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Spatiotemporal upscaling errors of building stock clustering for energy demand simulation
Eggimann, S., Vulic, N., Rüdisüli, M., Mutschler, R., Orehounig, K., & Sulzer, M. (2022). Spatiotemporal upscaling errors of building stock clustering for energy demand simulation. Energy and Buildings, 258, 111844 (17 pp.). https://doi.org/10.1016/j.enbuild.2022.111844
Flexibility assessment of e-mobilty in multi-energy districts
Koirala, B., Mutschler, R., Bartolini, A., Bollinger, A., & Orehounig, K. (2022). Flexibility assessment of e-mobilty in multi-energy districts. In Vol. CP798. CIRED Porto workshop 2022: E-mobility and power distribution systems (p. 367 (5 pp.). https://doi.org/10.1049/icp.2022.0827
Opportunities for passive cooling to mitigate the impact of climate change in Switzerland
Silva, R., Eggimann, S., Fierz, L., Fiorentini, M., Orehounig, K., & Baldini, L. (2022). Opportunities for passive cooling to mitigate the impact of climate change in Switzerland. Building and Environment, 208, 108574 (19 pp.). https://doi.org/10.1016/j.buildenv.2021.108574
Linked data ontology for urban scale building energy simulation
Allan, J., Fierz, L., Bollinger, A., & Orehounig, K. (2021). Linked data ontology for urban scale building energy simulation. In eSIM 2020 conference proceedings (p. (8 pp.). IBPSA.
Estimating hourly lighting load profiles of rural households in East Africa applying a data-driven characterization of occupant behavior and lighting devices ownership
Dominguez, C., Orehounig, K., & Carmeliet, J. (2021). Estimating hourly lighting load profiles of rural households in East Africa applying a data-driven characterization of occupant behavior and lighting devices ownership. Development Engineering, 6, 100073 (21 pp.). https://doi.org/10.1016/j.deveng.2021.100073
Understanding the path towards a clean energy transition and post-electrification patterns of rural households
Dominguez, C., Orehounig, K., & Carmeliet, J. (2021). Understanding the path towards a clean energy transition and post-electrification patterns of rural households. Energy for Sustainable Development, 61, 46-64. https://doi.org/10.1016/j.esd.2021.01.002
Geospatial simulation of urban neighbourhood densification potentials
Eggimann, S., Wagner, M., Ho, Y. N., Züger, M., Schneider, U., & Orehounig, K. (2021). Geospatial simulation of urban neighbourhood densification potentials. Sustainable Cities and Society, 72, 103068 (14 pp.). https://doi.org/10.1016/j.scs.2021.103068
Handbuch zur Entwicklung erneuerbarer dezentraler Energiesysteme
Mennel, S., Sulzer, M., Yilmaz, S., Patel, M., Chambers, J., Knoeri, C., … Sulzer Worlitschek, S. (2021). Handbuch zur Entwicklung erneuerbarer dezentraler Energiesysteme. SCCER FEEB&D; Hochschule Luzern.
Wegweiser aus dem Energie-Trilemma
Sulzer, M., Orehounig, K., & Bollinger, A. (2021). Wegweiser aus dem Energie-Trilemma. Bulletin SEV/VSE, Fachzeitschrift und Verbandsinformationen von Electrosuisse und VSE, 112(3), 2-6.
