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Investigation of CO 2 Variation and Mapping Through Wearable Sensing Techniques for Measuring Pedestrians’ Exposure in Urban Areas

机译:通过可穿戴传感技术进行CO 2变化和绘制,用于测量城市地区行人暴露的

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Citizens’ wellbeing is mainly threatened by poor air quality and local overheating due to human-activity concentration and land-cover/surface modification in urban areas. Peculiar morphology and metabolism of urban areas lead to the well-known urban-heat-island effect, characterized by higher air temperature in cities than in their surroundings. The environmental mapping of the urban outdoors at the pedestrian height could be a key tool to identify risky areas for humans in terms of both poor-air-quality exposure and thermal comfort. This study proposes urban environment investigation through a wearable miniaturized weather station to get the spatial distribution of key parameters according to the citizens’ perspective. The innovative system monitors and traces the field values of carbon dioxide (CO 2 ) concentration, such as air temperature and wind-speed values, which have been demonstrated to be related to outdoor wellbeing. The presented monitoring campaign focused on a two-way, two-lane road in Rome (Italy) during traffic rush hours on both working days and weekends. Collected data were analyzed with respect to timing and position, and possible correlations among different variables were examined. Results demonstrated the wearable system capability to catch pedestrian-exposure variability in terms of CO 2 concentration and local overheating due to urban structure, highlighting potentials in the citizens’ involvement as observation vectors to extensively monitor urban environmental quality.
机译:公民的福祉主要受到城市人类活动浓度和陆地覆盖/表面改变的空气质量差和局部过热威胁。城市地区的特殊形态和新陈代谢导致着名的城市热岛效果,其特点是城市的空气温度高于周围环境。在行人高度的城市户外环境映射可能是在差空气质量暴露和热舒适性方面识别人类风险区域的关键工具。本研究提出了通过可佩戴式小型化气象站调查的城市环境调查,根据公民的角度获得关键参数的空间分布。创新的系统监测和追踪二氧化碳(CO 2)浓度的野性值,例如空气温度和风速值,这已被证明与室外福利有关。在罗马(意大利)在工作日和周末的交通高峰时段,呈现的监测活动专注于罗马(意大利)的双线道路。关于定时和位置分析收集的数据,检查不同变量之间的可能相关性。结果证明了可穿戴系统能力,以在城市结构上的CO 2浓度和局部过热方面捕获行人暴露变异,突出市民参与的潜力作为观察向量,以广泛监测城市环境质量。

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