Assessment of measured and perceived microclimates within a tropical urban forest

Urban greenery is a favoured approach applied towards reducing urban warmth and climate discomfort, but ascertaining its measured and perceived effectiveness in tropical climates is relatively understudied. To this end, we investigated microclimate differences within an urban park (the Singapore Bot...

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Main Authors: CHOW, Winston T. L., AKBAR, Siti Nur ‘Assyakirin Binte Ali, HENG, Su Li, ROTH, Matthias
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Language:English
Published: Institutional Knowledge at Singapore Management University 2016
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Online Access:https://ink.library.smu.edu.sg/soss_research/3053
https://ink.library.smu.edu.sg/context/soss_research/article/4310/viewcontent/1_s2.0_S1618866716000108_main.pdf
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spelling sg-smu-ink.soss_research-43102020-01-09T06:46:49Z Assessment of measured and perceived microclimates within a tropical urban forest CHOW, Winston T. L. AKBAR, Siti Nur ‘Assyakirin Binte Ali HENG, Su Li ROTH, Matthias Urban greenery is a favoured approach applied towards reducing urban warmth and climate discomfort, but ascertaining its measured and perceived effectiveness in tropical climates is relatively understudied. To this end, we investigated microclimate differences within an urban park (the Singapore Botanic Gardens) to assess if variations in plot-scale land cover affect both objective (measured) and subjective (surveyed) microclimate data. Over two monsoonal seasons, we obtained data from four distinct sites—a tropical rainforest stand, a palm tree valley, a water-body feature, and the park visitors’ centre. Measured climate data (e.g. air temperature, vapour pressure, wind velocity and globe temperatures) were used to derive mean radiant temperature Tmrt and three thermal comfort indices (e.g. temperaturehumidity index THI, physiological equivalent temperature PET, and wet-bulb globe temperature WBGT). Concurrent to these measurements, we also surveyed park users (n = 1573) for perceived microclimate sensations and preferences in thermal, humidity, wind and sun exposure, as well as their overall assessment of climate comfort/discomfort. The results indicate significant differences in both measured and perceived microclimates over different sites and seasons, with (i) selected heat stress thresholds based on thermal comfort indices exceeded at several sites, and (ii) visitors perceived generally hot, humid and low-wind conditions throughout. Variations in respondent acclimatisation to tropical climates are observed between correlations of WBGT and some sensation votes, with apparently stronger correlations with more acclimated respondents. While humidity was voted as the most uncomfortable climate variable across all sites, a large majority of respondents felt comfortable climate conditions throughout. Present results confirm that vegetation canopy characteristics affecting wind and sun exposure appear to be important factors in outdoor thermal comfort. Lastly, we suggest that future tropical outdoor thermal comfort studies consider the critical aspects of site humidity and wind to discern comfort/discomfort levels. 2016-01-01T08:00:00Z text application/pdf https://ink.library.smu.edu.sg/soss_research/3053 info:doi/10.1016/j.ufug.2016.01.010 https://ink.library.smu.edu.sg/context/soss_research/article/4310/viewcontent/1_s2.0_S1618866716000108_main.pdf http://creativecommons.org/licenses/by-nc-nd/4.0/ Research Collection School of Social Sciences eng Institutional Knowledge at Singapore Management University Urban parks Outdoor thermal comfort Tropical microclimate Environmental Sciences Urban Studies and Planning
institution Singapore Management University
building SMU Libraries
continent Asia
country Singapore
Singapore
content_provider SMU Libraries
collection InK@SMU
language English
topic Urban parks
Outdoor thermal comfort
Tropical microclimate
Environmental Sciences
Urban Studies and Planning
spellingShingle Urban parks
Outdoor thermal comfort
Tropical microclimate
Environmental Sciences
Urban Studies and Planning
CHOW, Winston T. L.
AKBAR, Siti Nur ‘Assyakirin Binte Ali
HENG, Su Li
ROTH, Matthias
Assessment of measured and perceived microclimates within a tropical urban forest
description Urban greenery is a favoured approach applied towards reducing urban warmth and climate discomfort, but ascertaining its measured and perceived effectiveness in tropical climates is relatively understudied. To this end, we investigated microclimate differences within an urban park (the Singapore Botanic Gardens) to assess if variations in plot-scale land cover affect both objective (measured) and subjective (surveyed) microclimate data. Over two monsoonal seasons, we obtained data from four distinct sites—a tropical rainforest stand, a palm tree valley, a water-body feature, and the park visitors’ centre. Measured climate data (e.g. air temperature, vapour pressure, wind velocity and globe temperatures) were used to derive mean radiant temperature Tmrt and three thermal comfort indices (e.g. temperaturehumidity index THI, physiological equivalent temperature PET, and wet-bulb globe temperature WBGT). Concurrent to these measurements, we also surveyed park users (n = 1573) for perceived microclimate sensations and preferences in thermal, humidity, wind and sun exposure, as well as their overall assessment of climate comfort/discomfort. The results indicate significant differences in both measured and perceived microclimates over different sites and seasons, with (i) selected heat stress thresholds based on thermal comfort indices exceeded at several sites, and (ii) visitors perceived generally hot, humid and low-wind conditions throughout. Variations in respondent acclimatisation to tropical climates are observed between correlations of WBGT and some sensation votes, with apparently stronger correlations with more acclimated respondents. While humidity was voted as the most uncomfortable climate variable across all sites, a large majority of respondents felt comfortable climate conditions throughout. Present results confirm that vegetation canopy characteristics affecting wind and sun exposure appear to be important factors in outdoor thermal comfort. Lastly, we suggest that future tropical outdoor thermal comfort studies consider the critical aspects of site humidity and wind to discern comfort/discomfort levels.
format text
author CHOW, Winston T. L.
AKBAR, Siti Nur ‘Assyakirin Binte Ali
HENG, Su Li
ROTH, Matthias
author_facet CHOW, Winston T. L.
AKBAR, Siti Nur ‘Assyakirin Binte Ali
HENG, Su Li
ROTH, Matthias
author_sort CHOW, Winston T. L.
title Assessment of measured and perceived microclimates within a tropical urban forest
title_short Assessment of measured and perceived microclimates within a tropical urban forest
title_full Assessment of measured and perceived microclimates within a tropical urban forest
title_fullStr Assessment of measured and perceived microclimates within a tropical urban forest
title_full_unstemmed Assessment of measured and perceived microclimates within a tropical urban forest
title_sort assessment of measured and perceived microclimates within a tropical urban forest
publisher Institutional Knowledge at Singapore Management University
publishDate 2016
url https://ink.library.smu.edu.sg/soss_research/3053
https://ink.library.smu.edu.sg/context/soss_research/article/4310/viewcontent/1_s2.0_S1618866716000108_main.pdf
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