Economical aspects of water-mist assisted air-cooled chillers usage in the temperate climate
The prices for energy resources, global trends for greenhouse gases emission limitation makes the application of higher efficient chillers with process air evaporative cooling more common. In order to determine the economical feasibility for choosing the particular type of cooling unit for the speci...
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2018-01-01
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Series: | MATEC Web of Conferences |
Online Access: | https://doi.org/10.1051/matecconf/201824506013 |
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doaj-7a397c62d77f41d9a098d2090db8ef0d2021-02-02T04:02:27ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-012450601310.1051/matecconf/201824506013matecconf_eece2018_06013Economical aspects of water-mist assisted air-cooled chillers usage in the temperate climateBrahmanis Arturs0Borodinecs Anatolijs1Tihana Jelena2Zemitis Jurgis3Monastyreva Daria4LTD LAFIVENTSRiga Technical UniversityRiga Technical UniversityRiga Technical UniversityPeter the Great St. Petersburg Polytechnic UniversityThe prices for energy resources, global trends for greenhouse gases emission limitation makes the application of higher efficient chillers with process air evaporative cooling more common. In order to determine the economical feasibility for choosing the particular type of cooling unit for the specific building, many factors should be taken into account, which are not always available. One of these factors is the European seasonal energy efficiency ratio (ESEER) defined by the Eurovent Certification Company. It overtakes the outdoor air temperatures from +20° to +35°C with different cooling loads, which is not completely suitable for the Baltic States. Within the research monitoring of cooling system and air parameters was performed during the cooling season. It was indicated that the distribution of the energy generated by the investigated object differs significantly from the distribution of influence factors according to ESEER test methodology. The calculation of the annual energy consumption for the particular historic building according to the recorded power distribution within the outdoor air temperature ranges was performed. Using the proposed method the results are much closer to the actual annual energy consumption of the cooling plant than the one performed using the seasonal efficiency with the base temperature of 18°C.https://doi.org/10.1051/matecconf/201824506013 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Brahmanis Arturs Borodinecs Anatolijs Tihana Jelena Zemitis Jurgis Monastyreva Daria |
spellingShingle |
Brahmanis Arturs Borodinecs Anatolijs Tihana Jelena Zemitis Jurgis Monastyreva Daria Economical aspects of water-mist assisted air-cooled chillers usage in the temperate climate MATEC Web of Conferences |
author_facet |
Brahmanis Arturs Borodinecs Anatolijs Tihana Jelena Zemitis Jurgis Monastyreva Daria |
author_sort |
Brahmanis Arturs |
title |
Economical aspects of water-mist assisted air-cooled chillers usage in the temperate climate |
title_short |
Economical aspects of water-mist assisted air-cooled chillers usage in the temperate climate |
title_full |
Economical aspects of water-mist assisted air-cooled chillers usage in the temperate climate |
title_fullStr |
Economical aspects of water-mist assisted air-cooled chillers usage in the temperate climate |
title_full_unstemmed |
Economical aspects of water-mist assisted air-cooled chillers usage in the temperate climate |
title_sort |
economical aspects of water-mist assisted air-cooled chillers usage in the temperate climate |
publisher |
EDP Sciences |
series |
MATEC Web of Conferences |
issn |
2261-236X |
publishDate |
2018-01-01 |
description |
The prices for energy resources, global trends for greenhouse gases emission limitation makes the application of higher efficient chillers with process air evaporative cooling more common. In order to determine the economical feasibility for choosing the particular type of cooling unit for the specific building, many factors should be taken into account, which are not always available. One of these factors is the European seasonal energy efficiency ratio (ESEER) defined by the Eurovent Certification Company. It overtakes the outdoor air temperatures from +20° to +35°C with different cooling loads, which is not completely suitable for the Baltic States. Within the research monitoring of cooling system and air parameters was performed during the cooling season. It was indicated that the distribution of the energy generated by the investigated object differs significantly from the distribution of influence factors according to ESEER test methodology. The calculation of the annual energy consumption for the particular historic building according to the recorded power distribution within the outdoor air temperature ranges was performed. Using the proposed method the results are much closer to the actual annual energy consumption of the cooling plant than the one performed using the seasonal efficiency with the base temperature of 18°C. |
url |
https://doi.org/10.1051/matecconf/201824506013 |
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