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Modelling water stress to urban amenity grass in Manchester UK under climate change and its potential impacts in reducing urban cooling

机译:在气候变化下模拟英国曼彻斯特城市生活用草的水分胁迫及其对减少城市制冷的潜在影响

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It is well known that the evapotranspiration of vegetation such as grass can help to reduce the urban heat island. However, the cooling can be reduced or lost in summer droughts, when soils dry out, an effect that is likely to be more pronounced and occur for longer as climate change proceeds. Here we modelled the likely effect of climate change on the droughting of amenity grass in Greater Manchester, UK. We used a simple Bucket model, with data on Greater Manchester's soils, and its current and anticipated precipitation and potential evapotranspiration. This was experimentally validated by measuring the weight loss of ryegrass turves. The results show a dramatic increase in drought, especially in the drier south west of the conurbation, with someareas exhibiting reduced evapotranspiration for 3-5 months by the 2080s, and evapotranspiration reducing by over a half for 1-2 months, in an average year. Such changes could have large effects on the urban heat island, resulting in increases in surfacetemperatures of up to 15°C in areas where grass accounts for a large proportion of the surface cover. The problem could be overcome by irrigation of grassland so that it will continue to provide cooling, and it is shown that runoff from large rainfall events could in theory provide adequate irrigation water, particularly in highly built-up areas.
机译:众所周知,草等植被的蒸散有助于减少城市的热岛。但是,当土壤干out时,夏季干旱会减少或减少冷却,随着气候变化的进行,这种影响可能会更加明显并持续更长时间。在这里,我们模拟了气候变化对英国大曼彻斯特的便利草干旱的可能影响。我们使用了一个简单的Bucket模型,其中包含大曼彻斯特土壤的数据,当前和预期的降水以及潜在的蒸散量。通过测量黑麦草皮的重量损失,通过实验验证了这一点。结果表明,干旱急剧增加,特别是在城市西南部的干旱地区,到2080年代某些地区的蒸散量减少了3-5个月,平均每年1-2个月的蒸散量减少了一半以上。这种变化可能会对城市的热岛产生巨大影响,导致草占表面覆盖物很大一部分的地区地表温度升高至15°C。可以通过灌溉草地来解决该问题,以便继续提供降温作用,并且显示出大降雨事件的径流理论上可以提供充足的灌溉水,尤其是在高集约地区。

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