References
- 1Anderson, M., Carmichael, C., Murray, V., Dengel, A., & Swainson, M. (2013). Defining indoor heat thresholds for health in the UK. Perspectives in Public Health, 133(3), 158–164. DOI: 10.1177/1757913912453411
- 2Baborska-Narożny, M., Stevenson, F., & Grudzińska, M. (2016). Overheating in retrofitted flats: occupant practices, learning and interventions. Building Research & Information, 45(1–2), 40–59. DOI: 10.1080/09613218.2016.1226671
- 3Baldin, M.-L., & Sinning, H. (2019a). Ergebnisbericht zur Befragung 2018 in Dresden. Erfurt. Retrieved from
http://heatresilientcity.de/ergebnisse/ - 4Baldin, M.-L., & Sinning, H. (2019b). Ergebnisbericht zur Befragung 2018 in Erfurt. Erfurt. Retrieved from
http://heatresilientcity.de/ergebnisse/ - 5Basu, R., & Samet, J. M. (2002). An exposure assessment study of ambient heat exposure in an elderly population in Baltimore, Maryland. Environmental Health Perspectives, 110, 1219–1224. DOI: 10.1289/ehp.021101219
- 6Bouchama, A., Dehbi, M., Mohamed, G., Matthies, F., Shoukri, M., & Menne, B. (2007). Prognostic factors in heat wave–related deaths: a meta-analysis. JAMA Internal Medicine, 167(20), 2170–2176. DOI: 10.1001/archinte.167.20.ira70009
- 7BRD. (2013).
Energieeinsparverordnung 2014 . In Bundesgesetzblatt Jahrgang 2013. Bonn: BRD. - 8Brotas, L., & Nicol, F. (2017). Estimating overheating in European dwellings. Architectural Science Review, 60(3), 180–191. DOI: 10.1080/00038628.2017.1300762
- 9Chen, D. (2019). Overheating in residential buildings: challenges and opportunities. Indoor and Built Environment, 28(10), 1303–1306. DOI: 10.1177/1420326X19871717
- 10Destatis. (2018). Bautätigkeit und Wohnungen—Bestand an Wohnungen. Wiesbaden: Destatis.
- 11DIN. (2012). DIN EN 15251-2012: Indoor environmental input parameters for design and assessment of energy performance of buildings addressing indoor air quality, thermal environment, lighting and acoustics. Berlin: German Institute for Standardization.
- 12DIN. (2013).
DIN4108-2 Wärmeschutz und Energie-Einsparung . In Gebäuden Teil 2: Mindestanforderungen an den Wärmeschutz. Berlin: German Institute for Standardization. - 13DWD. (2017). Ortsgenaue Testreferenzjahre von Deutschland für mittlere, extreme und zukünftige Witterungsverhältnisse. Offenbach: DWD.
- 14EQUA. (2018). IDA Indoor Climate and Energy 4.8 SP1. Stockholm: EQUA Simulation AB.
- 15Ezratty, V., & Ormandy, D. (2015). Thermal discomfort and health: protect the susceptible (part 2). Environnement, Risques & Santé, 14, 221–229. DOI: 10.1684/ers.2015.0785
- 16Fabi, V., Andersen, R. V., Corgnati, S., & Olesen, B. W. (2012). Occupants’ window opening behaviour: a literature review of factors influencing occupant behaviour and models. Building and Environment, 58, 188–198. DOI: 10.1016/j.buildenv.2012.07.009
- 17Fosas, D., Coley, D. A., Natarajan, S., Herrera, M., Fosas de Pando, M., & Ramallo-Gonzalez, A. (2018). Mitigation versus adaptation: does insulating dwellings increase overheating risk? Building and Environment, 143, 740–759. DOI: 10.1016/j.buildenv.2018.07.033
- 18Founda, D., Pierros, F., Katavoutas, G., & Keramitsoglou, I. (2019). Observed trends in thermal stress at European cities with different background climates. Atmosphere, 10(8). DOI: 10.3390/atmos10080436
- 19Hajat, S., Kovats, R. S., & Lachowycz, K. (2007). Heat-related and cold-related deaths in England and Wales: who is at risk? Occupational and Environmental Medicine, 64(2), 93–100. DOI: 10.1136/oem.2006.029017
- 20Hamdy, M., Carlucci, S., Hoes, P.-J., & Hensen, J. L. M. (2016). The impact of climate change on the overheating risk in dwellings—a Dutch case study. Building and Environment, 122, 307–323. DOI: 10.1016/j.buildenv.2017.06.031
- 21Harvey, D. (1973). Social justice & the city. London: Edward Arnold.
