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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 >Addressing the contribution of climate and vegetation cover on hillslope denudation, Chilean Coastal Cordillera (26 degrees-38 degrees S)
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Addressing the contribution of climate and vegetation cover on hillslope denudation, Chilean Coastal Cordillera (26 degrees-38 degrees S)

机译:解决气候和植被覆盖对山坡裸露的贡献,智利沿海科尔德拉(26度-38度)

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摘要

The Earth surface is modulated by interactions among tectonics, climate, and biota. The influence of each of these factors on hillslope denudation rates is difficult to disentangle. The Chilean Coastal Cordillera offers a strong climate and vegetation gradient from arid and unvegetated in the North to humid and vegetated in the South. A similar (convergent) plate tectonic boundary lies to the West of the Coastal Cordillera. We present eight depth profiles analyzed for in situ-produced cosmogenic Be-10 in four study areas. These profiles reveal denudation rates of soil-mantled hillslopes and the depth of mobile layers. Depth profiles were investigated from both S- and N-facing mid-slope positions. Results indicate the depth of the mobile layers in the four study areas increase from N to S in latitude. When mixing is present in the mobile layers they are completely mixed. In the S- and N-facing hillslopes of each study area, mid-slope positions do not show a systematic change in depth of the mobile layers nor in denudation rates based on cosmogenic depth profiles. From N to S in latitude, modelled denudation rates of hillslopes increase from similar to 0.46 to similar to 5.65 cm/kyr and then decrease to similar to 3.22 cm/kyr in the southernmost, highest vegetation cover, study area. Calculated turnover times of soils decrease from 30 to similar to 11 kyr and then increase to similar to 22 kyr. In this work, the increasing denudation rates are attributed to increasing mean annual precipitation from N to S. However, despite the ongoing increase in precipitation from N to S, the denudation rate in the southernmost location does not continue to increase due to the protective nature of increasing vegetation cover. This indicates a vegetation induced non-linear relationship with denudation rates. (C) 2018 Elsevier B.V. All rights reserved.
机译:地球表面被构造,气候和生物群之间的相互作用调节。这些因素对山坡剥夺率的影响很难解开。智利沿海科德拉德拉提供了强烈的气候和植被梯度,从干旱和北方推动到潮湿和植被。类似的(收敛的)板构造边界位于沿海科德娘的西部。我们在四个研究领域出现了八种深度型材,分析了原位的宇宙中的宇宙原位的宇宙素。这些型材揭示了土墩山坡和移动层深度的剥蚀速率。研究了深度曲线,从S和正面的中间斜率位置进行了研究。结果表明,四个研究区域中的移动层的深度从纬度的n到s增加。当混合存在于移动层中时,它们完全混合。在每个研究区域的S-和正面山坡中,中坡位置不会显示移动层的深度的系统变化,也不是基于宇宙的深度剖面的剥落速率。从N到S的纬度,山坡的建模剥削速率从类似于0.46到类似于5.65厘米/ kyr,然后减少到南端最高的植被覆盖,研究区域的3.22厘米/ kyr。计算出的土壤的周转时间从30减少到类似于11 kyr,然后增加到22kyr。在这项工作中,越来越多的剥削率归因于N到S的平均年降水量增加。然而,尽管从N到S降水持续增加,但由于保护性质,最南端位置的剥蚀率不会继续增加增加植被覆盖。这表明植被诱导与剥蚀速率的非线性关系。 (c)2018年elestvier b.v.保留所有权利。

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