...
【24h】

Strength matters: Resisting erosion across upland landscapes

机译:实力很重要:抵抗普通景观的侵蚀

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Soil-covered upland landscapes comprise a critical part of the habitable world and our understanding of their evolution as a function of different climatic, tectonic, and geologic regimes is important across a wide range of disciplines. Soil production and transport play essential roles in controlling the spatial variation of soil depth and therefore hillslope hydrological processes, distribution of vegetation, and soil biological activity. Field-based confirmation of the hypothesized relationship between soil thickness and soil production is relatively recent, however, and here we quantify a direct, material strength-based influence on variable soil production across landscapes. We report clear empirical linkages between the shear strength of the parent material (its erodibility) and the overlying soil thickness. Specifically, we use a cone penetrometer and a shear vane to determine saprolite resistance to shear. We find that saprolite shear strength increases systematically with overlying soil thickness across three very different field sites where we previously quantified soil production rates. At these sites, soil production rates, determined from in situ produced beryllium-10 (Be-10) and aluminum-26 (Al-26), decrease with overlying soil thickness and we therefore infer that the efficiency of soil production must decrease with increasing parent material shear strength. We use our field-based data to help explain the linkages between biogenic processes, chemical weathering, hillslope hydrology, and the evolution of the Earth's surface. (c) 2019 John Wiley & Sons, Ltd.
机译:土壤覆盖的旱地景观包括可居住世界的关键部分,以及我们作为不同气候,构造和地质制度的函数的对其演变的理解是在各种各样的学科中都很重要。土壤产量和运输在控制土壤深度的空间变化以及山坡水文过程,植被分布和土壤生物活性方面的基本作用。现场基于地基确认土壤厚度和土壤生产之间的假设关系是相对近期的,然而,我们在景观中量化了一种直接的材料力量的影响因差土壤生产。我们报告了母材剪切强度(其粗糙)和上覆土壤厚度之间的明显实证键。具体地,我们使用锥形孔径计和剪切叶片来确定剪切的凝固性抗性。我们发现Saprolite剪切强度系统地随着三个非常不同的田间覆盖的土壤厚度增加,我们以前量化了土壤生产率。在这些网站上,土壤生产率从原位产生的铍-10(BE-10)和铝-26(AL-26),随着​​土壤厚度的覆盖率降低,因此我们推断土壤生产的效率必须随着增加而减少母材剪切强度。我们使用基于现场的数据来帮助解释生物工艺,化学风化,山坡水文和地球表面的演变之间的联系。 (c)2019 John Wiley&Sons,Ltd。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号