Climate adaptive solution for artificial turf in cities: integrated rainwater storage and evaporative cooling

Marjolein H. J. Van Huijgevoort, D. G. Cirkel, J. Voeten
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Abstract

The number of artificial turf fields in cities has increased due to increased pressure on outside sport facilities caused by a higher population density. Downsides of these fields are changes in thermal conditions and decreased infiltration of rain. Artificial turf can reach very high surface temperatures leading to unfavourable playing conditions and contributing to the urban heat island effect. In this study the possibilities of a subsurface water storage and capillary irrigation system for evaporative cooling of artificial turf based on rainwater capture, storage and reuse are investigated. The system consists of an 85 mm water-retention subbase with capillary columns, a capillary shockpad and a natural infill. First, a laboratory experiment was conducted to test the evaporative potential of the system with different types of infill and artificial turf. Next, four research plots were designed in Amsterdam, The Netherlands, which consisted of natural grass, conventional artificial turf and two versions of the cooled artificial turf system (non-infill and standard). Evaporation from the cooled artificial turf reached maximum values around 4 mm/d during summer and surface temperatures were significantly lower than at the conventional artificial turf. Rainwater was stored below the fields. By combining these functions, these fields can help cities adapt to climate change.
城市人造草坪的气候适应解决方案:集成雨水储存和蒸发冷却功能
由于人口密度增大对室外体育设施的压力增加,城市中人造草皮场地的数量也随之增加。这些场地的缺点是热量条件的变化和雨水渗透的减少。人造草皮的表面温度会非常高,导致不利的比赛条件,并造成城市热岛效应。本研究调查了基于雨水收集、储存和再利用的地下蓄水和毛细管灌溉系统用于人工草皮蒸发冷却的可能性。该系统由带有毛细管柱的 85 毫米蓄水底层、毛细管减震垫和天然填充物组成。首先,进行了一项实验室实验,以测试该系统在使用不同类型的填充物和人造草坪时的蒸发潜力。接着,在荷兰阿姆斯特丹设计了四块研究地,其中包括天然草坪、传统人造草坪和两种冷却人造草坪系统(非填充物和标准)。冷却人造草坪的蒸发量在夏季达到最大值,约为 4 毫米/天,地表温度明显低于传统人造草坪。雨水被储存在场地下方。通过结合这些功能,这些场地可以帮助城市适应气候变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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