Spatiotemporal prediction of increasing winter perceived temperature across a sub-tropical city for sustainable planning and climate change mitigation

© 2019 by the authors. Licensee MDPI, Basel, Switzerland. Climate variability has been documented as being key to influencing human wellbeing across cities as it is linked to mortality and illness due to changes in the perceived weather cycle. Many studies have investigated the impact of summer temp...

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Main Authors: Ho, HC, Abbas, S, Yang, J, Zhu, R, Wong, MS
Format: Article
Language:English
Published: MDPI AG 2021
Online Access:https://hdl.handle.net/1721.1/135149
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author Ho, HC
Abbas, S
Yang, J
Zhu, R
Wong, MS
author_facet Ho, HC
Abbas, S
Yang, J
Zhu, R
Wong, MS
author_sort Ho, HC
collection MIT
description © 2019 by the authors. Licensee MDPI, Basel, Switzerland. Climate variability has been documented as being key to influencing human wellbeing across cities as it is linked to mortality and illness due to changes in the perceived weather cycle. Many studies have investigated the impact of summer temperature on human health and have proposed mitigation strategies for summer heat waves. However, sub-tropical cities are still experiencing winter temperature variations. Increasing winter perceived temperature through the decades may soon affect city wellbeing, due to a larger temperature change between normal winter days and extreme cold events, which may cause higher health risk due to lack of adaptation and self-preparedness. Therefore, winter perceived temperature should also be considered and integrated in urban sustainable planning. This study has integrated the increasing winter perceived temperature as a factor for developing spatiotemporal protocols for mitigating the adverse impact of climate change. Land surface temperature (LST) derived from satellite images and building data extracted from aerial photographs were used to simulate the adjusted wind chill equivalent temperature (AWCET) particularly for sub-tropical scenarios between 1990 and 2010 of the Kowloon Peninsula, Hong Kong. Compared with perceived temperature based on the representative station located at the headquarters of the Hong Kong Observatory, the temperature of half the study area in the Kowloon Peninsula has raised by 1.5◦C. The areas with less green space and less public open space in 2010 show higher relative temperatures. Socioeconomically deprived areas (e.g., areas with lower median monthly income) may suffer more from this scenario, but not all types of socioeconomic disparities are associated with poor sustainable planning. Based on our results and the “no-one left behind” guideline from the United Nations, climate change mitigation should be conducted by targeting socioeconomic neighborhoods more than just aging communities.
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spelling mit-1721.1/1351492022-03-30T14:46:47Z Spatiotemporal prediction of increasing winter perceived temperature across a sub-tropical city for sustainable planning and climate change mitigation Ho, HC Abbas, S Yang, J Zhu, R Wong, MS © 2019 by the authors. Licensee MDPI, Basel, Switzerland. Climate variability has been documented as being key to influencing human wellbeing across cities as it is linked to mortality and illness due to changes in the perceived weather cycle. Many studies have investigated the impact of summer temperature on human health and have proposed mitigation strategies for summer heat waves. However, sub-tropical cities are still experiencing winter temperature variations. Increasing winter perceived temperature through the decades may soon affect city wellbeing, due to a larger temperature change between normal winter days and extreme cold events, which may cause higher health risk due to lack of adaptation and self-preparedness. Therefore, winter perceived temperature should also be considered and integrated in urban sustainable planning. This study has integrated the increasing winter perceived temperature as a factor for developing spatiotemporal protocols for mitigating the adverse impact of climate change. Land surface temperature (LST) derived from satellite images and building data extracted from aerial photographs were used to simulate the adjusted wind chill equivalent temperature (AWCET) particularly for sub-tropical scenarios between 1990 and 2010 of the Kowloon Peninsula, Hong Kong. Compared with perceived temperature based on the representative station located at the headquarters of the Hong Kong Observatory, the temperature of half the study area in the Kowloon Peninsula has raised by 1.5◦C. The areas with less green space and less public open space in 2010 show higher relative temperatures. Socioeconomically deprived areas (e.g., areas with lower median monthly income) may suffer more from this scenario, but not all types of socioeconomic disparities are associated with poor sustainable planning. Based on our results and the “no-one left behind” guideline from the United Nations, climate change mitigation should be conducted by targeting socioeconomic neighborhoods more than just aging communities. 2021-10-27T20:10:57Z 2021-10-27T20:10:57Z 2019-02-01 2019-10-17T18:35:11Z Article http://purl.org/eprint/type/JournalArticle https://hdl.handle.net/1721.1/135149 en 10.3390/ijerph16030497 International Journal of Environmental Research and Public Health Creative Commons Attribution 4.0 International license https://creativecommons.org/licenses/by/4.0/ application/pdf MDPI AG MDPI
spellingShingle Ho, HC
Abbas, S
Yang, J
Zhu, R
Wong, MS
Spatiotemporal prediction of increasing winter perceived temperature across a sub-tropical city for sustainable planning and climate change mitigation
title Spatiotemporal prediction of increasing winter perceived temperature across a sub-tropical city for sustainable planning and climate change mitigation
title_full Spatiotemporal prediction of increasing winter perceived temperature across a sub-tropical city for sustainable planning and climate change mitigation
title_fullStr Spatiotemporal prediction of increasing winter perceived temperature across a sub-tropical city for sustainable planning and climate change mitigation
title_full_unstemmed Spatiotemporal prediction of increasing winter perceived temperature across a sub-tropical city for sustainable planning and climate change mitigation
title_short Spatiotemporal prediction of increasing winter perceived temperature across a sub-tropical city for sustainable planning and climate change mitigation
title_sort spatiotemporal prediction of increasing winter perceived temperature across a sub tropical city for sustainable planning and climate change mitigation
url https://hdl.handle.net/1721.1/135149
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