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Surrogate human sensor for human skin surface temperature measurement in evaluating the impacts of thermal behaviour at outdoor environment

机译:用于人体皮肤表面温度测量的替代人体传感器评估户外环境中热行为的影响

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摘要

The world is experiencing high rates of urbanisation and it has slowly become an alarming social process, especially in developing countries. This has demanded an urgent investigation on human thermal comfort, especially in tropical climates. In this study, a surrogate human sensor (SHS) was developed to establish a linkage between human skin surface and SHS with the surrounding environments. Black plastic corrugated cardboard was used in the SHS fabrication as its thermal conductivity was close to the thermal conductivity and emissivity of the human epidermal skin layer. The SHS was designed to correlate with human skin surface temperature and a regression model was developed. The regression equation was obtained for the human skin temperature prediction (T-h) by using SHS. Statistical analysis of the ANOVA (F = 13,700;. rho0.05) was significantly tested to show its reliability. The predicted and measured human skin temperature was compared and the results revealed that both temperature variations was found in range +/- 0.5 degrees C in temperature differences. The advantages of SHS as the sensor for the impact of thermal behaviour can be identified by observing the temperature difference as it can directly reflects the influences from the surrounding outdoor environment. Although it is proven valid statistically, however, SHS is only relevant as an initial indicator to investigate the impacts of thermal behaviour and discomfort level. It can further used to measure human thermal comfort by correlating surrounding environment condition with comfort sensation through SHS regression model.
机译:世界正在经历高的城市化率,它慢慢成为一个令人震惊的社会过程,特别是在发展中国家。这要求对人类热舒适性的紧急调查,特别是在热带气候中。在这项研究中,开发了一种替代人类传感器(SHS)以建立人体皮肤表面和SHS与周围环境之间的联动。在SHS制造中使用黑色塑料瓦楞纸板,因为其导热率接近人表皮表皮皮肤层的导热率和发射率。 SHS旨在与人体皮肤表面温度相关,并开发回归模型。使用SHS获得人体皮肤温度预测(T-H)获得回归方程。对ANOVA的统计分析(F = 13,700; rho <0.05)被显着测试以显示其可靠性。比较预测和测量的人体皮肤温度,结果表明,在温度差异范围内+/- 0.5摄氏度的温度变化都存在。通过观察温度差异,可以识别SHS作为热量行为影响的传感器的优点,因为它可以直接反映周围的室外环境的影响。虽然在统计上被证明是有效的,但是,SHS仅作为初始指标,以研究热行为和不适水平的影响。通过通过SHS回归模型将周围环境条件与舒适性感应相关来测量人类热舒适度。

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