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Design Problems of the Hybrid Electric Power Supply System for Energy Balanced Floated House

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Recreational houses (WH) of a recreational nature may constitute an offer for the development of non-standard forms of recreation proposed by the domestic tourist industry. The paper presents some selected design problems of heating an exemplary WH house. For central heating (central heating) and domestic hot water (domestic hot water), it is proposed to use a compressor heat pump. It works with the central heating installation (water underfloor heating) and hot water, and with a lower source in the form of surface water in the lake. The heat exchanger for the brine is immersed in the lake water. The methodology for calculating the dimensions of the lower heat exchanger was presented. It was proposed that it will be made in the form of two coils made of polyethylene pipes and WH float sides placed on both sides. The design solution presented in the paper meets the conditions for qualifying as using renewable energy sources (RES). It should be noted that covering the demand for electricity for the WH house, including to drive the heat pump motor and for other living purposes in a residential superstructure, is also made using a hybrid system in the form of cooperation between wind turbines and photovoltaic panels. Problems regarding the WH hybrid electricity supply system will be the subject of a separate study.
Rocznik
Strony
825--839
Opis fizyczny
Bibliogr. 14 poz., rys., tab.
Twórcy
  • Koszalin University of Technology, Poland
  • Koszalin University of Technology, Poland
  • Koszalin University of Technology, Poland
  • Koszalin University of Technology, Poland
  • Koszalin University of Technology, Poland
Bibliografia
  • Charun, H. (2015). The basics of energy management at a glance. Volume 2. Handbook. Ed. University of Koszalin University of Technology, Koszalin.
  • Charun, H., Kuczyński, W. (2016). Basics of energy management in outline. Volume 3. Handbook. Ed. University of Koszalin University of Technology, Koszalin.
  • Charun, H., Kuczyński, W., Sikora, M., Sobieralski, R. (2020). Selected design aspects of heating an energy-balanced floating house. Rocznik Ochrona Środowiska, 22.
  • Collective work: Renewable and unconventional energy sources. Guide. The edition I Kraków-Tarnobrzeg, 2008.
  • Jagodziński, W. (1959). Wind turbines. Polish Technical Publisher, Warsaw.
  • Malko, J. (2004). Distributed generation in European energy policy. Power distribution networks. NETWORK, 5th Scientific and Technical Conference.
  • Ordinance of the Minister of Economy of October 18, 2012 on the detailed scope of obligations to obtain and submit certificates of origin for redemption, to pay a substitute fee, to purchase electricity and heat generated in renewable energy sources, and to confirm data regarding the amount of energy generated in renewable energy source (Journal of Laws of 2012, item 1229)
  • Paska, J. (2007). Production of electricity and heat in hybrid systems. Energy Market, 5.
  • Paska, J. (2013). Distributed generation using hybrid manufacturing systems. Energetyka, 6, 457-462.
  • Paska, J., Kłos, M. (2005). Hybrid electricity generation systems. Materials of the XII Scientific Conference on "Current Problems in Power Engineering", Gdańsk-Jurata.
  • Szargut, J. (1983). Thermodynamic and economic analysis in industrial power engineering. WNT, Warsaw.
  • Szargut, J., Ziębik, A. (2007). Combined heat and electricity generation – combined heat and power plants. WN PWN, Warsaw.
  • Tytko, R. (2016). Renewable energy equipment and systems. VIII edition. Society of Slovaks Publishing House and Printing House in Poland Krakow.
  • Wekesa, D.W., Wang, C., Wei, Y., Zhu, W. (2016). Experimental and numerical study of turbulence effect on aerodynamic performance of a small-scale vertical axis wind turbine. Journal of Wind Engineering and Industrial Aerodynamics, 157, 1-14.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2021).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-5c204c09-2b68-46cb-93ab-17af37ad10e0
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