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城市热岛中城市内部微气候的新型移动监测系统研究。

Intra-urban microclimate investigation in urban heat island through a novel mobile monitoring system.

机构信息

CIRIAF - Interuniversity Research Center, University of Perugia, Via G. Duranti 67, 06125, Perugia, Italy.

Department of Engineering, University of Perugia, Via G. Duranti 97, 06125, Perugia, Italy.

出版信息

Sci Rep. 2021 May 6;11(1):9732. doi: 10.1038/s41598-021-88344-y.

Abstract

Monitoring microclimate variables within cities with high accuracy is an ongoing challenge for a better urban resilience to climate change. Assessing the intra-urban characteristics of a city is of vital importance for ensuring fine living standards for citizens. Here, a novel mobile microclimate station is applied for monitoring the main microclimatic variables regulating urban and intra-urban environment, as well as directionally monitoring shortwave radiation and illuminance and hence systematically map for the first time the effect of urban surfaces and anthropogenic heat. We performed day-time and night-time monitoring campaigns within a historical city in Italy, characterized by substantial urban structure differentiations. We found significant intra-urban variations concerning variables such as air temperature and shortwave radiation. Moreover, the proposed experimental framework may capture, for the very first time, significant directional variations with respect to shortwave radiation and illuminance across the city at microclimate scale. The presented mobile station represents therefore the key missing piece for exhaustively identifying urban environmental quality, anthropogenic actions, and data driven modelling toward risk and resilience planning. It can be therefore used in combination with satellite data, stable weather station or other mobile stations, e.g. wearable sensing techniques, through a citizens' science approach in smart, livable, and sustainable cities in the near future.

摘要

准确监测城市中的小气候变量是实现城市更好适应气候变化能力的一个持续挑战。评估城市的内部特征对于确保市民享有良好的生活水平至关重要。在这里,一种新型的移动微气候站被应用于监测调节城市和城市内部环境的主要小气候变量,以及定向监测短波辐射和光照强度,并首次系统地绘制城市表面和人为热的影响图。我们在意大利的一个历史名城进行了日间和夜间的监测活动,该城市的城市结构有很大的差异。我们发现,空气温度和短波辐射等变量存在显著的城市内部变化。此外,所提出的实验框架可能首次在微气候尺度上捕捉到城市内短波辐射和光照强度的显著方向变化。因此,该移动站代表了全面识别城市环境质量、人为活动以及数据驱动建模以进行风险和恢复力规划的关键缺失部分。因此,它可以与卫星数据、稳定的气象站或其他移动站(例如可穿戴式传感技术)结合使用,通过智慧城市、宜居城市和可持续城市中的公民科学方法,在不久的将来实现这一目标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/52d8/8102564/7595aabc4ce7/41598_2021_88344_Fig1_HTML.jpg

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