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Thermal comfort conditions at the platforms of the Athens Metro

机译:雅典地铁平台的热舒适条件

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The current study aims at the comparison of the field measurements at the platforms of the Athens Metro with those recommended by international standard thermal comfort and to the investigation of the relationship of environmental parameters between platforms and the outdoor space. The levels of air, operative and globe temperature as well as air humidity and air velocity were continuously monitored at the platform space of two stations with different depth and design features in summer. The predicted mean vote (PMV) model and the predicted percentage of dissatisfied (PPD) index were used. The results reveal that the operative temperature at both stations is far from the traditional still-air comfort zones. For the case of elevated air movement of 1.2 ms~(-1) and considering the occupants have local control of air speed, 20.3% of the values at the station with the greatest depth do not exceed the upper limit. Furthermore, 64% of the variation in air temperature at the platform of the station with the smallest depth is explained by outdoor air temperature, while the corresponding percentage for the station with the greatest depth is 29%. Passengers experience sudden change of air temperature and PMV, especially at the station with the smallest depth, during their transition from the platform to the interior of air-conditioned train carriages and vice versa.
机译:目前的研究旨在比较雅典地铁平台的现场测量与国际标准热舒适度建议的那些,并调查平台与室外空间之间的环境参数关系。在夏季不同深度和设计特征的两个站的平台空间中连续监测空气,手术和全球温度以及空气湿度和空气速度。使用预测的平均投票(PMV)模型和预测的不满(PPD)指数的预测百分比。结果表明,两个站的操作温度远非传统的静物舒适区。对于升高的空气运动为1.2ms〜(-1),并且考虑乘员的空气速度局部控制,最大深度最大的站点的20.3%的值不超过上限。此外,通过室外空气温度解释了具有最小深度的电台平台的64%的空气温度变化,而最大深度的电台的相应百分比为29%。乘客经历了空气温度和PMV的突然变化,特别是在从平台到空调火车车厢的内部的过渡期间在具有最小深度的电台上,反之亦然。

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