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首页> 外文期刊>Journal of Urban and Environmental Engineering >MODELLING THE IMPACTS OF WILDFIRE ON SURFACE RUNOFF IN THE UPPER UBERABINHA RIVER WATERSHED USING HEC-HMS
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MODELLING THE IMPACTS OF WILDFIRE ON SURFACE RUNOFF IN THE UPPER UBERABINHA RIVER WATERSHED USING HEC-HMS

机译:用HEC-HMS模拟野生动植物对上层小流域河流流域径流的影响

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Fire significantly affects hydrological processes in the waters hed because it changes land cover and it creates a double layer of hydrophobic soil co vered with ash, increasing the surface runoff and the production of debris flow in the basin. Assessing the impacts of fire on overland flow requires the use of modeli ng softwares capable of simulating post-fire discharge. Because a total of 760 wildfire s were detected in the Upper Uberabinha River subbasin in the last nine years, it is o f dire importance to understand the consequential impacts of fire on hydrological pr ocesses in this basin. In this study, the HEC-HMS model was used to evaluate post-fire di scharge in the Upper Uberabinha River watershed. Model was previously calibrated and validated using two representative storms observed in the wet season. After calibra tion, the 5-, 10-, 25-, 50-, 100-, and 200-year storms were simulated in scenarios with incr easing burn severity. The calibrated model performed well in the prediction of discha rge values at a daily basis (0% difference in peak tim ing; 0% difference in peak flow ; 31.8% BIAS ). Peak flow and discharge volume increased and peak timing shifted to the left as severity of burn increased. The highest increment in peak discharge was 74. 7% for the 10-year storm, whereas overall discharge volume raised in up to 31.9% f or the 50-year storm, both after simulation in the mos t fire-impacted scenario. The results reveal that fire highly affects hydrological characteristics, e.g. peak timing a nd flow and discharge volume, in the Upper Uberabinha River watershed. The authors su ggest further investigations concerning the impacts of wildfire on other proc esses, such as the production of debris flow in the basin.
机译:火灾显着影响着河床水域的水文过程,因为它改变了土地覆盖,并形成了一层覆盖灰烬的疏水性土壤双层层,增加了地表径流和盆地中泥石流的产生。评估火灾对陆上水流的影响需要使用能够模拟火灾后排放的建模软件。由于在过去的九年中,在Uberabinha上游流域共发现了760场野火,因此了解火势对该流域水文过程的影响至关重要。在这项研究中,HEC-HMS模型用于评估上乌贝拉宾哈河流域火灾后的冲刷。先前已使用在雨季观测到的两次典型风暴对模型进行了校准和验证。校准后,模拟了5年,10年,25年,50年,100年和200年的暴风雨,这种情况在烧伤严重程度不断提高的情况下进行。校准的模型在每天的离散值预测中表现良好(峰值时间的差异为0%;峰值流量的差异为0%; BIAS为31.8%)。随着燃烧严重程度的增加,峰值流量和排放量增加,峰值时间移至左侧。在受大火影响的情况下进行模拟后,十年暴风雨的峰值排放量最高增幅为74. 7%,而总排放量在50年暴风雨或50年暴风雨中均上升了31.9%。结果表明,火灾严重影响了水文特征,例如乌贝拉比尼亚河上游流域的高峰时间和流量与流量。作者就野火对其他过程的影响进行了进一步的调查,例如流域内泥石流的产生。

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