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Data collected by coupling fix and wearable sensors for addressing urban microclimate variability in an historical Italian city

机译:通过固定和可穿戴传感器耦合收集的数据用于解决意大利历史名城的城市小气候变化

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摘要

This article presents the data collected through an extensive research work conducted in a historic hilly town in central Italy during the period 2016–2017. Data concern two different datasets: long-term hygrothermal histories collected in two specific positions of the town object of the research, and three environmental transects collected following on foot the same designed path at three different time of the same day, i.e. during a heat wave event in summer. The short-term monitoring campaign is carried out by means of an innovative wearable weather station specifically developed by the authors and settled upon a bike helmet. Data provided within the short-term monitoring campaign are analysed by computing the apparent temperature, a direct indicator of human thermal comfort in the outdoors. All provided environmental data are geo-referenced. These data are used in order to examine the intra-urban microclimate variability. Outcomes from both long- and short-term monitoring campaigns allow to confirm the existing correlation between the urban forms and functionalities and the corresponding local microclimate conditions, also generated by anthropogenic actions. In detail, higher fractions of built surfaces are associated to generally higher temperatures as emerges by comparing the two long-term air temperature data series, i.e. temperature collected at point 1 is higher than temperature collated at point 2 for the 75% of the monitored period with an average of +2.8 °C. Furthermore, gathered environmental transects demonstrate the high variability of the main environmental parameters below the Urban Canopy. Diversification of the urban thermal behaviour leads to a computed apparent temperature range in between 33.2 °C and 46.7 °C at 2 p.m. along the monitoring path. Reuse of these data may be helpful for further investigating interesting correlations among urban configuration, anthropogenic actions and microclimate variables affecting outdoor comfort. Additionally, the proposed dataset may be compared to other similar datasets collected in other urban contexts around the world. Finally, it can be compared to other monitoring methodologies such as weather stations and satellite measurements available in the location at the same time.
机译:本文介绍了在2016年至2017年期间通过在意大利中部一个历史悠久的丘陵小镇进行的广泛研究工作收集的数据。数据涉及两个不同的数据集:在研究的城镇对象的两个特定位置收集的长期湿热历史记录,以及在同一天的三个不同时间(即热浪期间)沿着同一设计路径步行收集的三个环境样线夏天的盛事。短期监测活动是通过作者专门开发的创新可穿戴式气象站进行的,并安装在自行车头盔上。短期监测活动中提供的数据通过计算视在温度进行分析,视在温度是人在户外热舒适度的直接指标。所有提供的环境数据均已地理参考。这些数据用于检验城市内部的微气候变异性。长期和短期监测活动的结果都可以确认城市形态和功能与相应的局部微气候条件之间的现有相关性,这些相关性也是由人为行动产生的。详细地讲,通过比较两个长期空气温度数据序列,可以发现较高比例的建筑表面通常与较高的温度相关,即在所监视的75%的时间内,在点1处收集的温度高于在点2处收集的温度。平均气温为+2.8°C。此外,收集的环境样条显示了城市冠层以下主要环境参数的高度变异性。城市热行为的多样化导致下午2点时计算出的表观温度范围在33.2°C至46.7°C之间。沿着监视路径。重复使用这些数据可能有助于进一步研究城市配置,人为活动和影响户外舒适度的微气候变量之间的有趣关系。另外,可以将提议的数据集与在世界其他城市环境中收集的其他类似数据集进行比较。最后,可以将其与其他监视方法进行比较,例如气象站和该位置同时可用的卫星测量。

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