marcel

PD Dr. Marcel Schweiker

  • Postanschrift:

    Fachgebiet Bauphysik &
    Technischer Ausbau (fbta)

    Englerstr. 7 / Raum 235
    D-76131 Karlsruhe

Vita

2017 Habilitation Lehrbefugnis für das Fach Bauphysik und Raumklimatik
seit 2014 Kollegiat im WIN-Kolleg der Heidelberger Akademie der Wissenschaften
2012-2014 Förderung als Postdoktorand im Rahmen des Eliteprogramm für Postdocs der Baden-Württemberg Stiftung

seit 2010

Wissenschaftlicher Mitarbeiter am fbta Karlsruhe, Vollzeit

2005 - 2006 und
seit Mai 2010
selbständig im Bereich grafischer und energetische Beratungen (Nebentätigkeit)
2007 - 2010 Promotion an der Tokyo City University, Laboratory for Built Environmental Research, Japan (Abschluss, PhD in Umweltinformationswissenschaften)
Dissertation "Occupant Behaviour and the Related Reference Levels for Heating and Cooling" http://www.lexhic.com/download/
2006 - 2010 MEXT-Forschungsstipendium, Japan
2005 - 2006 freier Mitarbeiter bei KiparLAND, Duisburg
2003 - 2004 Weiterbildungsstudium Energie und Umwelt an der Universität Kassel (Abschluss als zertifizierter Gebäudeenergieberater und Anlagenplaner Erneuerbare Energien)

2000 - 2004

Ergänzungsstudium Technik-, Wirkungs- und Innovationsmanagement an der Universität Kassel (Abschluss Zertifikat Innovationsmanagement)

1998 - 2006 Studium der Architektur an der Universität Kassel (Abschluss Diplom-Ingenieur)              
1978 geboren in Düsseldorf

 

Tätigkeiten und Projekte am fbta   

  • Forschung:
    experimentelle Untersuchungen und Feldmessungen zur sommerlichen thermischen Behaglichkeit
  • Lehre
    Betreuung der Ausarbeitung zur Vorlesung Energie- und Raumklimakonzepte
    Seminar Planungswerkzeuge für energieoptimiertes Bauen

