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Thermal Modeling of a Historical Building Wall: Using Long-Term Monitoring Data to Understand the Reliability and the Robustness of Numerical Simulations

Panico, Simone; Larcher, Marco; Troi, Alexandra; Baglivo, Cristina...

Buildings, 12(8), 1258. MDPI AG 2022.
DOI: 10.3390/buildings12081258


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„Atmosphäre“ als Konzept einer metadisziplinären Ästhetik: Ihre Funktion und ihre Steuerung in der Gestaltung von Architektur und Raum

Heinrich, Michael (2022)

Architektur, Atmosphäre, Wahrnehmung, Springer-Verlag 2022, 347-392.


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Overheating Risks and Adaptation Strategies of Energy Retrofitted Historic Buildings under the Impact of Climate Change: Case Studies in Alpine Region

Hao, Lingjun; Herrera-Avellanosa, Daniel; Del Pero, Claudio; Troi, Alexandra (2022)

Applied Science, 2022 (12), 14, 7162 2022 (14), 7162.
DOI: 10.3390/app12147162


Open Access Peer Reviewed
 

Energy retrofits can enhance the liveability and efficiency of historic buildings while preserving their historic and aesthetic values. However, measures like improved insulation and airtightness may increase their vulnerability to overheating and climate change may further worsen their performance in the future. This paper investigates indoor overheating risks brought by climate change in retrofitted historic buildings and proposes effective adaptation strategies. Firstly, local weather conditions are analysed to identify homogenous climatic zones. For each climatic zone, “a business-as-usual” emissions scenario is adopted, and most representative regional climate models are selected to obtain hourly output of future climate projection. A comparative study is adopted where typical alpine residential buildings, “Portici house”, are simulated with regard to future energy use and indoor thermal state using the dynamic model in EnergyPlus. Energy use and indoor thermal conditions are compared before and after energy retrofit, as well as under present and future climate conditions. The results demonstrate that retrofit interventions could significantly improve energy efficiency of historic buildings in both present and future scenarios. A change in climate together with retrofit interventions will, however, result in higher risk of indoor overheating in South Tyrol. Potential negative side effects of energy retrofit could be controlled by adopting adequate shading and ventilation approaches that minimise, or eliminate, the risk of overheating during high temperature periods while optimising historic buildings’ energy performance.

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Wahrnehmung von Forschungsbauten

Heinrich, Michael (2022)

Impulsvortrag und Diskussion, Design im Fokus Fraunhofer-Forschung, Fraunhofer Forum, Berlin.



Wandelgestalten – Musik und Raum

Heinrich, Michael (2022)

Verwandlungen – eine philosophische Begegnung von Musik und Philosophie. Oberseminar, Lehrstuhl Philosopie II, Universität Bamberg. 2022.



The Making of a Meaningful World: Neurocognitive Informed Models of Aesthetic Experience

Heinrich, Michael (2022)

Virtual Digital Capabilities & Global Ethics Internship: Resilience & Leadership for the Future. Georgetown University, Washington/ Hochschule Coburg. 2022.



Schön, schöner, gesund

Heinrich, Michael; Christian, Illies (2022)

Wissen über Gesundheit. uni.vers Forschung: Das Magazin der Otto-Friedrich-Universität Bamberg 2022.



Forschungsbauten und deren Wahrnehmung

Heinrich, Michael (2022)

Architecture by Fraunhofer, Fraunhofer Netzwerk Wissenschaft, Kunst und Design.



Storytelling als Prüfung – Mit Emotionen Wissen schaffen

Phillips, Mark (2022)

Prüfung hoch drei. Didaktik. Technik. Vernetzung 2022.


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Healing Architecture: Wenn die Umgebung heilend auf den Körper und Seele wirken kann

Heinrich, Michael (2022)

VHS Coburg.



New Work im New Office - Der Wandel der Arbeitswelt und dessen Auswirkungen auf den Büroalltag

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


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ATLAS-FeliCity: Supporting Energy Retrofit of the Heritage Building Stock Through a Simplified Digital Twin

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


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New Work - New Office Ein Reader zu neuen Arbeitswelten

Phillips, Mark (2021)

av edition, 2022.


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Impact of climatic parameters on rain protection layer design for refurbished historic buildings

Bottino-Leone, Dario; Larcher, Marco; Troi, Alexandra; Grunewald, John (2021)

Renewable and Sustainable Energy Reviews 152.
DOI: 10.1016/j.rser.2021.111688


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Arbeitsräume: Kreativräume nach dem (Corona-)Homeoffice

Phillips, Mark ; Donhauser, A. (2021)

Zukunftsdesign - Ein Studiengang der Regionalentwicklung , 230-239.


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Der Dritte Ort

Phillips, Mark ; Donhauser, A. (2021)

AIT 10-21, 128-131.


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Consideration of driving rain penetration in hygrothermal simulations of half-timbered walls

Ammer, Valentin ; Troi, Alexandra (2021)

IOP Conference Series: Earth and Environmental Science 863, 012051.
DOI: 10.1088/1755-1315/863/1/012051


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Teaching experience with the Historic Building Energy Retrofit Atlas – HiBERatlas

Troi, Alexandra; Dagmar , Exner; Haas, Franziska (2021)

IOP Conference Series: Earth and Environmental Science 863, 012032.
DOI: 10.1088/1755-1315/863/1/012032


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Making deep renovation of historic buildings happen learnings from the Historic Buildings Energy Retrofit Atlas

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


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Hygrothermal analysis of a wall isolated from the inside: the potential of dynamic hygrothermal simulation

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


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Fakultät Design + Bauen (FDB)

Hochschule Coburg

Am Hofbräuhaus 1
96450 Coburg


Support of publications
Jakob Hanke
Forschungsreferent
T +49 9561 317 360
jakob.hanke[at]hs-coburg.de