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Ten questions concerning modeling of distributed multi-energy systems
Mavromatidis, G., Orehounig, K., Bollinger, L. A., Hohmann, M., Marquant, J. F., Miglani, S., … Carmeliet, J. (2019). Ten questions concerning modeling of distributed multi-energy systems. Building and Environment, 165, 106372 (22 pp.). https://doi.org/10.1016/j.buildenv.2019.106372
A methodology to calculate long-term shallow geothermal energy potential for an urban neighbourhood
Miglani, S., Orehounig, K., & Carmeliet, J. (2018). A methodology to calculate long-term shallow geothermal energy potential for an urban neighbourhood. Energy and Buildings, 159, 462-473. https://doi.org/10.1016/j.enbuild.2017.10.100
Integrating a thermal model of ground source heat pumps and solar regeneration within building energy system optimization
Miglani, S., Orehounig, K., & Carmeliet, J. (2018). Integrating a thermal model of ground source heat pumps and solar regeneration within building energy system optimization. Applied Energy, 218, 78-94. https://doi.org/10.1016/j.apenergy.2018.02.173
Design and optimization of a hybrid solar ground source heat pump with seasonal regeneration
Miglani, S., Orehounig, K., & Carmeliet, J. (2017). Design and optimization of a hybrid solar ground source heat pump with seasonal regeneration. In J. L. Scartezzini (Ed.), Energy procedia: Vol. 122. CISBAT 2017 international conference. Future buildings & districts - energy efficiency from nano to urban scale (pp. 1015-1020). https://doi.org/10.1016/j.egypro.2017.07.468
Assessment of the ground source heat potential at building level applied to an urban case study
Miglani, S., Orehounig, K., & Carmeliet, J. (2016). Assessment of the ground source heat potential at building level applied to an urban case study (p. (13 pp.). Presented at the 19. Status-Seminar «Forschen für den Bau im Kontext von Energie und Umwelt». brenet.