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Iordache, F., Baltaretu, F. & Draghici, A. (2024). About the evaluation of the coefficientof performance for a heat pump. Revista Romana de Inginerie Civila. 15(3), 373-381. DOI: 10.37789/rjce.2024.15.3.18.Search in Google Scholar
Iordache, F & Talpiga, M. (2022). Simplified procedure for evaluating energy performance of heat pumps. Energy and economic analysis. Revista Romana de Inginerie Civila. 13 (4), 337-252. DOI: 10.37789/rjce.2022.13.4.3.Search in Google Scholar
Iordache, F. & Talpiga, M. (2024). Shared and intake energy related to a building served by a hybrid source - heat pump with boiler. Revista Romana de Inginerie Civila. 15 (4), 383-389. DOI: 10.37789/rjce.2024.15.4.1Search in Google Scholar
Iordache, F., Talpiga, M. & Iordache, V. (2024). External temperatures BIN intervals evaluation procedure proposal. Revista Romana de Inginerie Civila. 15 (2), 163-166. DOI: 10.37789/rjce.2024.15.2.6Search in Google Scholar
Rezaei, A., Samadzadegan, B., Rasoulian, H., Ranjbar, S., Abolhassani, S. S., Sanei, A. & Eicker, U. (2021). A New Modeling Approach for Low-Carbon District Energy System Planning. Energies. 14 (5), 1383. https://doi.org/10.3390/en14051383Search in Google Scholar
Jeandaux, C., Videau, J.-B. & Prieur-Vernat, A. (2021). Life Cycle Assessment of District Heating Systems in Europe: Case Study and Recommendations. Sustainability. 13 (20), 11256. https://doi.org/10.3390/su132011256Search in Google Scholar
Bernath, C., Deac, G. & Sensfuß, F. (2019). Influence of heat pumps on renewable electricity integration: Germany in an European context. Energy Strategy Reviews. 26, 100389. https://doi.org/10.1016/j.esr.2019.100389Search in Google Scholar