Bisherige Publikationen


Comparison of different thermal comfort models: mosque and church cases
Atmaca, A. B.; Gedik, G. Z.; Wagner, A.; Schweiker, M.
2023. Architectural Science Review, 1–14. doi:10.1080/00038628.2023.2296489
Comfort and Economic Viability of Personal Ceiling Fans Assisted by Night Ventilation in a Renovated Office Building
Knudsen, M.; Rissetto, R.; Carbonare, N.; Wagner, A.; Schweiker, M.
2023. Buildings, 13 (3), Art.-Nr.: 589. doi:10.3390/buildings13030589
Assessing comfort in the workplace: A unified theory of behavioral and thermal expectations
Rissetto, R.; Rambow, R.; Schweiker, M.
2022. Building and Environment, 216, Art.-Nr.: 109015. doi:10.1016/j.buildenv.2022.109015
Personalized ceiling fans: Effects of air motion, air direction and personal control on thermal comfort
Rissetto, R.; Schweiker, M.; Wagner, A.
2021. Energy and buildings, 235, Art.-Nr.: 110721. doi:10.1016/j.enbuild.2021.110721
What drives our behaviors in buildings? A review on occupant interactions with building systems from the lens of behavioral theories
Heydarian, A.; McIlvennie, C.; Arpan, L.; Yousefi, S.; Syndicus, M.; Schweiker, M.; Jazizadeh, F.; Rissetto, R.; Pisello, A. L.; Piselli, C.; Berger, C.; Yan, Z.; Mahdavi, A.
2020. Building and environment, 179, Art. Nr.: 106928. doi:10.1016/j.buildenv.2020.106928
A review of select human-building interfaces and their relationship to human behavior, energy use and occupant comfort
Day, J. K.; McIlvennie, C.; Brackley, C.; Tarantini, M.; Piselli, C.; Hahn, J.; O’Brien, W.; Rajus, V. S.; De Simone, M.; Kjærgaard, M. B.; Pritoni, M.; Schlüter, A.; Peng, Y.; Schweiker, M.; Fajilla, G.; Becchio, C.; Fabi, V.; Spigliantini, G.; Derbas, G.; Pisello, A. L.
2020. Building and environment, 178, Art.-Nr.: 106920. doi:10.1016/j.buildenv.2020.106920
Introducing IEA EBC annex 79: Key challenges and opportunities in the field of occupant-centric building design and operation
O’Brien, W.; Wagner, A.; Schweiker, M.; Mahdavi, A.; Day, J.; Kjærgaard, M. B.; Carlucci, S.; Dong, B.; Tahmasebi, F.; Yan, D.; Hong, T.; Gunay, H. B.; Nagy, Z.; Miller, C.; Berger, C.
2020. Building and environment, 178, Art. Nr.: 106738. doi:10.1016/j.buildenv.2020.106738
The effects of occupants’ expectations on thermal comfort under summer conditions
Rissetto, R.; Schweiker, M.; Wagner, A.
2020. Windsor Conference 2020 - Resilient Comfort. Windsor, London, UK, 252–268
Review of multi‐domain approaches to indoor environmental perception and behaviour
Schweiker, M.; Ampatzi, E.; Andargie, M. S.; Andersen, R. K.; Azar, E.; Barthelmes, V. M.; Berger, C.; Bourikas, L.; Carlucci, S.; Chinazzo, G.; Edappilly, L. P.; Favero, M.; Gauthier, S.; Jamrozik, A.; Kane, M.; Mahdavi, A.; Piselli, C.; Pisello, A. L.; Roetzel, A.; Rysanek, A.; Sharma, K.; Zhang, S.
2020. Building and environment, 176, Article: 106804. doi:10.1016/j.buildenv.2020.106804
Thermal expectation: Influencing factors and its effect on thermal perception
Schweiker, M.; Rissetto, R.; Wagner, A.
2020. Energy and buildings, 210, Article No.109729. doi:10.1016/j.enbuild.2019.109729
Seeing is believing: an innovative approach to post-occupancy evaluation
Day, J. K.; Ruiz, S.; O’Brien, W.; Schweiker, M.
2020. Energy efficiency, 13, 473–486. doi:10.1007/s12053-019-09817-8
Energy conservation opportunities in historic buildings: A methodology focused on building operation and occupants’ engagement
Spigliantini, G.; Fabi, V.; Aghemo, C.; Corgnati, S. P.; Schweiker, M.
2019. 51st International Conference AiCARR - The human dimension of building energy performance: 20-22 February 2019, Venice, Italy
The Scales Project, a cross-national dataset on the interpretation of thermal perception scales
