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Energy Use and Greenhouse Gas Emissions of Air-Source Heat Pump and Innovative Ground-Source Air Heat Pump in a Cold Climate

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  • Maija K. Mattinen
  • Ari Nissinen
  • Sampsa Hyysalo
  • Jouni K. Juntunen

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Suggested Citation

  • Maija K. Mattinen & Ari Nissinen & Sampsa Hyysalo & Jouni K. Juntunen, 2015. "Energy Use and Greenhouse Gas Emissions of Air-Source Heat Pump and Innovative Ground-Source Air Heat Pump in a Cold Climate," Journal of Industrial Ecology, Yale University, vol. 19(1), pages 61-70, February.
  • Handle: RePEc:bla:inecol:v:19:y:2015:i:1:p:61-70
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    File URL: http://hdl.handle.net/10.1111/jiec.2015.19.issue-1
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    Cited by:

    1. Zhuang, Chaoqun & Choudhary, Ruchi & Mavrogianni, Anna, 2023. "Uncertainty-based optimal energy retrofit methodology for building heat electrification with enhanced energy flexibility and climate adaptability," Applied Energy, Elsevier, vol. 341(C).
    2. Singh Gaur, Ankita & Fitiwi, Desta & Curtis, John, 2019. "Heat pumps and their role in decarbonising heating Sector: a comprehensive review," Papers WP627, Economic and Social Research Institute (ESRI).
    3. Samuele Lo Piano & Lorenzo Benini, 2022. "A critical perspective on uncertainty appraisal and sensitivity analysis in life cycle assessment," Journal of Industrial Ecology, Yale University, vol. 26(3), pages 763-781, June.
    4. Khouya, Ahmed, 2021. "Modelling and analysis of a hybrid solar dryer for woody biomass," Energy, Elsevier, vol. 216(C).
    5. Hyysalo, Sampsa & Juntunen, Jouni K., 2024. "Series of configurational movements: User activities in technology generalization," Technological Forecasting and Social Change, Elsevier, vol. 200(C).
    6. Roberto Bruno & Francesco Nicoletti & Giorgio Cuconati & Stefania Perrella & Daniela Cirone, 2020. "Performance Indexes of an Air-Water Heat Pump Versus the Capacity Ratio: Analysis by Means of Experimental Data," Energies, MDPI, vol. 13(13), pages 1-19, July.

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