- 22Head, K., Clarke, M., Bailey, M., Livinski, A., Ludolph, R., & Singh, A. (2018). Report of the systematic review on the effect of indoor heat on health (WHO Housing and Health Guidelines—Web Annex D). Geneva: WHO. Retrieved from
https://www.ncbi.nlm.nih.gov/books/NBK535282/ - 23Heindl, P. (2015). Measuring fuel poverty: general considerations and application to German household data. FinanzArchiv: Public Finance Analysis, 71, 178–215. DOI: 10.1628/001522115X14285723527593
- 24Hodzic, N., Pont, U., Tahmasebi, F., & Mahdavi, A. (2019). Overheating mitigation in buildings: a computational exploration of the potential of phase change materials. MATEC Web of Conferences, 282. DOI: 10.1051/matecconf/201928202028
- 25Hughes, S. (2013). Justice in urban climate change adaptation: criteria and application to Delhi. Ecology and Society, 18(4). DOI: 10.5751/ES-05929-180448
- 26IPCC. (2014). IPCC-Report AR5 Climate Change 2014: Impacts, adaptation, and vulnerability—Part B Regional Aspects. Geneva: Intergovernmental Panel on Climate Change.
- 27Jenkins, D. P., Patidar, S., Banfill, P., & Gibson, G. (2014). Developing a probabilistic tool for assessing the risk of overheating in buildings for future climates. Renewable Energy, 61, 7–11. DOI: 10.1016/j.renene.2012.04.035
- 28Ji, Y., Lee, A., & Fernando, T. (2019). Dynamic thermal simulation of advanced natural ventilation in buildings: current and future usage, UK exemplar. Architectural Engineering and Design Management, 1, 1–18. DOI: 10.1080/17452007.2019.1693334
- 29Landeshauptstadt Dresden. (2019). Wohnberechtigte Bevölkerung nach Blöcken (Stand: 30.06.2018). Dresden: Melderegister der Landeshauptstadt Dresden, Kommunale Statistikstelle.
- 30Landeshauptstadt Erfurt. (2020). Einwohnermelderegister der Landeshauptstadt Erfurt, Einwohner mit Hauptwohnsitz (Stand: 30.06.2019). Erfurt: Landeshauptstadt Erfurt, Abt. Statistik und Wahlen.
- 31Lomas, K. J., & Porritt, S. M. (2016). Overheating in buildings: lessons from research. Building Research & Information, 45(1–2), 1–18. DOI: 10.1080/09613218.2017.1256136
- 32Mavrogianni, A., Davies, M., Taylor, J., Chalabi, Z., Biddulph, P., Oikonomou, E., … Jones, B. (2014). The impact of occupancy patterns, occupant-controlled ventilation and shading on indoor overheating risk in domestic environments. Building and Environment, 78, 183–198. DOI: 10.1016/j.buildenv.2014.04.008
- 33Mavrogianni, A., Pathan, A., Oikonomou, E., Biddulph, P., Symonds, P., & Davies, M. (2016). Inhabitant actions and summer overheating risk in London dwellings. Building Research & Information, 45(1–2), 119–142. DOI: 10.1080/09613218.2016.1208431
- 34Mavrogianni, A., Taylor, J., Davies, M., Thoua, C., & Kolm-Murray, J. (2015). Urban social housing resilience to excess summer heat. Building Research & Information, 43(3), 316–333. DOI: 10.1080/09613218.2015.991515
- 35Mavrogianni, A., Wilkinson, P., Davies, M., Biddulph, P., & Oikonomou, E. (2012). Building characteristics as determinants of propensity to high indoor summer temperatures in London dwellings. Building and Environment, 55, 117–130. DOI: 10.1016/j.buildenv.2011.12.003
- 36Morgan, C., Foster, J. A., Poston, A., & Sharpe, T. R. (2016). Overheating in Scotland: contributing factors in occupied homes. Building Research & Information, 45(1–2), 143–156. DOI: 10.1080/09613218.2017.1241472
