首页> 外文期刊>Catena: An Interdisciplinary Journal of Soil Science Hydrology-Geomorphology Focusing on Geoecology and Landscape Evolution >Effects of alpine swamp wetland change on rainfall season runoff and flood characteristics in the headwater area of the Yangtze River
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Effects of alpine swamp wetland change on rainfall season runoff and flood characteristics in the headwater area of the Yangtze River

机译:高山沼泽湿地变化对长江源头地区雨季径流和洪水特征的影响

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The effects of changes in alpine swamp wetland (ASW) on rainfall season runoff and flood characteristics have not been quantified adequately in the headwater area of the Yangtze River (HYR). To address this, we focus on detecting changes in ASW based on remote sensing data. In particular, we analyzed the effects of ASW on runoff (both runoff and runoff coefficient) and flood characteristics (i.e., peak flow, rising time, duration and flood runoff coefficient) during the rainfall season based on observed runoff and climate data. Our results indicate that the area of ASW decreased by 28.22% and 30.54% at Zhimenda (ZMD) and Tuotuohe (TTH), respectively, from 1975 to 2004. Moreover, 76% and 71% of the decreases at ZMD and TTH, respectively, occurred during the period from 1990 to 2004. Both runoff and the runoff coefficients decreased at ZMD and increased at TTH with decreasing ASW in the rainfall season; we attribute this to the variability in runoff mechanisms. The effects of ASW on runoff and runoff coefficients were more pronounced at ZMD than at TTH. A slightly lower maximum peak flow and a greater frequency of moderate and small peak flows were observed at ZMD. Conversely, maximum peak flow increased and the frequency of maximum and moderate peak flows increased at TTH. Flood events increased at both ZMD and TTH, whereas both the rising time and duration decreased at both sites. Overall, the volume of snowmelt water increased and the ability to conserve water decreased in response to decreased ASW and permafrost were responsible for the observed changes in flood characteristics. (C) 2014 Elsevier B.V. All rights reserved.
机译:在长江源头地区,尚未充分量化高山沼泽湿地(ASW)的变化对雨季径流和洪水特征的影响。为了解决这个问题,我们着重于基于遥感数据检测反潜模式的变化。具体而言,我们根据观测到的径流和气候数据分析了雨季期间ASW对径流(径流和径流系数)和洪水特征(即峰值流量,上升时间,持续时间和洪水径流系数)的影响。我们的结果表明,从1975年到2004年,直门达(ZMD)和Tu陀河(TTH)的ASW面积分别减少了28.22%和30.54%。此外,ZMD和TTH的分别减少了76%和71%,降雨季节的径流和径流系数都在ZMD下降,在TTH径流和径流系数都随着ASW的减少而增加。我们将其归因于径流机制的可变性。在ZMD上,ASW对径流和径流系数的影响比在TTH上更为明显。在ZMD处观察到稍低的最大峰值流量和较高的中小流量峰值频率。相反,在TTH,最大峰值流量增加,最大和中等峰值流量的频率增加。 ZMD和TTH的洪水事件均增加,而两个地点的上升时间和持续时间均减少。总体而言,随着ASW和多年冻土层的减少,融雪水的体积增加,而节水能力降低,这是所观察到的洪水特征变化的原因。 (C)2014 Elsevier B.V.保留所有权利。

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