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Compact and wearable measurement system for Lagrangian Human Biometeorology

机译:拉格朗日人体生物气象的紧凑且可穿戴的测量系统

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摘要

Human Biometeorology is currently on the basis of the Euler concept; i.e., meteorological factors are evaluated by fixed-point observations. However, the Euler concept cannot evaluate the actual micro climates we are exposed and thermal load histories, which is increasingly gaining attentions. We introduced a Lagrangian concept to Human Biometeorology, named Lagrangian Human Biometeorology (LHM). The concept of LHM is to investigate and evaluate micro climates along human pathways carrying small bio-meteorological sensors. In this report, proposed was a new-sensor technology for meteorological factors that can enhance the portability. The new technology is to estimate wind velocity, short- and long-wave radiation flux from three compact globe thermometers with different radiative properties. A physiological measurement system was also developed: the bracelet-size observational system, where the sensors for pulse rate, perception of heat, and metabolic equivalent are implemented.
机译:人类生物气象学目前是基于欧拉概念的。即,通过定点观测来评估气象因素。但是,Euler概念无法评估我们所暴露的实际微气候和热负荷历史,这日益受到关注。我们将拉格朗日概念引入了人类生物气象学,即拉格朗日人类生物气象学(LHM)。 LHM的概念是研究和评估人类携带小型生物气象传感器的沿途微气候。在本报告中,提出了一种用于气象因素的新传感器技术,可以增强便携性。这项新技术将通过三个具有不同辐射特性的紧凑型地球温度计来估算风速,短波和长波辐射通量。还开发了一种生理测量系统:手镯大小的观察系统,其中安装了脉搏率,热感知和代谢当量传感器。

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