Schweiker, M.; Abdul-Zahra, A.; André, M.; Al-Atrash, F.; Al-Khatri, H.; Alprianti, R. R.; Alsaad, H.; Amin, R.; Ampatzi, E.; Arsano, A. Y.; Azadeh, M.; Azar, E.; Bahareh, B.; Batagarawa, A.; Becker, S.; Buonocore, C.; Cao, B.; Choi, J.-H.; Chun, C.; Daanen, H.; Damiati, S. A.; Daniel, L.; Vecchi, R.; Dhaka, S.; Domínguez-Amarillo, S.; Dudkiewicz, E.; Edappilly, L. P.; Fernández-Agüera, J.; Folkerts, M.; Frijns, A.; Gaona, G.; Garg, V.; Gauthier, S.; Jabbari, S. G.; Harimi, D.; Hellwig, R. T.; Huebner, G. M.; Jin, Q.; Jowkar, M.; Kania, R.; Kim, J.; King, N.; Kingma, B.; Koerniawan, M. D.; Kolarik, J.; Kumar, S.; Kwok, A.; Lamberts, R.; Laska, M.; Lee, M. C. J.; Lee, Y.; Lindermayr, V.; Mahaki, M.; Marcel-Okafor, U.; Marín-Restrepo, L.; Marquardsen, A.; Martellotta, F.; Mathur, J.; McGill, G.; Mino-Rodriguez, I.; Mou, D.; Moujalled, B.; Nakajima, M.; Ng, E.; Okafor, M.; Olweny, M.; Ouyang, W.; Papst de Abreu, A. L.; Pérez-Fargallo, A.; Rajapaksha, I.; Ramos, G.; Rashid, S.; Reinhart, C. F.; Rivera, M. I.; Salmanzadeh, M.; Schakib-Ekbatan, K.; Schiavon, S.; Shooshtarian, S.; Shukuya, M.; Soebarto, V.; Suhendri; Tahsildoost, M.; Tartarini, F.; Teli, D.; Tewari, P.; Thapa, S.; Trebilcock, M.; Trojan, J.; Tukur, R. B.; Voelker, C.; Yam, Y.; Yang, L.; Zapata-Lancaster, G.; Zhai, Y.; Zhu, Y.; Zomorodian, Z. S.
2019. Scientific data, 6 (1), Art.-Nr.: 289. doi:10.1038/s41597-019-0272-6
Long-term monitoring data from a naturally ventilated office building
Schweiker, M.; Kleber, M.; Wagner, A.
2019. Scientific data, 6 (1), Art.-Nr.: 293. doi:10.1038/s41597-019-0283-3
Personal thermal perception models using skin temperatures and HR/HRV Features - comparison of smartwatch and professional measurement devices
Kobiela, F.; Shen, R.; Schweiker, M.; Dürichen, R.
2019. ISWC ’19: Proceedings of the 23rd International Symposium on Wearable Computers, London, United Kingdom, September 09-13, 2019, 96–105, Association for Computing Machinery (ACM). doi:10.1145/3341163.3347737
Modelling drivers of variance and adaptation for the prediction of thermal perception and energy use in zero energy buildings
Schweiker, M.
2019. 10th International Conference IAQVEC 2019: Indoor Air Quality, Ventilation and Energy Conservation in Buildings 5–7 September 2019, Bari, Italy. Ed.: U. Berardi, Article No.042039, Institute of Physics Publishing Ltd (IOP Publishing Ltd). doi:10.1088/1757-899X/609/4/042039
Reliability of an Item Set Assessing Indoor Climate in Offices—Results From Field Studies and Laboratory Research
Schakib-Ekbatan, K.; Lechner, S.; Schweiker, M.
2019. Frontiers in built environment, 5, Article No.117. doi:10.3389/fbuil.2019.00117
A framework for adopting adaptive thermal comfort principles in design and operation of buildings
Hellwig, R. T.; Teli, D.; Schweiker, M.; Choi, J.-H.; Lee, M. C. J.; Mora, R.; Rawal, R.; Wang, Z.; Al-Atrash, F.
2019. Energy and buildings, 205, Article No.109476. doi:10.1016/j.enbuild.2019.109476
Get the picture? Lessons learned from a smartphone-based post-occupancy evaluation
O’Brien, W.; Schweiker, M.; Day, J. K.
2019. Energy research & social science, 56, Art.-Nr.: 101224. doi:10.1016/j.erss.2019.101224
What do people associate with “cold” or “hot”? - Qualitative analyses of the ASHRAE-scales’ labels
Schakib-Ekbatan, K.; Becker, S.; Cannistraro, A.; Schweiker, M.
2018. Proceedings of 10th Windsor Conference "Rethinking Comfort". Ed.: L. Brotas, 371–386, NCEUB
Individuelle Präferenzen bei natürlicher und künstlicher Beleuchtung
Moosmann, C.; Schweiker, M.; Wagner, A.
2018. Licht 2018 Davos. Kreative Beleuchtungslösungen. 23. Europäischer Lichtkongress, Davos, CH, 9.–12. September 2018, Davos
Drivers of diversity in human thermal perception – A review for holistic comfort models
