Impact of shade on outdoor thermal comfort—a seasonal field study in Tempe, Arizona

热舒适性 湿球球温度 环境科学 气象学 日光 地理 热感觉 天蓬 小气候 平均辐射温度 大气科学 空气温度 气候变化 生态学 物理 地质学 光学 生物 考古
作者
Ariane Middel,Nancy J. Selover,Bjoern Hagen,Nalini Chhetri
出处
期刊:International Journal of Biometeorology [Springer Science+Business Media]
卷期号:60 (12): 1849-1861 被引量:281
标识
DOI:10.1007/s00484-016-1172-5
摘要

Shade plays an important role in designing pedestrian-friendly outdoor spaces in hot desert cities. This study investigates the impact of photovoltaic canopy shade and tree shade on thermal comfort through meteorological observations and field surveys at a pedestrian mall on Arizona State University's Tempe campus. During the course of 1 year, on selected clear calm days representative of each season, we conducted hourly meteorological transects from 7:00 a.m. to 6:00 p.m. and surveyed 1284 people about their thermal perception, comfort, and preferences. Shade lowered thermal sensation votes by approximately 1 point on a semantic differential 9-point scale, increasing thermal comfort in all seasons except winter. Shade type (tree or solar canopy) did not significantly impact perceived comfort, suggesting that artificial and natural shades are equally efficient in hot dry climates. Globe temperature explained 51 % of the variance in thermal sensation votes and was the only statistically significant meteorological predictor. Important non-meteorological factors included adaptation, thermal comfort vote, thermal preference, gender, season, and time of day. A regression of subjective thermal sensation on physiological equivalent temperature yielded a neutral temperature of 28.6 °C. The acceptable comfort range was 19.1 °C-38.1 °C with a preferred temperature of 20.8 °C. Respondents exposed to above neutral temperature felt more comfortable if they had been in air-conditioning 5 min prior to the survey, indicating a lagged response to outdoor conditions. Our study highlights the importance of active solar access management in hot urban areas to reduce thermal stress.

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