Wang Jia, Zhou Weiqi, Pickett Steward T A, Qian Yuguo
State Key Laboratory of Urban and Regional Ecology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China.
University of Chinese Academy of Sciences, Beijing 100049, China.
Proc Natl Acad Sci U S A. 2024 Nov 12;121(46):e2401210121. doi: 10.1073/pnas.2401210121. Epub 2024 Nov 4.
Urban heat mitigation is a pressing concern for cities. Intense urban heat poses a threat to human health and urban sustainability. Tree planting is one of the most widely employed nature-based heat mitigation methods worldwide. Therefore, city policy makers require knowledge of how much temperature will be reduced by increasing urban tree canopy (UTC). Cooling efficiency (CE), which was been proposed to quantify the magnitude of temperature reduction associated with a 1% increase in UTC, has been primarily investigated at smaller scales previously. However, such small-scale results cannot be used to develop policy at the whole-city scale. This study developed a method that reveals the scaling relations of CE so as to predict its effects at the city scale. CE was found to follow the form of a power law as spatial scale increased from the small analytical units through intermediate size units up to the extent of a whole city. The power law form appeared consistently across cities with different climate backgrounds during summer daylight hours. Furthermore, the power law form was robust within cities under different summer weather conditions. The power-law scaling approach can thus be used to predict CE at the whole-city scale, providing a useful tool for managers to set UTC goals to mitigate extreme urban heat.
城市热缓解是城市面临的紧迫问题。强烈的城市热对人类健康和城市可持续性构成威胁。植树是全球应用最广泛的基于自然的热缓解方法之一。因此,城市政策制定者需要了解增加城市树冠覆盖率(UTC)能降低多少温度。冷却效率(CE)被提议用于量化与UTC增加1%相关的温度降低幅度,此前主要在较小尺度上进行了研究。然而,这种小尺度结果不能用于制定全市尺度的政策。本研究开发了一种方法,揭示CE的尺度关系,以便预测其在城市尺度上的效果。研究发现,随着空间尺度从小的分析单元通过中等大小单元增加到整个城市范围,CE遵循幂律形式。在夏季白天,幂律形式在具有不同气候背景的城市中一致出现。此外,在不同夏季天气条件下的城市内部,幂律形式也很稳健。因此,幂律尺度方法可用于预测全市尺度的CE,为管理者设定UTC目标以缓解极端城市热提供了有用工具。