首页> 外文期刊>International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences >WATERSHED TOPOGRAPHIC CHARACTERISTICS AND CAUSES ANALYSIS OF THE UPPER REACHES OF THE WEIHE RIVER
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WATERSHED TOPOGRAPHIC CHARACTERISTICS AND CAUSES ANALYSIS OF THE UPPER REACHES OF THE WEIHE RIVER

机译:渭河上游的流域地形特征及其原因分析

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The morphology of watershed is the most intuitive information carrier to reflect regional tectonic activity, surface erosion and morphologic evolution. Active tectonic and fluvial system play a significant role in patterns and characters of regional morphology. Taking twenty-nine tributaries of the upper reaches of the Weihe River as the main study objects, four parameters, such as gully density (GD), basin topography ratio (BTR), roundness ratio (RR), river longitudinal profile fitting exponent (RLPFE), etc., were used to quantitatively analyse the topographic characteristics in this area. To reveal the main cause of the characteristics, the hypsometric integral (HI) were also applied in this area. The results showed that: (1) There is a positive linear function between basin topography ratio (BTR) and mean slope, and the mean values of four indexes in northern channels are smaller than southern channels; (2) The mean HI value is 0.44, indicating that the main topographic characteristics of this area is in maturity, which is in the transitional period of adjustment of the deep erosion and uplift movement; (3) The main cause of this topographic changes is tectonic. These results are consistent with other geological background, and will enrich regional basin morphology research and tectonic activity evaluation, provide important basic data for regional disaster prediction and analysis of soil and water loss.
机译:流域的形态是最直观的信息载体,以反映区域构造活动,表面侵蚀和形态学进化。活跃构造和河流系统在区域形态的模式和特征中起着重要作用。以渭河上游的二十九条支流作为主要研究对象,四个参数,如沟壑密度(GD),盆地形貌比(BTR),圆度(RR),河流纵向轮廓拟合指数(RLPFE (等)用于定量分析该区域的地形特征。为了揭示特性的主要原因,在该地区也应用了低位数积分(HI)。结果表明:(1)盆地形貌比(BTR)和平均斜率之间存在正线性函数,北极通道中的四个指标的平均值小于南部通道; (2)平均值为0.44,表明该地区的主要地形特性是成熟度,这是在深度侵蚀和隆起运动的调整的过渡期; (3)这种地形变化的主要原因是构造。这些结果与其他地质背景一致,并将丰富区域盆地形态研究和构造活动评估,为区域灾害预测和土壤和水分分析提供重要的基本数据。

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