Schweiker, M.; Huebner, G. M.; Kingma, B. R. M.; Kramer, R.; Pallubinsky, H.
2018. Temperature, 5 (4), 308–342. doi:10.1080/23328940.2018.1534490
Experimental Evaluation of Radiant Heating Ceiling Systems Based on Thermal Comfort Criteria
Safizadeh, M. R.; Schweiker, M.; Wagner, A.
2018. Energies, 11 (11), Article: 2932. doi:10.3390/en11112932
Development of the ASHRAE Global Thermal Comfort Database II
Földváry Ličina, V.; Cheung, T.; Zhang, H.; Dear, R. de; Parkinson, T.; Arens, E.; Chun, C.; Schiavon, S.; Luo, M.; Brager, G.; Li, P.; Kaam, S.; Adebamowo, M. A.; Andamon, M. M.; Babich, F.; Bouden, C.; Bukovianska, H.; Candido, C.; Cao, B.; Carlucci, S.; Cheong, D. K. W.; Choi, J.-H.; Cook, M.; Cropper, P.; Deuble, M.; Heidari, S.; Indraganti, M.; Jin, Q.; Kim, H.; Kim, J.; Konis, K.; Singh, M. K.; Kwok, A.; Lamberts, R.; Loveday, D.; Langevin, J.; Manu, S.; Moosmann, C.; Nicol, F.; Ooka, R.; Oseland, N. A.; Pagliano, L.; Petráš, D.; Rawal, R.; Romero, R.; Rijal, H. B.; Sekhar, C.; Schweiker, M.; Tartarini, F.; Tanabe, S.-I.; Tham, K. W.; Teli, D.; Toftum, J.; Toledo, L.; Tsuzuki, K.; De Vecchi, R.; Wagner, A.; Wang, Z.; Wallbaum, H.; Webb, L.; Yang, L.; Zhu, Y.; Zhai, Y.; Zhang, Y.; Zhou, X.
2018. Building and environment, 142, 502–512. doi:10.1016/j.buildenv.2018.06.022
Subgroups holding different conceptions of scales rate room temperatures differently
Fuchs, X.; Becker, S.; Schakib-Ekbatan, K.; Schweiker, M.
2018. Building and environment, 128, 236–247. doi:10.1016/j.buildenv.2017.11.034
comf: Functions for Thermal Comfort Research
Schweiker, M.; Mueller, S.; Kleber, M.; Kingma, B. R. M.; Shukuya, M.
2017
Challenging the assumptions for thermal sensation scales
Schweiker, M.; Fuchs, X.; Becker, S.; Shukuya, M.; Dovjak, M.; Maren Hawighorst; Kolarik, J.
2017. Building research and information, 45 (5), 572–589. doi:10.1080/09613218.2016.1183185
Exploring internal body heat balance to understand thermal sensation
Kingma, B. R. M.; Schweiker, M.; Wagner, A.; Marken Lichtenbelt, W. D. van
2017. Building research and information, 45 (7), 808–818. doi:10.1080/09613218.2017.1299996
Short- and long-term acclimatization in outdoor spaces: Exposure time, seasonal and heatwave adaptation effects
Krüger, E. L.; Tamura, C. A.; Bröde, P.; Schweiker, M.; Wagner, A.
2017. Building and environment, 116, 17–29. doi:10.1016/j.buildenv.2017.02.001
Comfort-related feedforward information: occupants’ choice of cooling strategy and perceived comfort
Meinke, A.; Hawighorst, M.; Wagner, A.; Trojan, J.; Schweiker, M.
2017. Building research and information, 45 (1-2), 222–238. doi:10.1080/09613218.2017.1233774
Warum ist das Licht noch an? Erfassen und Verstehen von Nutzerverhalten im Hinblick auf Planung und Betrieb von Gebäuden
Wagner, A.; Schweiker, M.; Hawighorst, M.
2016. Licht 2016 Workshops, Karlsruhe, Germany, 29. September 2016
Diversity in Thermal Sensation: drivers of variance and methodological artefacts
Shipworth, D.; Huebner, G.; Schweiker, M.; Kingma, B.
2016. Proceedings of 9th Windsor Conference: Making comfort relevant, Windsor, UK, 7-10 April 2016. Ed.: L. Brotas, 56–72, NCEUB
Exploring the potential of a biophysical model to understand thermal sensation
Kingma, B.; Schweiker, M.; Wagner, A.; Marken Lichtenbelt, W. D. van
2016. Proceedings of 9th Windsor Conference: Making comfort relevant, Windsor, UK, 7-10 April 2016. Ed.: L. Brotas, 88–89, NCEUB
Exploring potentials and limitations of the adaptive thermal heat balance framework
Schweiker, M.; Wagner, A.
2016. Proceedings of 9th Windsor Conference: Making comfort relevant, Windsor, UK, 7-10 April 2016. Ed.: L. Brotas, 108–121, NCEUB
Comf: An R package for thermal comfort studies
Schweiker, M.
2016. R Journal, 8 (2), 341–351
Influences on the predictive performance of thermal sensation indices