A machine learning-based surrogate model to approximate optimal building retrofit solutions
Thrampoulidis, E., Mavromatidis, G., Lucchi, A., & Orehounig, K. (2021). A machine learning-based surrogate model to approximate optimal building retrofit solutions. Applied Energy, 281, 116024 (20 pp.). https://doi.org/10.1016/j.apenergy.2020.116024
Electricity demand flexibility potential of optimal building retrofit solutions
Thrampoulidis, E., Orehounig, K., & Hug, G. (2021). Electricity demand flexibility potential of optimal building retrofit solutions. In J. L. Scartezzini, B. Smith, & D. Lindelof (Eds.), Journal of physics: conference series: Vol. 2042. CISBAT 2021 carbon neutral cities - energy efficiency & renewables in the digital era (p. 012149 (6 pp.). https://doi.org/10.1088/1742-6596/2042/1/012149
Advancing the thermal network representation for the optimal design of distributed multi-energy systems
Wang, D., Li, X., Marquant, J., Carmeliet, J., & Orehounig, K. (2021). Advancing the thermal network representation for the optimal design of distributed multi-energy systems. Frontiers in Energy Research, 9, 668124 (23 pp.). https://doi.org/10.3389/fenrg.2021.668124
Design and assessment of district heating systems with solar thermal prosumers and thermal storage
Wang, D., Carmeliet, J., & Orehounig, K. (2021). Design and assessment of district heating systems with solar thermal prosumers and thermal storage. Energies, 14(4), 1184 (27 pp.). https://doi.org/10.3390/en14041184
Advancing urban energy system planning and modeling approaches: gaps and solutions in perspective
Yazdanie, M., & Orehounig, K. (2021). Advancing urban energy system planning and modeling approaches: gaps and solutions in perspective. Renewable and Sustainable Energy Reviews, 137, 110607 (16 pp.). https://doi.org/10.1016/j.rser.2020.110607
Sustainable urban densification potentials: a geospatial analysis of Swiss post-war neighbourhoods
Eggimann, S., Wagner, M., Chen, T., Ho, Y., Schneider, U., & Orehounig, K. (2020). Sustainable urban densification potentials: a geospatial analysis of Swiss post-war neighbourhoods. In H. Wallbaum, A. Hollberg, L. Thuvander, P. Femenias, I. Kurkowska, K. Mjornell, & C. Fudge (Eds.), IOP conference series: earth and environmental science: Vol. 588. World sustainable built environment (p. 022040 (8 pp.). https://doi.org/10.1088/1755-1315/588/2/022040
Improving energy sustainability of suburban areas by using distributed energy systems: a case study
Muriel, B., Perera, A. T. D., Hanmin, C., Bollinger, A., & Orehounig, K. (2020). Improving energy sustainability of suburban areas by using distributed energy systems: a case study. In Proceedings: Vol. 58. The first world energies forum - current and future energy issues (p. 7 (7 pp.). https://doi.org/10.3390/WEF-06918
Multi-objective optimisation of power-to-mobility in decentralised multi-energy systems
Murray, P., Carmeliet, J., & Orehounig, K. (2020). Multi-objective optimisation of power-to-mobility in decentralised multi-energy systems. Energy, 205, 117792 (15 pp.). https://doi.org/10.1016/j.energy.2020.117792
Optimal transformation strategies for buildings, neighbourhoods and districts to reach CO<sub>2</sub> emission reduction targets
Murray, P., Marquant, J., Niffeler, M., Mavromatidis, G., & Orehounig, K. (2020). Optimal transformation strategies for buildings, neighbourhoods and districts to reach CO2 emission reduction targets. Energy and Buildings, 207, 109569 (34 pp.). https://doi.org/10.1016/j.enbuild.2019.109569
Concept for next generation of technical energy regulations in buildings
Sulzer, M., Orehounig, K., Knoeri, C., & Niffeler, M. (2020). Concept for next generation of technical energy regulations in buildings. In H. Wallbaum, A. Hollberg, L. Thuvander, P. Femenias, I. Kurkowska, K. Mjornell, & C. Fudge (Eds.), IOP conference series: earth and environmental science: Vol. 588. World sustainable built environment (p. 022022 (8 pp.). https://doi.org/10.1088/1755-1315/588/2/022022
Komplexität ist die neue Einfachheit. Wie Sektorenkopplung und Netzkonvergenz zu eleganten Lösungen führen
Sulzer, M., Orehounig, K., & Bollinger, A. (2020). Komplexität ist die neue Einfachheit. Wie Sektorenkopplung und Netzkonvergenz zu eleganten Lösungen führen. Aqua & Gas, 100(9), 23-28.
 

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