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Scaling Issues in Design Flood Estimation for Ungauged Catchments: A Case Study for Eastern Australia

机译:Ungauged集水区设计洪水估算中的扩展问题 - 以澳大利亚东部为例

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Design flood estimation in smaller ungauged catchments is often required in hydrologic design of water infrastructures such as bridge, culverts and water retention weirs. Regional flood estimation methods, which are generally developed using data from medium to large catchments, are often applied to very small catchments. The question often remains unresolved whether these regional flood estimation methods are applicable to very small catchments since independent testing cannot be undertaken in most situations due to absence of recorded streamflow data for these very small sized catchments. This paper uses data from 429 catchments in eastern states of Australia, which are grouped into a number of class intervals based on catchment size. It has been found that smaller catchments generally produce a larger unit area runoff. A method is developed to account for this incremental unit runoff in the developed regional flood prediction equations.
机译:在桥梁,涵洞和水保留堰等水资源基础设施的水文设计中,通常需要在较小的未凝固集水区中的设计洪水估算。区域洪水估计方法通常使用中等到大集水区的数据开发,通常应用于非常小的集水区。如果由于这些非常小型集水区的缺失,在大多数情况下不能在大多数情况下不能进行独立测试,这些区域洪水估计方法是否仍未得到解决。本文使用来自澳大利亚东部状态的429个集水区的数据,该数据基于集水区分组成多个课程间隔。已经发现,较小的流域通常产生更大的单位区域径流。开发了一种方法,以解释开发的区域洪水预测方程中的增量单位径流。

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