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Transient Energy Models of Housing Facilities Operation

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Buildings are the main consumer of energy resources in the total energy balance of the countries in Central and Eastern Europe, the main energy consumption is allocated for heating. Efficient use of energy resources for heating needs to a large extent depends on the efficiency of regulation of heating systems. In the article, dynamic mathematical models of a two-room typical apartment in Ukraine, built in 2016, were developed in Matlab and EnergyPlus software environment. The simulations were carried out using IWEC hourly climate data for the city of Kyiv. The results of simulations of thermal energy consumption in Matlab are characterized by a larger range of fluctuations of the heating system load, which is typical for the real operating conditions of the system with the controller of ON/OFF type. In EnergyPlus it is assumed that the gas boiler operates continuously in the ON mode. In the research, the change of load on the apartment heating system was studied at different numbers and locations of air temperature control sensors installation, according to which the controller of the autonomous gas boiler operates.
Rocznik
Tom
Strony
539--551
Opis fizyczny
Bibliogr. 14 poz., rys.
Twórcy
  • Department of Heat Engineering and Energy Saving, National Technical University of Ukraine "Igor Sikorsky Kyiv Polytechnic Institute", Ukraine
autor
  • Department of Heat Engineering and Energy Saving, National Technical University of Ukraine "Igor Sikorsky Kyiv Polytechnic Institute", Ukraine
  • Department of Heat Engineering and Energy Saving, National Technical University of Ukraine "Igor Sikorsky Kyiv Polytechnic Institute", Ukraine
  • Department of Heat Engineering and Energy Saving, National Technical University of Ukraine "Igor Sikorsky Kyiv Polytechnic Institute", Ukraine
Bibliografia
  • Bilous, I.Yu., Deshko, V.I., Sukhodub, I.O. (2020). Building energy modeling using hourly infiltration rate. Magazine of Civil Engineering, 96(4), 27-41. DOI: 10.18720/MCE.96.3
  • Deshko, V., Bilous, I., Vynogradov-Saltykov, V., Shovkaliuk, M., Hetmanchuk, H. (2020а). Integrated approaches to determination of CO2 concentration and air rate exchange in educational institution. Rocznik Ochrona Srodowiska, 22(1), 82-104.
  • Deshko, V., Buyak, N., Bilous, I., Shevchenko, O. (2020b). The Impact of Energy- Efficient Heating Modes on Human Body Exergy Consumption in Public Buildings. 2020 IEEE 7th International Conference On Energy Smart Systems. Kyiv, Ukraine, May 12-14, 2020. DOI: 10.1109/ESS50319.2020.9160270
  • DSTU N B V.1.1-27:2010. Budivelna klimatolohia. [Natsionalnyi standart Ukrainy] – K., 2011. 127 s. (in Ukraine).
  • DSTU B A.2.2-12:2015. Enerhetychna efectyvnist budivel. Metod rozrahunku enerhospozhyvannia pry opalenni, okholodzhenni, ventyliatsii, osvitlenni ta hariachomu vodopostachanni. [Natsionalnyi standart Ukrainy] – K.: Minrehion Ukrainy, 2015, - 203 s. (in Ukraine).
  • International Weather for Energy Calculations (IWEC): https://energyplus.net/weatherlocation/europe_wmo_region_6/UKR.
  • Kaymaz, Emre. (1995) Adaptive environmental control for optimal energy consumption in hospitals. Proceedings of the IEEE Symposium on Computer-Based Medical Systems. Pages 165-172Proceedings of the 8th IEEE Symposium on Computer- Based Medical Systems; Lubbock, TX, USA; 43511.
  • Kull, T.M.,Thalfeldt, M., Kurnitski, J. (2020). PI parameter influence on underfloor heating energy consumption and setpoint tracking in NZEBs. Energies, 13(8), 2068. DOI: 10.3390/en13082068
  • Liu, G., Zhou, X., Yan, J., Yan, G. (2021) A temperature and time-sharing dynamic control approach for space heating of buildings in district heating system. Energy, 221. DOI: 10.1016/j.energy.2021.119835
  • Perera, D.W.U., Halstensen, M., Skeie, N.O. (2015) Prediction of space heating energy consumption in cabins based on multivariate regression modelling. International Journal of Modeling and Optimization, 5(6), 385-392. DOI: 10.7763/IJMO.2015.V5.493
  • Perera, D.W.U., Pfeiffer, C., Skeie, N.O. (2014) Control of temperature and energy consumption in buildings. International Journal of Energy and Environment, 5(4). 471-484. In: http://hdl.handle.net/11250/2438435
  • Perera, D.W.U., Winkler, D., Skeie, N.-O. (2016) Multi-floor building heating in MATLAB and Modelica environments. Applied Energy, 171, 4-57. DOI: 10.1016/ j.apenergy.2016.02.143
  • Saleh, A., Mosa, M. (2016) Analysis of control strategies and simulation of heating systems using Simulink/ Matlab potential. Journal of Thermal Engineering, 2(5), 921-927. DOI: 10.18186/jte.97874
  • Ye, Y., Chen, Y., Zhang, J., Pang, Z., O'Neill, Z., Dong, B., Cheng, H. (2021) Energysaving potential evaluation for primary schools with occupant-centric controls. Applied Energy, 293, 116854. DOI: 10.1016/j.apenergy.2021.116854
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-77a595c0-12ff-444c-b36a-5c54c4bf4d69
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