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Investigation into sensitivities of factors in outdoor thermal comfort indices

机译:室外热舒适指数因素敏感性研究

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摘要

With the development of the urban city, increasing attention has been paid to outdoor thermal comfort. In this paper, an analysis of the sensitivities of different factors, including the personal factors and physical parameters of the thermal environment was conducted. The results showed that there was a strong linear relationship between the Physiological Equivalent Temperature (PET) and operation temperature. When the operation temperature was lower than 32 degrees C, the effect of air velocity on the PET was positive. However, the effects of other factors, including relative humidity, clothing insulation, and metabolic rate, on the PET were insignificant. An exponential relationship was found between the UTCI and the operation temperature. The effect of air velocity change on the UTCI became weaker and weaker with the increase of operation temperature. Compared with the PET, the linear relationship between the UTCI and relative humidity was clearer. A field survey of thermal comfort carried out in Guangzhou University was used for the validation of the thermal comfort models. It was observed that the clothing insulation requirement increased with the decrease of air temperature in autumn. The variations in metabolic rate were also obvious, from 1met to 3.8 met. More than 70% of the people had been walking before they arrived at the survey locations. In addition, there were some differences in the neutral PET and UTCI temperature between the metabolic rates of 1.0-2.0 met and of 2.6 met. Meanwhile, models of MTSV against the PET and UTCI under different metabolic rates were established.
机译:随着城市的发展,人们越来越关注室外的热舒适性。在本文中,对包括人为因素和热环境物理参数在内的不同因素的敏感性进行了分析。结果表明,生理等效温度(PET)与工作温度之间存在很强的线性关系。当操作温度低于32℃时,空气速度对PET的影响为正。但是,其他因素(包括相对湿度,衣服隔热性和代谢率)对PET的影响微不足道。发现UTCI与操作温度之间呈指数关系。随着工作温度的升高,风速变化对UTCI的影响越来越弱。与PET相比,UTCI和相对湿度之间的线性关系更加清晰。在广州大学进行的热舒适性现场调查用于验证热舒适性模型。可以看出,随着秋季气温的降低,服装的隔热要求增加。代谢率的变化也很明显,从1met到3.8 met。超过70%的人在到达调查地点之前已经走过。此外,中性PET和UTCI温度在1.0-2.0 met和2.6 met的代谢率之间存在一些差异。同时,建立了不同代谢速率下针对PET和UTCI的MTSV模型。

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