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Mitigating the surface urban heat island: Mechanism study and sensitivity analysis

机译:缓解地表城市热岛:机理研究和敏感性分析

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In a surface urban heat island (SUHI), the urban land surface temperature (LST) is usually higher than the temperature of the surrounding rural areas due to human activities and surface characteristics. Because a SUHI has many adverse impacts on urban environment and human health, SUHI mitigation strategies are very important. This paper investigates the mechanism of a SUHI based on the basic physical laws that control the formation of a SUHI; five mitigation strategies are proposed, namely: sprinkling and watering; paving a pervious surface; reducing the anthropogenic heat (AH) release; using a "white roof"; increasing the fractional vegetation cover or leaf area index (LAI). To quantify the effect of these mitigation strategies, 26 sets of experiments are designed and implemented by running the integrated urban land model (IUM). The results of the sensitivity analysis indicate that sprinkling and watering is an effective measure for mitigating a SUHI for an entire day. Decreasing the AH release is also useful for both night- and daytime SUHI mitigation; however, the cooling extent is proportional to the diurnal cycle of AH. Increasing the albedo can reduce the LST in the daytime, especially when the solar radiation is significant; the cooling extent is approximately proportional to the diurnal cycle of the net radiation. Increasing the pervious surface percentage can mitigate the SUHI especially in the daytime. Increasing the fractional vegetation cover can mitigate the SUHI in the daytime but may aggravate the SUHI at night.
机译:在地表城市热岛(SUHI)中,由于人类活动和地表特征,城市地表温度(LST)通常高于周围农村地区的温度。由于SUHI对城市环境和人类健康有许多不利影响,因此SUHI的缓解策略非常重要。本文基于控制SUHI形成的基本物理定律研究了SUHI的机理。提出了五种缓解策略,即:洒水和浇水;铺上透水的表面;减少人为热量(AH)的释放;使用“白色屋顶”;增加植被覆盖率或叶面积指数(LAI)。为了量化这些缓解策略的效果,通过运行综合城市土地模型(IUM)设计并实施了26组实验。敏感性分析的结果表明,洒水和浇水是缓解SUHI一整天的有效措施。减少AH释放对于缓解夜间和白天的SUHI也很有用。但是,冷却程度与AH的昼夜周期成正比。增加反照率可以减少白天的LST,尤其是在太阳辐射很大的时候。冷却程度大约与净辐射的昼夜周期成正比。增加透水表面百分比可以缓解SUHI,尤其是在白天。增加植被覆盖率可以缓解白天的SUHI,但在夜间可能会加剧SUHI。

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