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Technological innovations in heat pump systems

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Technological innovations in heat pump systems ( technological-innovations-heat-pump-systems )

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288 R. M. Lazzarin [5] K. Sakitani, M. Moriwaki, M. Okamoto, E. Kumakura and T. Okamoto, ‘Development of a two- phase flow expander for CO2 heat pumps and air conditioners’, 8th IEA Heat Pump Conference, Las Vegas, 2005. [6] W. Seki et al., ‘Development of a high performance turbo-chiller’, 8th IEA Heat Pump Conference, Las Vegas, 2005. [7] M. Zogg, ‘Study of energy requirements for air-source heat pump evaporators: alternatives and efficiencies’, IEA Heat Pump Centre Newsletter, 21(2) (2003), 19–21. [8] V. C. Mei, Z. Gao and J. J. Tomlinson, ‘The frost-less heat pump: new method of controlling the wintertime performance of air-to-air heat pumps’, IEA Heat Pump Centre Newsletter, 23(1) (2005), 22–24. [9] http://www.mazda.com.au/articleZone.asp?articleZoneID=92. [10] http://www.robur.it/pag_prodotto_doc.jsp?idl=1&tipo_doc_prod_id=18&idp=10. [11] H. Halozan, R. Rieberer, ‘Direct evaporation ground coupled heat pump in Austria’, IEA Heat Pump Centre Newsletter, 20(3) (2002), 28–32. [12] H. Buitenhuis, ‘2 MegaWatt project. The most energy efficient heating system in a retrofit housing project’, IEA Heat Pump Centre Newsletter, 21(4) (2003), 18–20. Downloaded from https://academic.oup.com/ijlct/article/2/3/262/758006 by guest on 21 June 2022 International Journal of Low Carbon Technologies 2/3

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