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An interpretation of the relationship between dominant rainfall-runoff processes and the shape of flow duration curve by using data-based modeling approach

机译:基于数据的建模方法解释主要降雨径流过程与持续时间曲线形状之间的关系

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Seeking a process-based understanding for the shape of the flow duration curve (FDC) uniqueness to a catchment, this study applied a data-based rainfall-runoff modeling approach in perennial, intermittent and ephemeral catchments which would have different dominant rainfall-runoff processes. Using this approach, we identified (1) the number of dominant runoff processes in a catchment, (2) rainwater storage in all processes, (3) infiltrations and return flows between the processes. We then identified reasons for different FDC shapes in the catchments in terms of identified dominant processes. Our results showed a humid climate with lower aridity index ( AI ) would cause perennial flow created by the combination of four dominant processes of fast flow, faster and slower interflows and base flow components. On the contrary, an arid climate with higher AI would cause ephemeral flow created by the combination of two dominant processes of fast and faster interflow components. These indicate a FDC in arid catchments would become ephemeral because of less dominant runoff processes occurring only near ground surface, whereas a humid catchment would become perennial because of more dominant runoff processes occurring from near ground surface to deep underground. These findings contribute in estimating FDCs in ungauged catchments from climatic conditions.
机译:为了对流域的流动持续时间曲线(FDC)的形状寻求基于过程的理解,本研究在多年生,间歇性和短暂流域采用了基于数据的降雨径流建模方法,该方法将具有不同的主要降雨径流过程。使用这种方法,我们确定了(1)流域主要径流过程的数量,(2)所有过程中的雨水存储,(3)各个过程之间的渗透和回流。然后,我们根据确定的主导过程,确定了流域内FDC形状不同的原因。我们的研究结果表明,干旱指数(AI)较低的潮湿气候会导致常年流动,这是由快速流动,快速流动和缓慢流动以及基流分量这四个主要过程的组合产生的。相反,具有较高AI的干旱气候将导致快速流动的两个主要过程的结合而产生短暂的流动。这些表明,由于仅在地表附近发生的较少占主导地位的径流过程,干旱流域的FDC会变得短暂,而由于从近地表到地下深处发生的占主导地位的径流过程,潮湿流域将变得多年生。这些发现有助于估算不受气候影响的流域的FDC。

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