Schweiker, M.; Wagner, A.
2016. Building research and information, 121, 745–758. doi:10.1080/09613218.2017.1256673
The influence of personality traits on occupant behavioural patterns
Schweiker, M.; Hawighorst, M.; Wagner, A.
2016. Energy and buildings, 131, 63–75. doi:10.1016/j.enbuild.2016.09.019
Thermo-specific self-efficacy (specSE) in relation to perceived comfort and control
Hawighorst, M.; Schweiker, M.; Wagner, A.
2016. Building and Environment, 102, 193–206. doi:10.1016/j.buildenv.2016.03.014
Occupancy and its effect on set point requirements and behavioral
Schweiker, M.
2015. 1st Expert meeting of IEA EBC Annex 66, Berkeley, USA, March 30 - April 1 2015
Design of a Human Subject Experiment : A possible pathway
Schweiker, M.
2015. Student workshop at Healthy Building 2015, Eindhoven, Netherlands, May 2015
The adaptive heat balance model
Schweiker, M.
2015. Open Forum at IEA EBC Annex 69 Meeting, Peking, China, October 2015
Experimentelle Studien zur Adaption : Einflussfaktoren auf den thermischen Komfort und das Nutzerverhalten
Schweiker, M.
2015. Workshop Nutzerverhaltensmodelle, RWTH Aachen, Deutschland, Oktober 2015
Revisiting validation methods of occupant behaviour models
Wolf, S.; Schweiker, M.; Wagner, A.; Treeck, C. van
2015. Healthy Buildings Europe, Eindhoven, The Netherlands, 18-20 May 2015. Hrsg.: M. Loomans, 98, International Society of Indoor Air Quality and Climate (ISIAQ)
On the effect of the number of persons in one office room on occupants physiological and subjective responses under summer conditions
Schweiker, M.; Wagner, A.
2015. Healthy Buildings Europe, Eindhoven, The Netherlands, 18-20 May 2015. Hrsg.: M. Loomans, 109, International Society of Indoor Air Quality and Climate (ISIAQ)
The Psychology of Thermal Comfort: Influences of Thermo-specific Self-Efficacy and Climate Sensitiveness
Hawighorst, M.; Schweiker, M.; Wagner, A.
2015. Healthy Buildings Europe, Eindhoven, The Netherlands, 18-20 May 2015. Hrsg.: M. Loomans, 97–98, International Society of Indoor Air Quality and Climate (ISIAQ)
Nutzerzufriedenheit in Bürogebäuden – Empfehlungen für Planung und Betrieb
Wagner, A.; Höfker, G.; Lützkendorf, T.; Moosmann, C.; Schakib-Ekbatan, K.; Schweiker, M.
2015. Fraunhofer IRB Verlag
Does the occupant behavior match the energy concept of the building? - Analysis of a German naturally ventilated office building
Schakib-Ekbatan, K.; Cakici, F. Z.; Schweiker, M.; Wagner, A.
2015. Building and environment, 84, 142–150. doi:10.1016/j.buildenv.2014.10.018
A framework for an adaptive thermal heat balance model (ATHB)
Schweiker, M.; Wagner, A.
2015. Building and environment, 94 (P1), 252–262. doi:10.1016/j.buildenv.2015.08.018
Control opportunities for occupants - a key to energy efficiency
Schweiker, M.; Wagner, A.
2015. Energy, Science and Technology, Conference and Exhibition (EST 2015), Karlsruhe, Deutschland, 20.–22. Mai 2015
Presenting LOBSTER, an innovative climate chamber, and the analysis of the effect of a ceiling fan on the thermal sensation and performance under summer conditions in an office-like setting
Schweiker, M.; Brasche, S.; Hawighorst, M.; Bischof, W.; Wagner, A.
2014. Proceedings of 8th Windsor Conference: Counting the Cost of Comfort in a changing world Cumberland Lodge, Windsor, UK, 10-13 April 2014, 924 – 937, NCEUB
Seasonal differences in human responses to increasing temperatures
Kitazawa, S.; Andersen, R. K.; Wargocki, P.; Kolarik, J.; Schweiker, M.
2014. Indoor Air 2014 - 13th International Conference on Indoor Air Quality and Climate, Hong Kong, 7.-12. July 2014, 231–238, ISIAQ
Investigation of ceiling fans for improving summer thermal comfort
Voss, K.; Voß, T.; Otto, J.; Schweiker, M.; Rodriguez-Ubinas, E.
