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A quantitative analysis for geomorphic indices of longitudinal river profile: a case study of the Choushui River, Central Taiwan

机译:纵向河流剖面地貌指标的定量分析-以台湾中部潮水河为例

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摘要

Due to the plate movement is considerably slow, the human history record is too short to register landscape change for such a long time scale. However, longitudinal river profile can display watershed landscape characteristics. Therefore, this paper applies a quantitative analysis of geomorphic indices coupled with some mathematical models for the Choushui River and its six tributaries, including the gradient index and slope-area relationship. The abnormally high SL and SL/k values indicated that a decreasing trend from lower- to mid-stream areas and south Lishan fault was higher than north Lishan fault on the upstream areas, and the result of slope-area relationship also indicated that the regression line of the upper and lower steam exhibit an obvious right-shift nearby Lishan fault, could be explained by geodynamic models of active deformation in Taiwan area. This study also found that the abnormally high values of SL/k were affected by river and fault intersecting to form a high angle or perpendicular and the abnormally low values of SL/k were affected by river along with a fault or form a low angle, but the channel of Junda River along with Lishan fault is opposite. Based on quantitative results of these geomorphology indices, this study suggests that the important factor influencing landscape of the Choushui River watershed is tectonic uplift.
机译:由于板块运动非常缓慢,因此人类历史记录太短,无法记录如此长时间的景观变化。但是,纵向河流剖面可以显示流域的景观特征。因此,本文对潮水河及其六个支流的地貌指标进行定量分析,并结合一些数学模型,包括坡度指数和坡度-面积关系。异常高的SL和SL / k值表明,下游至中游地区和南部Li山断裂带的下降趋势高于上游北部Li山断裂带,并且斜率-面积关系的结果也表明回归台湾地区活动变形的动力学模型可以解释上,下蒸汽线在山断裂带附近有明显的右移。这项研究还发现,SL / k的异常高值受河流和断层相交而形成大角度或垂直,而SL / k的异常低值受河流影响而与断层或形成低角度相交,但军达河与Li山断裂的通道是相反的。根据这些地貌指标的定量结果,研究表明影响潮水河流域景观的重要因素是构造隆升。

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