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Seeing the landscape for the trees: metrics to guide riparian shade management in river catchments

机译:看到树木的风景:指导流域河岸遮阳管理的指标

摘要

Rising water temperature (Tw) due to anthropogenic climate change may have serious consequences for river ecosystems. Conservation and/or expansion of riparian shade could counter warming and buy time for ecosystems to adapt. However, sensitivity of river reaches to direct solar radiation is highly heterogeneous in space and time, so benefits of shading are also expected to be site specific. We use a network of high-resolution temperature measurements from two upland rivers in the UK, in conjunction with topographic shade modelling, to assess the relative significance of landscape and riparian shade to the thermal behaviour of river reaches. Trees occupy 7% of the study catchments (comparable with the UK national average) yet shade covers 52% of the area and is concentrated along river corridors. Riparian shade is most beneficial for managing Tw at distances 5 to 20 km downstream from the source of the rivers where discharge is modest, flow is dominated by near-surface hydrological pathways, there is a wide floodplain with little landscape shade, and where cumulative solar exposure times are sufficient to affect Tw. For the rivers studied, we find that approximately 0.5 km of complete shade is necessary to off-set Tw by 1°C during July (the month with peak Tw) at a headwater site; whereas 1.1 km of shade is required 25 km downstream. Further research is needed to assess the integrated effect of future changes in air temperature, sunshine duration, direct solar radiation and downward diffuse radiation on Tw to help tree planting schemes achieve intended outcomes.
机译:人为气候变化引起的水温升高可能对河流生态系统产生严重影响。保护和/或扩大河岸阴影可以抵御变暖并为生态系统适应提供时间。但是,河段对太阳直射辐射的敏感性在时间和空间上高度不均一,因此遮光效果也将因地点而异。我们使用来自英国两条高地河流的高分辨率温度测量网络,结合地形阴影建模,来评估景观和河岸阴影对河段热行为的相对重要性。树木占研究集水区的7%(与英国全国平均水平相当),但树荫覆盖了52%的面积,并且集中在河流走廊上。沿河阴影最有利于在下游河源下游5至20 km处管理Tw,下游河源流量适中,流量主要由近地表水文路径控制,洪泛区较宽,几乎没有景观阴影,并且累积了太阳暴露时间足以影响Tw。对于所研究的河流,我们发现在上游源头地区,在7月(Tw达到峰值的月份),将Tw偏移1°C大约需要0.5 km的完全阴影。而下游25公里需要1.1公里的阴影。需要进一步的研究来评估未来气温,日照持续时间,太阳直射辐射和向下扩散辐射对Tw的综合影响,以帮助植树计划达到预期效果。

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