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用于职业环境中实时热应力监测和通信的低成本传感器网络。

A Low-Cost Sensor Network for Real-Time Thermal Stress Monitoring and Communication in Occupational Contexts.

机构信息

Chair of Environmental Meteorology, Department of Earth and Environmental Sciences, Faculty of Environment and Natural Resources, University of Freiburg, D-79085 Freiburg, Germany.

Research Centre Human Biometeorology, German Meteorological Service, Stefan-Meier-Str. 4, D-79104 Freiburg, Germany.

出版信息

Sensors (Basel). 2022 Feb 25;22(5):1828. doi: 10.3390/s22051828.

Abstract

The MoBiMet (Mobile Biometeorology System) is a low-cost device for thermal comfort monitoring, designed for long-term deployment in indoor or semi-outdoor occupational contexts. It measures air temperature, humidity, globe temperature, brightness temperature, light intensity, and wind, and is capable of calculating thermal indices (e.g., physiologically equivalent temperature (PET)) on site. It visualizes its data on an integrated display and sends them continuously to a server, where web-based visualizations are available in real-time. Data from many MoBiMets deployed in real occupational settings were used to demonstrate their suitability for large-scale and continued monitoring of thermal comfort in various contexts (industrial, commercial, offices, agricultural). This article describes the design and the performance of the MoBiMet. Alternative methods to determine mean radiant temperature () using a light intensity sensor and a contactless infrared thermopile were tested next to a custom-made black globe thermometer. Performance was assessed by comparing the MoBiMet to an independent mid-cost thermal comfort sensor. It was demonstrated that networked MoBiMets can detect differences of thermal comfort at different workplaces within the same building, and between workplaces in different companies in the same city. The MoBiMets can capture spatial and temporal differences of thermal comfort over the diurnal cycle, as demonstrated in offices with different stories and with different solar irradiances in a single high-rise building. The strongest sustained heat stress was recorded at industrial workplaces with heavy machinery.

摘要

MoBiMet(移动生物气象系统)是一种用于热舒适监测的低成本设备,专为在室内或半户外职业环境中进行长期部署而设计。它可以测量空气温度、湿度、总辐射温度、亮度温度、光照强度和风速,并能够现场计算热指数(例如,生理等效温度 (PET))。它将数据可视化在集成显示屏上,并将其连续发送到服务器,在那里可以实时查看基于网络的可视化数据。从许多在实际职业环境中部署的 MoBiMets 中收集的数据用于证明其适用于各种环境(工业、商业、办公室、农业)中热舒适的大规模和持续监测。本文描述了 MoBiMet 的设计和性能。接下来,还测试了使用光照强度传感器和非接触式红外热电堆来替代方法来确定平均辐射温度(),同时还使用了定制的黑球温度计。通过将 MoBiMet 与独立的中等成本热舒适传感器进行比较来评估性能。结果表明,联网的 MoBiMets 可以检测同一建筑物内不同工作场所之间以及同一城市不同公司工作场所之间的热舒适差异。MoBiMets 可以捕捉昼夜周期内热舒适的空间和时间差异,在具有不同故事和不同太阳辐照度的办公室中可以得到证明。在具有重型机械的工业工作场所记录到了最强的持续热应激。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa97/8914846/9e0a9380b922/sensors-22-01828-g0A1.jpg

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