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Parametric analysis on the thermal comfort of a cooling tower based thermally activated building system in tropical climate - An experimental study

机译:热带气候热激活建筑系统热舒适性的参数分析 - 实验研究

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Thermally Activated Building System (TABS) provides not only better thermal comfort but also good indoor air quality. It can be coupled with passive cooling systems as it can operate at a relatively higher water temperature. Even though TABS is a promising energy-efficient and eco-friendly system, the influences of various design and operating parameters on the indoor thermal comfort of a building with TABS are not well understood. Hence, the influences of cooling surfaces (area), shading, natural ventilation and ceiling fan on the performance of cooling tower based TABS were investigated in an experimental room of dimensions 3.5 m x 3.5 m x 3.15 m. The increase in the number of cooling surfaces decreased (favourable) the thermal comfort indices and advanced the time at which their maximum and minimum were reached. The average predicted percentage of dissatisfied was 89% if roof alone was cooling. This reduced to 20% if all the surfaces of the building were cooled. Shading of the roof reduced the maximum operating temperature of the indoor space by 0.9 degrees C when all the surfaces of the building were cooled with TABS. The use of ceiling fan increased the indoor operative temperature marginally. However, the increase was less than the neutral temperature offset of 2.6 degrees C that was achieved by higher air movement. Thus, the use of the fan results in a better indoor thermal comfort. Natural ventilation advanced the occurrence of the maximum temperature of indoor air by 11/2 and 23/4 hours for fan off and fan on cases respectively. It also advanced the extrema of the other indoor comfort parameters. The cooling tower based TABS was able to achieve thermal comfort even in unfavourable warm and humid tropical climates under certain operating conditions.
机译:热激活的建筑系统(标签)不仅提供了更好的热舒适性,而且提供了良好的室内空气质量。它可以与无源冷却系统相结合,因为它可以在相对较高的水温下操作。尽管标签是一个有前途的节能和环保系统,但各种设计和操作参数对带有标签的室内热舒适度的影响也不太了解。因此,在实验室中研究了冷却表面(面积),遮荫,自然通风和吊扇对冷却塔的突片的性能的影响3.5米×3.5米×3.15μm。冷却表面的数量的增加降低(有利)热舒适指数,提前达到其最大值和最小的时间。如果单独屋顶冷却,则平均预测的不含百分比为89%。如果建筑物的所有表面都冷却,这降至20%。当建筑物的所有表面冷却时,屋顶的阴影将室内空间的最大工作温度降低0.9摄氏度。使用吊扇略微增加室内操作温度。然而,通过更高的空气运动实现的2.6℃的中性温度偏移量较大。因此,使用风扇导致更好的室内热舒适度。自然通风分别在11/2和23/4小时内提出了室内空气的最高温度的发生,分别为风扇和风扇。它还推进了其他室内舒适参数的极值。即使在某些操作条件下,冷却塔的标签也能够在不利的温暖和潮湿的热带气候下实现热舒适性。

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