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Modeling the sediment yield and the impact of vegetated filters using an event-based soil erosion model—a case study of a small Canadian watershed

机译:使用基于事件的土壤侵蚀模型对沉积物产量和植被过滤器的影响进行建模-以一个加拿大小流域为例

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This paper presents the first application of the event-based MHYDAS-Erosion model to a small agricultural watershed under temperate climate conditions (Quebec, Canada). Simulation results based on observed and synthetic rainfall events revealed a bimodal behaviour of sediment yield. During high-intensity rainfall events, most of the sediments reaching the watershed outlet originate from cropland. Meanwhile, during low-intensity events, most of the sediments come from the drainage network. Furthermore, simulation results show that implementation of 5-m and 20-m wide vegetated filters throughout the watershed or at the edge of the most problematic fields (4% of the total fields) could reduce soil loss by 52% and 31%, respectively. The modeling framework could be used for the design and location of beneficial management practices such as grass strips and riparian zones Copyright © 2016 John Wiley & Sons, Ltd.
机译:本文介绍了基于事件的MHYDAS侵蚀模型在温带气候条件下(加拿大魁北克)的小型农业流域的首次应用。基于观测到的和合成降雨事件的模拟结果显示了沉积物产量的双峰行为。在高强度降雨事件中,到达集水区出口的大部分沉积物都来自农田。同时,在低强度事件中,大部分沉积物来自排水网络。此外,模拟结果表明,在整个流域或问题最严重的田间(占田间总数的4%)安装5m和20m宽的植被过滤器,分别可减少52%和31%的土壤流失。该建模框架可用于设计和定位有益的管理实践,例如草条和河岸带。版权所有©2016 John Wiley&Sons,Ltd.。

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