- 37Mulville, M., & Stravoravdis, S. (2016). The impact of regulations on overheating risk in dwellings. Building Research & Information, 44(5–6), 520–534. DOI: 10.1080/09613218.2016.1153355
- 38Oke, T. R. (1988). Boundary layer climates (Second edition). Quarterly Journal of the Royal Meteorological Society, 114(484), 1568–1568. DOI: 10.1002/qj.49711448412
- 39Ortlepp, R., Gruhler, K., & Schiller, G. (2016). Materials in Germany’s domestic building stock: calculation model and uncertainties. Building Research & Information, 46(2), 164–178. DOI: 10.1080/09613218.2016.1264121
- 40Porritt, S. M., Bingunath, I., Keith Jones, D. C., Cropper, P., Shao, L., & Goodier, C. I. (2013). Heat wave adaptations for UK dwellings and development of a retrofit toolkit. International Journal of Disaster Resilience in the Built Environment, 4(3), 269–286. DOI: 10.1108/IJDRBE-08-2012-0026
- 41Porritt, S. M., Cropper, P. C., Shao, L., & Goodier, C. I. (2012). Ranking of interventions to reduce dwelling overheating during heat waves. Energy and Buildings, 55, 16–27. DOI: 10.1016/j.enbuild.2012.01.043
- 42Schinke, R., Neubert, M., Hennersdorf, J., Stodolny, U., Sommer, T., & Naumann, T. (2012). Damage estimation of subterranean building constructions due to groundwater inundation—the GIS-based model approach GRUWAD. Natural Hazards and Earth System Sciences, 12(9), 2865–2877. DOI: 10.5194/nhess-12-2865-2012
- 43Thomson, H., Simcock, N., Bouzarovski, S., & Petrova, S. (2019). Energy poverty and indoor cooling: an overlooked issue in Europe. Energy and Buildings, 196, 21–29. DOI: 10.1016/j.enbuild.2019.05.014
- 44Tink, V., Porritt, S., Allinson, D., & Loveday, D. (2018). Measuring and mitigating overheating risk in solid wall dwellings retrofitted with internal wall insulation. Building and Environment, 141, 247–261. DOI: 10.1016/j.buildenv.2018.05.062
- 45Toulemon, L., & Barbieri, M. (2008). The mortality impact of the August 2003 heat wave in France: investigating the ‘harvesting’ effect and other long-term consequences. Population Studies, 62(1), 39–53. DOI: 10.1080/00324720701804249
- 46UN DESA. (2015). World urbanization prospects: the 2014 revision. New York: United Nations Department of Economic and Social Affairs.
- 47Vandentorren, S., Bretin, P., Zeghnoun, A., Mandereau-Bruno, L., Croisier, A., Cochet, C., … Ledrans, M. (2006). August 2003 heat wave in France: risk factors for death of elderly people living at home. European Journal of Public Health, 16(6), 583–591. DOI: 10.1093/eurpub/ckl063
- 48Van Loenhout, J. A., le Grand, A., Duijm, F., Greven, F., Vink, N. M., Hoek, G., & Zuurbier, M. (2016). The effect of high indoor temperatures on self-perceived health of elderly persons. Environment Research, 146, 27–34. DOI: 10.1016/j.envres.2015.12.012
- 49Vardoulakis, S., Dimitroulopoulou, C., Thornes, J., Lai, K. M., Taylor, J., Myers, I., … Wilkinson, P. (2015). Impact of climate change on the domestic indoor environment and associated health risks in the UK. Environment International, 85, 299–313. DOI: 10.1016/j.envint.2015.09.010
- 50Vellei, M., Ramallo Gonzalez, A., Kaleli, D., Lee, J., & Natarajan, S. (2016). Investigating the overheating risk in refurbished social housing. In Proceedings of the 9th Windsor Conference, Making Comfort Relevant,
2016 .
