Analysis of bifurcation characteristics for the Seolmacheon experimental catchment based on variable scale of source basin

Joo-Cheol Kim
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引用次数: 1

Abstract

This study analyzes bifurcation characteristics of the Seolmacheon experimental catchment by extracting the shape variation of channel network due to variable scale of source basin or threshold area. As the area of source basin decreases, a bifurcation process of channel network occurs within the basin of interest, resulting in the elongation of channel network (increase of total channel length) as well as the expansion of channel network (increase of the source number). In the former case, the elongation of channel reaches overwhelms the generation of sources, whereas, in the latter case, the drainage path network tends to fulfill the inner space of the basin of interest reflecting the opposite trend. Therefore, scale invariance of natural channel network could be expressed to be a balanced geomorphologic feature between the elongation of channel network and the expansion of channel network due to decrease of source basin scale. The bifurcation structure of the Seolmacheon experimental catchment can be characterized by the coexistence of the elongation and scale invariance of channel network, and thus a further study is required to find out which factor is more crucial to rainfall transformation into runoff.
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基于变尺度源盆地的西马川实验流域分岔特征分析
本研究通过提取不同源区或阈值区域尺度下河道网络形态的变化,分析了西马川实验流域的分岔特征。随着源盆地面积的减小,目标流域内河道网络发生分岔过程,导致河道网络延伸(河道总长度增加)和河道网络扩展(河道源数量增加)。前一种情况下,河道河段的延伸压倒了水源地的生成,而后一种情况下,排水路径网络倾向于满足感兴趣盆地的内部空间,反映了相反的趋势。因此,天然河道网络的尺度不变性可以表述为一种因源盆地规模减小而导致河道网络延伸和扩张的平衡地貌特征。西马川实验流域的分岔结构具有沟道网络伸长性和尺度不变性共存的特征,哪一个因素对降雨转化为径流更为关键,需要进一步研究。
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