Abstract
AbstractWith the expanding urban areas and increasing elderly population in Japan, anthropogenic heat poses substantial threat to human health. Air conditioning systems contribute to the anthropogenic heat from buildings. However, information regarding the heat characteristics of these systems is inadequate. In the present study, we developed a method for estimating anthropogenic heat from air conditioning, which accounts for most of the artificial heat from buildings during summer, to include artificial anthropogenic heat from surrounding buildings in the local heat risk assessment. The estimation results for commercial areas in Japan using the developed method showed that latent heat from air conditioning is substantially higher than sensible heat, and there was a difference in heat emissions between daytime and nighttime and between weekdays and holidays. A comparison of the calculation results of our method and those of previous studies showed no major differences in the orders of magnitude. With regard to the change in the amount of air-conditioning anthropogenic heat in the region, a directly proportional relationship was found between the outdoor temperature and the amount of air-conditioning anthropogenic heat. These results are useful for assessing the summer heat risk in urban areas and developing methods to mitigate the risks posed by urban heat.
Funder
Environmental Restoration and Conservation Agency
Publisher
Springer Science and Business Media LLC
Reference35 articles.
1. Agency for Natural Resources and Energy (2020) General Energy Statistics. https://www.enecho.meti.go.jp/statistics/total_energy/results.html. Accessed 15 Dec 2022
2. Ashie Y (2016) Simulation software for evaluating thermal environment measures in cities with simple operation. 4th International Conference on Countermeasures to Urban Heat Island (UHI 2016), Singapore.
3. Ashie Y, Li H, Yoon S (2004) Analysis of exhaustion characteristics of anthropogenic exhaustion heat considering the differences of sensible and latent heat in Tokyo 23 wards. Trans Soc Heat Air-conditioning Sanit Eng Jpn 29:121–130. https://doi.org/10.18948/shase.29.92_121
4. Ashie Y, Tanaka M, Yamamoto T (1999) Anthropogenic heat characteristics of air conditioning systems of office buildings. Trans Soc Heat Air-conditioning Sanit Eng Jpn 24:89–97. https://doi.org/10.18948/shase.24.75_89
5. Baccini M, Biggeri A, Accetta G, Kosatsky T, Katsouyanni K, Analitis A et al (2008) Heat effects on mortality in 15 European cities. Epidemiology 19:711–719. http://www.jstor.org/stable/25662618. Accessed 15 Dec 2022
Cited by
1 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献