Heinrich, Michael (2022)
Architecture by Fraunhofer, Fraunhofer Netzwerk Wissenschaft, Kunst und Design.
Phillips, Mark (2022)
Prüfung hoch drei. Didaktik. Technik. Vernetzung 2022.
Heinrich, Michael (2022)
VHS Coburg.
Donhauser, A.; Phillips, Mark ; Vogt , Jennifer (2022)
Das menschliche Büro- The human(e) office 2022, 77-95.
DOI: 10.1007/978-3-658-33519-9_4
Polo López, Cristina; Khjoa, Ahmed; Curto, Ivan; Haas, Franziska; Exner, Dagmar; Troi, Alexandra (2022)
Polo López, Cristina; Khjoa, Ahmed; Curto, Ivan; Haas, Franziska; Exner, Dagmar...
Proceedings of EuroSun 2022 - ISES and IEA SHC International Conference on Solar Energy for Buildings and Industry, 1–12.
DOI: 10.18086/eurosun.2022.02.07
Phillips, Mark (2021)
av edition, 2022.
Bottino-Leone, Dario; Larcher, Marco; Troi, Alexandra; Grunewald, John (2021)
Renewable and Sustainable Energy Reviews 152.
DOI: 10.1016/j.rser.2021.111688
Phillips, Mark ; Donhauser, A. (2021)
Zukunftsdesign - Ein Studiengang der Regionalentwicklung , 230-239.
Phillips, Mark ; Donhauser, A. (2021)
AIT 10-21, 128-131.
Ammer, Valentin ; Troi, Alexandra (2021)
IOP Conference Series: Earth and Environmental Science 863, 012051.
DOI: 10.1088/1755-1315/863/1/012051
Troi, Alexandra; Dagmar , Exner; Haas, Franziska (2021)
IOP Conference Series: Earth and Environmental Science 863, 012032.
DOI: 10.1088/1755-1315/863/1/012032
Haas, Franziska; Dagmar , Exner; Herrera-Avellanosa, Daniel; Hüttler, Walter; Troi, Alexandra (2021)
Haas, Franziska; Dagmar , Exner; Herrera-Avellanosa, Daniel; Hüttler, Walter...
IOP Conference Series: Earth and Environmental Science 863, 012017.
DOI: 10.1088/1755-1315/863/1/012017
Panico, Simone; Larcher, Marco; Troi, Alexandra; Codreanu, Isabella; Baglivo, Cristina; Congedo, Maria Paolo (2021)
Panico, Simone; Larcher, Marco; Troi, Alexandra; Codreanu, Isabella; Baglivo, Cristina...
IOP Conference Series: Earth and Environmental Science 2021, 012053.
DOI: 10.1088/1755-1315/863/1/012053
Larcher, Marco; Leonardi, E.; Troi, Alexandra (2021)
IOP Conference Series: Earth and Environmental Science 863, 012055.
DOI: 10.1088/1755-1315/863/1/012055
Herrera, Daniel; Haas, Franziska; Troi, Alexandra; Leijonhufvud, Gustaf; Broström, Tor; Rieser, Alexander; Rose, Jørgen; Hüttler, Walter; Kuchar, Susanne (2021)
Herrera, Daniel; Haas, Franziska; Troi, Alexandra; Leijonhufvud, Gustaf; Broström, Tor...
One of the main targets of SHC Task 59 is to provide a solid knowledge base on deep renovation of historic buildings. The Historic Building Energy Retrofit Atlas (HiBERatlas, www.hiberatlas.com) provides a bestpractice database of exemplary energy efficient interventions in historic buildings. The database presents bestpractice examples of how a historic building can be renovated to achieve high levels of energy efficiency while respecting and protecting its heritage significance.
Leijonhufvud, Gustaf; Broström, Tor; Buda, Alessia; Herrera, Daniel; Haas, Franziska; Troi, Alexandra; Exner, Dagmar; Mauri, Sara; Jan De Place Hansen, Ernst; Marincioni, Valentina; Vernimme, Nathalie (2021)
Leijonhufvud, Gustaf; Broström, Tor; Buda, Alessia; Herrera, Daniel; Haas, Franziska...
This handbook follows the systematic approach outlined by the European standard EN 16883:2017 Guidelines for improving the energy performance of historic buildings. It describes how the standard can be applied in practice with chapters on heritage value assessment, building survey and holistic assessment of energy efficiency measures. The book draws on the experience from a team of international leading experts in the field of energy efficiency in historic building.
Pfluger, Rainer; Rieser, Alexander; Leonardi, Eleonora; Engelund Thomsen, Kirsten; Rose, Jorgen; Polo, Cristina; Hatt, Tobias; Sevela, Pavel; Dinkel, Arnulf; Gökcen, Gülden; Dursum Arsan, Zeynep (2021)
Pfluger, Rainer; Rieser, Alexander; Leonardi, Eleonora; Engelund Thomsen, Kirsten...
Historic building restoration and renovation requires sensitivity to the cultural heritage, historic value, and sustainability (i.e., building physics, energy efficiency, and comfort) goals of the project. Heat recovery ventilation can contribute to the mentioned goals if ventilation concepts, and airflow distribution is planned and realized in a minimally invasive way. Compared to new buildings, the building physics of historic buildings are more complicated in terms of hygrothermal performance. In particular if internal insulation is applied, the need for dehumidification is needed for robust and risk-free future use, while maintaining the building’s cultural value. As each ventilation system has to be chosen and adapted individually to the specific building, the selection of the appropriate system type is not an easy task.
Hao, Lingjun; Herrera-Avellanosa, Daniel; Del Pero, Claudio; Troi, Alexandra (2021)
Sustainability 2020, 12(18), 7557.
DOI: 10.3390/su12187557
Hess, Mona ; Schlieder, Christoph ; Schnier, V.; Troi, Alexandra (2021)
IOP Conference Series: Earth and Environmental Science 863, 012035.
DOI: 10.1088/1755-1315/863/1/012035
Rieser, Alexander; Pfluger, Rainer; Troi, Alexandra; Herrera-Avellanosa, Daniel; Engel und Thomsen, Kirsten; Rose, Jorgen; Arsan, Zeynep Durmus; Akkurt, Gulden Gokcen; Kopeinig, Gerhard; Guyot, Gaelle; Chung, Daniel (2021)
Rieser, Alexander; Pfluger, Rainer; Troi, Alexandra; Herrera-Avellanosa, Daniel...
Sustainability, 13(4), 2325. MDPI AG 2021.
DOI: 10.3390/su13042325
Hochschule Coburg
Am Hofbräuhaus 1
96450 Coburg