Packaging Environmental Sensors for Monitoring Urban-Microclimates

Shuv Dey, J. Brown, Y. Joshi
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Abstract

An internet-of-things (IoT)-based low-cost sensor network can be used to collect the data necessary to study both Urban Heat Island (UHI) and air pollution. There are several key challenges associated with an IoT-based solution to environmental data monitoring, including packaging and deployment. This study explores these challenges by looking at effects the packaging has on the deployed environmental sensors. Several packaging designs are numerically studied using a computation fluid dynamics (CFD) model. Two sensor designs are chosen using results obtained from CFD modeling and then experimentally deployed. The findings conclude that the IoT sensors chosen for this study are not significantly affected by flow velocities or require advanced packaging designs when paired with street-side outdoor digital displays.
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用于监测城市微气候的包装环境传感器
基于物联网(IoT)的低成本传感器网络可用于收集研究城市热岛(UHI)和空气污染所需的数据。基于物联网的环境数据监测解决方案存在几个关键挑战,包括包装和部署。本研究通过观察包装对部署的环境传感器的影响来探讨这些挑战。采用计算流体力学(CFD)模型对几种包装设计进行了数值研究。根据CFD建模结果选择了两种传感器设计,并进行了实验部署。研究结果表明,为本研究选择的物联网传感器不受流速的显著影响,也不需要先进的包装设计,当与路边户外数字显示器配对时。
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