2013. Contributions to building physics : proceedings of the 2nd Central European Symposium on Building Physics, Vienna, Austria, 9-11 September 2013. Ed.: A. Mahdavi, 381–387, CESBP
A New Approach of Understanding the Psychology of Thermal Comfort: Combined Analyses of Physiological, Behavioural and Psychological Aspects
Hawighorst, M.; Schweiker, M.; Wagner, A.
2013. 11th REHVA world congress Clima 2013 - Energy efficient, smart and healthy buildings, Prague, Czech Republic, 16.-19. Juni 2013
Explaining the individual processes leading to adaptive comfort: Exploring physiological, behavioural and psychological reactions to thermal stimuli
Schweiker, M.; Brasche, S.; Bischof, W.; Hawighorst, M.; Wagner, A.
2013. Journal of building physics, 36 (4), 438–463. doi:10.1177/1744259112473945
Einfluss des Nutzerkomforts und -verhaltens auf den Energieverbrauch an Büroarbeitsplätzen im Sommer
Schweiker, M.; Wagner, A.
2013. Chancen der Energiewende : wissenschaftliche Beiträge des KIT zur 1. Jahrestagung des KIT-Zentrums Energie, 19.06.2012. Hrsg.: W. Breh, 237–242, KIT Scientific Publishing
Adaptive comfort from the viewpoint of human body exergy consumption
Schweiker, M.; Shukuya, M.
2012. Building and Environment, 51, 351–360. doi:10.1016/j.buildenv.2011.11.012
Development and validation of a methodology to challenge the adaptive comfort model
Schweiker, M.; Brasche, S.; Bischof, W.; Hawighorst, M.; Voss, K.; Wagner, A.
2012. Building and Environment, 49, 336–347. doi:10.1016/j.buildenv.2011.08.002
Verification of stochastic models of window opening behaviour for residential buildings
Schweiker, M.; Haldi, F.; Shukuya, M.; Robinson, D.
2012. Journal of building performance simulation, 5 (1), 55–74. doi:10.1080/19401493.2011.567422
Analysis of human interactions together with human-body exergy consumption rate
Schweiker, M.; Shukuya, M.; Wagner, A.
2012. Proceedings of 7th Windsor Conference: The changing context of comfort in an unpredictable world, Cumberland Lodge, Windsor, UK, 12-15 April 2012, Network for Comfort and Energy Use in Buildings
Is there a method for understanding human reactions to climatic changes? - Developing experimental designs for climate chambers and field measurements to reveal further insights to adaptive processes
Schweiker, M.; Brasche, S.; Bischof, W.; Wagner, A.
2012. Proceedings of 7th Windsor Conference: The changing context of comfort in an unpredictable world, Cumberland Lodge, Windsor, UK, 12-15 April 2012, Network for Comfort and Energy Use in Buildings
Thermal Comfort in Naturally Ventilated Offices: Combined Analysis of Psychological and Physiological Aspects with Regard to Control
Hawighorst, M.; Schweiker, M.; Wagner, A.
2012. Proceedings of the 5th International Building Physics Conference (IBPC): The Role of Building Physics in Resolving Carbon Reduction Challenge and Promoting Human Health in Buildings, Kyoto, Japan, May 28-31, 2012, 1019–1025
Explaining the individual processes leading to adaptive comfort - exploring behavioural and physiological reactions to thermal stimuli
Schweiker, M.; Brasche, S.; Bischof, W.; Wagner, A.
2012. Proceedings of the 5th International Building Physics Conference (IBPC): The Role of Building Physics in Resolving Carbon Reduction Challenge and Promoting Human Health in Buildings, Kyoto, Japan, May 28-31, 2012, 1047–1054
Soll man dem Nutzer weiterhin erlauben, mit seiner thermischen Umgebung zu interagieren?
Schweiker, M.; Wagner, A.
2012. 2. Tagung Nutzerorientierte Bausanierung ; [Tagung ... 17. - 18. Oktober 2012 an der Bauhaus-Universität Weimar ; eine Veranstaltung im Rahmen des Forschungsprojektes "Methoden und Baustoffe zur nutzerorientierten Bausanierung"]. Hrsg.: C. Völker, 71–75, Verl. der Bauhaus-Univ