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Mathematical models for determination of energy need for heating

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
One of the key indicators that characterize efficient energy use for heating purpose is the specific value per unit area and/or volume. This paper is devoted to the study of various methods application features used to determine energy need for heating, which there are a large number [1]. Determination of energy need for heating based on experimental data has a number of approximations and inaccuracies, so it is advisable to establish the annual energy need for buildings based on the calculated approaches. Addressing these challenges requires the use of calculation methods and mathematical models. Till the recent years, the methods for determining energy consumption and energy efficiency assessment in Ukraine took into account only annual energy consumption for heating and did not take into account the need for cooling and hot water supply [2, 3]. According to standard [2], the building energy efficiency should be determined on the basis of calculated or actual annual energy consumption for heating needs, while ensuring appropriate sanitary and hygienic norms in the building spaces.
Rocznik
Strony
45--51
Opis fizyczny
Bibliogr. 19 poz., tab., wykr.
Twórcy
autor
  • National Technical University of Ukraine “Igor Sikorsky Kyiv Polytechnic Institute”
autor
  • National Technical University of Ukraine “Igor Sikorsky Kyiv Polytechnic Institute”
autor
  • National Technical University of Ukraine “Igor Sikorsky Kyiv Polytechnic Institute”
Bibliografia
  • [1] Deshko V.I., Bilous I.Yu., Matematychni modeli budivel' dlya otsinky enerhospozhyvannya [Mathematical models for assessing energy consumption of buildings]. Building construction: Scientific and technical collection of scientific works (construction). 2014. No. 80. Pp. 68-72 (ukr).
  • [2] DSTU N B A.2.2.5: 2007. Proektuvannya. Nastanova z rozroblennya ta skladannya enerhetychnoho pasporta budynkiv pry novomu budivnytstvi ta rekonstruktsiyi [Designing. Guidelines for the development and assembly of energy passports for buildings under new construction and reconstruction]. K.: Minrehionbud Ukrayiny, 2008. 44 p.
  • [3] DBN V.2.6_31:2006. Konstruktsiyi budynkiv ta sporud. Teplova izolyatsiya budivel' [Construction of buildings and structures. Insulation of buildings]. K.: Minbud Ukrayiny. 2006. 64 p. (ukr).
  • [4] Normy ta vkazivky po normuvannyu vytrat palyva ta teplovoyi enerhiyi na opalennya zhytlovykh ta hromads'kykh sporud, a takozh na hospodars'ko-pobutovi potreby v Ukrayini [The norms and guidelines for the standardization of fuel and heat energy costs for the heating of residential and public buildings, as well as for household and domestic needs in Ukraine] KTM-204 Ukrayina 244-94. Approved by the State Committee for Housing and Communal Services of Ukraine on December 14, 1993. - K .: ZAT "VIPOL". 2001. 376 p.
  • [5] Mizhhaluzevi normy spozhyvannya elektrychnoyi ta teplovoyi enerhiyi dlya ustanov i orhanizatsiy byudzhetnoyi sfery Ukrayiny [Intersectoral norms of electric and heat energy consumption for institutions and organizations of the budgetary sphere of Ukraine]. Approved by the State Committee of Ukraine for Energy Saving 25.10.99. - K .: ZAT "VIPOL". 2000. - 104 p.
  • [6] DSTU B A.2.2-12:2015. Enerhetychna efektyvnist' budivel'. Metod rozrakhunku enerhospozhyvannya pry opalenni, okholodzhenni, ventylyatsiyi, osvitlenni ta haryachomu vodopostachanni [Energy efficiency of buildings. Method of calculation of energy heating, cooling, ventilation, lighting and hot water]. K.: Minrehion Ukrayiny. 2015. 205 p. (ukr).
  • [7] DBN V.2.6-31:2016. Teplova izolyatsiya budivel' [Thermal insulation of buildings]. K.: Derzhavne pidpryyemstvo "Ukrarkhbudinform". 2016. 33 p. (ukr).
  • [8] Rallapalli H.S., A Comparison of EnergyPlus and eQUEST Whole Building Energy Simulation Results for a Medium Sized Office Building // Master Thesis. Arizona State University. 2010. Pp. 84.
  • [9] Gendelis S., Jakovics A., Influence of solar radiation and ventilation conditions on heat balance and thermal comfort conditions in living-rooms. Pp. 634-643.
  • [10] Michalak P., The simple hourly method of EN ISO 13790 standard in Matlab/Simulink: A comparative study for the climatic conditions of Poland // Energy No 75. 2014. Pp. 568-578.
  • [11] EN 13790:2008. Energy performance of buildings - Calculation of energy use for space heating and cooling. - CEN. European Committee for Standardization, 2008. 53 р.
  • [12] EN ISO 13786:2007. Thermal performance of building component - Dynamic thermal characteristics - Calculation methods. - CEN. European Committee for Standardization, 2007. 27 р.
  • [13] https://energyplus.net/.
  • [14] EnergyPlus: Creating a new-generation building energy simulation program. Crawley D.B., Lawrie L.K., Winkelmann F.C., Buhl W.F., Huang Y.J., Pedersen C.O., Strand R.K., Liesen R.J., Fisher D.E., Wittef M.J., Glazer J. Energy and Buildings. 2001. No 33. Pp. 319-331.
  • [15] Winkelmann F.C., Modeling Windows in EnergyPlus // Seventh International IBPSA Conference, Rio de Janeiro, Brazil August 13-15, 2001. Building Simulation. Pp. 457-464.
  • [16] Krarti M., Chuangchid P., Ihm P., Foundation heat transfer module for EnergyPlus program // Seventh International IBPSA Conference, Rio de Janeiro, Brazil August 13-15, 2001. p. 931-938.
  • [17] https://energyplus.net/weather-location/europe_wmo_region_6/UKR.
  • [18] DSTU-N B V.1.1-27:2010. Budvel'na klimatolohiya [Construction climatology]. K.: Minrehion Ukrayiny. 2010. 127 p. (ukr).
  • [19] Beckman W., Klein S., Duffy J., Calculation of systems of solar heat supply. M.: Energoizdat, 1992.
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2018).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-19d4be2a-e426-4239-afef-fc75ae881ece
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