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The effect of interactions between rainfall patterns and land-cover change on flood peaks in upland peatlands

机译:降雨模式与土地覆盖变化与洪水山区洪水山区之间的影响

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Flood processes in catchments are driven by a combination of rainfall and landscape characteristics. Upland peatlands are source areas of flooding but there is lack of understanding of how different rainfall intensities and temporal patterns may interact with land-cover configurations to influence flood peaks. Using spatially distributed (SD-) TOPMODEL we investigated these interactions for a case study peatland catchment. For each of four rainfall depths ranging from 20 mm to 50 mm, four storm rainfall patterns were applied (rainfall that was uniform, rainfall with an early peak intensity during the storm, middle peak and late peak). Late peak rainfall resulted in the highest river flow peaks at the catchment outlet studied, followed by middle and early rainfall peak patterns, while uniform rainfall through time gave the lowest flow peaks. A key factor was synchroneity of overland flow movement and concentration. The impact on river flow peaks of land-cover change on riparian zones and on gentle gradient slopes was larger than that for other parts of the catchment under different rainfall intensities and patterns. The impacts of land-cover change on proportional change in flood peaks in these sensitive areas became smaller when rainfall intensity increased, but absolute changes in flow peaks became larger. Land-cover change in sensitive areas under middle and late peak rainfall had a larger impact on river flow peaks than for early peak rainfall. It was possible to identify the 'worst' rainfall patterns for a particular case of land-cover change which may be useful for practitioners to help manage expectations of flood response to nature-based solutions.
机译:集水中的洪水过程是通过降雨和景观特征的组合驱动的。 Uppland Peatlands是洪水的源区,但缺乏了解不同的降雨强度和时间模式如何与土地覆盖配置相互作用以影响洪水峰。使用空间分布(SD-)Topmodel,我们调查了案例研究泥炭地集水区的这些相互作用。对于四个降雨量的每一个,范围为20毫米至50毫米,施加四种风暴降雨模式(降雨量是均匀的,暴风雨期间的降雨,中峰和晚峰)。晚峰降雨导致了集水区出口的最高河流峰值,其次是中午和早日降雨峰模式,而通过时间均匀降雨量给出了最低的流量峰值。一个关键因素是陆上流动运动和浓度的同步性。在河岸区和温和梯度斜坡上对陆地覆盖变化的影响大于不同降雨强度和模式下集水区的其他部分的影响。当降雨强度增加时,当降雨强度增加时,陆地覆盖变化对洪水峰比例变化的影响变小,但流量峰值的绝对变化变得更大。中期峰值降雨下的敏感地区的陆地覆盖变化对河流峰的影响大于早期降雨量。有可能识别针对特定土地覆盖变革的“最差”的降雨模式,这可能对从业者有用,以帮助管理对基于自然的解决方案的洪水应对的预期。

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