Performance Evaluation of an Air Source Heat Pump Coupled with a Building-Integrated Photovoltaic/Thermal (BIPV/T) System under Cold Climatic Conditions

Author:

Hailu Getu,Dash Peter,Fung Alan S.

Publisher

Elsevier BV

Reference16 articles.

1. Alaska Energy End Use Study 2012, Alaska Energy Authority [Internet]; [cited 20th September]. Available from: http://www.akenergyauthority.org/endusestudy.html.

2. Online Code Environment & Advocacy Network [Internet]; [cited 23rd September 2014]; Available from: http://energycodesocean.org/state- country/alaska#.

3. Goetzler W, Guernsey M, Droesch M. Research and Development Needs for Building-Integrated Solar Technologies. U.S. Department of Energy Office of Energy Efficiency and Renewable Energy Building Technologies Office Report, 2014.

4. Safa A, Fung AS, Kumar R. Performance of a Two-Stage Variable Capacity Air Source Heat Pump: Field Performance Results and TRNSYS Simulation. Energy and Buildings, Accepted; ENB-D-14-01429R2, 2015.

5. Bertsch S and Groll E. Two-Stage Air-Source Heat Pump for Residential Heating and Cooling Applications in Northern U.S. Climates. International Journal of Refrigeration 2008; 1282-92.

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