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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >The topographic controls on the decadal-scale erosion rates in Qilian Shan Mountains, NW China
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The topographic controls on the decadal-scale erosion rates in Qilian Shan Mountains, NW China

机译:西北祁连山地区年代际侵蚀速率的地形控制

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The relationships between climate, topography, and erosion are significant in understanding landscape evolution. In order to study this relationship in a tectonically active landscape, the details of 11 drainage basins were collected from Qilian Shan Mountains. Decadal-scale erosion rates, including the mechanical load and solute load contributions, are estimated in natural conditions. The calculated erosion rates show that the average erosion rate of Qilian Shan Mountains is about 0.08 mm/yr, while the variation of annual erosion rates within each basin is significant. The changes of topography and climate, which potentially control erosion rates, are also employed in this paper for correlating analyses. Correlation analyses indicate that erosion rates are more closely correlated with topographic variables, such as mean local relief and mean slope, than all of the climatic variables; and mean local relief and decadal-scale erosion rates show a linear relationship in these tectonically active mountains. However, some topographic variables like basin area and elongation ratio exert limited influence on erosion rates; while others, such as basin elevation, basin relief and basin roughness, show poor correlation. The results indicate that topographic control, like aspects of the local terrain steepness, plays the most important role in spatial distribution of decadal-scale erosion rates throughout Qilian Shan Mountains. Under topographic control, some climatic variables, like discharge and runoff, however, could account for the significant variation of annual erosion rates in individual basin. When comparing erosion rates on different timescales, we found that the decadal-scale erosion rates are lower than the long-term river incision rates, as well as the exhumation rates during early and middle Miocene. The change to more arid climatic condition since the middle Miocene combining with tectonic uplift should attribute to the inconsistent erosion rates over different timescales in Qilian Shan Mountains. (c) 2010 Elsevier B.V. All rights reserved.
机译:气候,地形和侵蚀之间的关系对于理解景观演变具有重要意义。为了研究构造活动景观中的这种关系,从祁连山山脉收集了11个流域的详细资料。在自然条件下估算十年代尺度的腐蚀速率,包括机械负荷和溶质负荷贡献。计算得出的侵蚀率表明,祁连山的平均侵蚀率约为0.08 mm / yr,而每个盆地内年侵蚀率的变化却很大。本文还采用了可能控制侵蚀速率的地形和气候变化来进行相关分析。相关分析表明,与所有气候变量相比,侵蚀速率与地形变量(例如平均局部起伏和平均坡度)的相关性更高。在这些构造活跃的山区中,平均局部起伏和年代际尺度的侵蚀率显示出线性关系。但是,一些地形变量,如流域面积和延伸率对侵蚀率的影响有限;而其他方面,如盆地高程,盆地起伏和盆地粗糙度,则显示出很差的相关性。结果表明,地形控制与局部地形陡峭性一样,在整个祁连山山区年代尺度侵蚀率的空间分布中起着最重要的作用。然而,在地形控制下,某些气候变量,如流量和径流量,可以解释单个流域年侵蚀率的显着变化。在比较不同时间尺度的侵蚀率时,我们发现年代际尺度的侵蚀率低于中长期的河流切入率,以及中新世早期和中期的掘尸率。中新世中期以来与构造隆升相结合,使气候条件更加干旱,这应归因于祁连山山区不同时间尺度的侵蚀速率不一致。 (c)2010 Elsevier B.V.保留所有权利。

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