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Thermal human biometeorological conditions and subjective thermal sensation in pedestrian streets in Chengdu, China

机译:成都步行街人类的热生物气象条件和主观热感觉

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摘要

The outdoor thermal environment of a public space is highly relevant to the thermal perception of individuals, thereby affecting the use of space. This study aims to connect thermal human biometeorological conditions and subjective thermal sensation in hot and humid regions and to find its influence on street use. We performed a thermal comfort survey at three locations in a pedestrian precinct of Chengdu, China. Meteorological measurements and questionnaire surveys were used to assess the thermal sensation of respondents. The number of people visiting the streets was counted. Meanwhile, mean radiant temperature (T (mrt)) and the physiological equivalent temperature (PET) index were used to evaluate the thermal environment. Analytical results reveal that weather and street design drive the trend of diurnal micrometeorological conditions of the street. With the same geometry and orientation, a street with no trees had wider ranges of meteorological parameters and a longer period of discomfort. The neutral temperature in Chengdu (24.4 A degrees C PET) is similar to that in Taiwan, demonstrating substantial human tolerance to hot conditions in hot and humid regions. Visitors' thermal sensation votes showed the strongest positive relationships with air temperature. Overall comfort level was strongly related to every corresponding meteorological parameter, indicating the complexity of people's comfort in outdoor environments. In major alleys with multiple functions, the number of people in the street decreased as thermal indices increased; T (mrt) and PET had significant negative correlations with the number of people. This study aids in understanding pedestrian street use in hot and humid regions.
机译:公共空间的室外热环境与个人的热感知高度相关,从而影响空间的使用。这项研究旨在将人类的热生物气象条件与湿热地区的主观热感联系起来,并发现其对街头使用的影响。我们在中国成都行人专用区的三个地点进行了热舒适度调查。气象测量和问卷调查被用来评估受访者的热感。统计了逛街的人数。同时,使用平均辐射温度(T(mrt))和生理等效温度(PET)指数评估热环境。分析结果表明,天气和街道设计推动了街道昼间微气象条件的发展。在几何形状和方向相同的情况下,没有树木的街道的气象参数范围更广,不适期更长。成都的中性温度(PET为24.4 A摄氏度)与台湾的中性温度相似,表明人类对湿热地区的炎热条件具有相当大的耐受力。参观者的热感票显示出与气温之间最强的正相关关系。总体舒适度与每个相应的气象参数密切相关,表明人们在室外环境中的舒适度非常复杂。在具有多个功能的主要小巷中,街道的人数随着热量指数的增加而减少; T(mrt)和PET与人数呈显着负相关。这项研究有助于了解在炎热潮湿地区的步行街使用情况。

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