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城市山地公园热舒适及其物理影响因素研究。

A study of the thermal comfort in urban mountain parks and its physical influencing factors.

机构信息

School of Civil Engineering and Architecture, Southwest University of Science and Technology, Mianyang, China.

School of Civil Engineering and Architecture, Southwest University of Science and Technology, Mianyang, China.

出版信息

J Therm Biol. 2023 Dec;118:103726. doi: 10.1016/j.jtherbio.2023.103726. Epub 2023 Oct 14.

Abstract

Urban thermal comforts are increasingly holding people's attention due to global warming and urban heat islands. Urban parks can absorb sunlight radiation, which reduces air temperature, improving urban microclimates. Various factors in the park are confirmed to be effective in heat mitigation. However, there are few studies on thermal comfort in urban mountain parks, and mountain areas might cause peculiar climatic conditions owing to their particular landforms. To fill this gap in the research, this study explored thermal comfort in mountain parks and the environmental factors that would affect thermal comfort. A field measurement in the summertime (July & August) of 2018, it was found that trees, the river, and the area of parks could adjust the thermal comforts of mountain parks. Their effects varied throughout the day, and the impacts of trees were most pronounced at noon and late afternoon, while the influence of rivers and park areas was most pronounced at noon. Increasing the leaf area index by 1 point could result in decreases in physiological equivalent temperature, land surface temperature, and solar radiation level by 3.90 °C, 2.69 °C, and 270.10 W/m, respectively. The findings have practical implications for future urban mountain park design works.

摘要

由于全球变暖及城市热岛效应,城市热舒适度日益受到人们的关注。城市公园可以吸收太阳辐射,降低空气温度,改善城市微气候。公园内的各种因素已被证实对缓解热效应具有积极作用。然而,针对城市山地公园热舒适度的研究还很少,由于特殊的地形,山地可能会导致特殊的气候条件。为了填补这一研究空白,本研究探讨了山地公园的热舒适度以及影响热舒适度的环境因素。2018 年夏季(7 月和 8 月)的实地测量发现,树木、河流和公园面积可以调节山地公园的热舒适度。它们的影响随时间变化而变化,树木的影响在中午和傍晚最为显著,而河流和公园面积的影响在中午最为显著。叶面积指数增加 1 点,生理等效温度、地表温度和太阳辐射水平分别降低 3.90°C、2.69°C 和 270.10W/m。研究结果对未来的城市山地公园设计工作具有实际意义。

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