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Thermal conditioning for urban outdoor spaces through the use of evaporative wind towers

机译:通过使用蒸发式风塔对城市室外空间进行热调节

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The aim of this paper is to study the thermal comfort levels achieved in open spaces by means of evaporative wind towers. These systems have been installed in an urban area characterized by its hot and dry summer climate. Conventional wind tower designs for enclosed and semi-enclosed spaces have been adapted for this new installation. These systems are usually composed of a few number of wind towers, this one however is composed by a group of sixteen, increasing the total dimensions of the installation. To integrate this construction into the urban public area, it was built in a circular arrangement, creating an activity and meeting point for pedestrians. This passive system was monitored during the summer of 2008. Measurements of temperature, solar radiation, humidity and wind speed were analyzed. During the analyzed period, the average cooling efficiency of the system varied from 38% at the exit of the tower, to 32% at 1 m high. At this last position, the average exceeds the wet bulb temperature up to 8℃ with an increase of moisture around 27%. The shading effect produced by the global installation itself has been modeled theoretically to evaluate the incident solar radiation at the pedestrian area. Two indices have been applied to predict the perception of heat and cold in the south pedestrian zone: Heat index and TS index. In this position, both variables approached the thermal sensation to the comfort levels by the use of these passive strategies when ambient conditions are hot and dry.
机译:本文的目的是研究通过蒸发风塔在开放空间中获得的热舒适水平。这些系统已安装在以炎热干燥的夏季气候为特征的城市地区。用于封闭和半封闭空间的常规风塔设计已针对此新安装进行了调整。这些系统通常由数个风塔组成,但是这个风塔由一组16个风塔组成,从而增加了设备的总尺寸。为了将此建筑整合到城市公共区域,它以环形布置的方式建造,为行人创造了活动和汇聚点。该无源系统在2008年夏季进行了监视。对温度,太阳辐射,湿度和风速进行了测量。在分析期间,系统的平均冷却效率从塔出口的38%到1 m高的32%不等。在最后一个位置,平均温度超过湿球温度高达8℃,水分增加了约27%。从理论上对全局安装本身产生的阴影效果进行了建模,以评估行人区域的入射太阳辐射。已经应用了两个指数来预测南部行人带对热和冷的感知:热指数和TS指数。在这个位置上,当环境炎热干燥时,这两个变量都通过使用这些被动策略使热感达到了舒适水平。

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