retrofitting of fire stations in cold climate regions |
publisher |
Peter the Great St. Petersburg Polytechnic University |
series |
Инженерно-строительный журнал |
issn |
2071-0305 |
publishDate |
2019-10-01 |
description |
Most of the urban housing stock in European cities consists of multi apartment buildings. Improvement of energy efficiency of the existing building stock is the key priority across the world. As such, unclassified buildings including fire stations present a significant potential for application of innovative energy efficient measures. Despite the fact that fire stations account for a rather insignificant share on the scale of the total building stock, it is vitally important to ensure optimal thermal comfort as well as reduce energy consumption in those buildings. This in turn contributes in minimizing maintenance and running costs for municipalities. This paper analyses typology of Latvian fire stations and their energy consumption. Standardized IFC model was developed to evaluate effect of implementation of energy efficiency measures in a selected fire station. The study results showed that the proposed theoretical thermal energy consumption of developed standardised model correlates with the measured data. The measured average annual energy consumption including electricity for fire stations was 317 kWh/m2 and thermal energy for space heating – 135.4 kWh/m2. Based on theoretical model, different retrofitting scenarios were evaluated using IDA–ICE dynamic energy simulation software. The results of this study can be expanded and applied to other types of unclassified buildings (in countries with cold climate) such as police departments and prisons. |
topic |
buildings energy efficiency energy retrofit |
url |
https://engstroy.spbstu.ru/en/article/2019.90.8/ |
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