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首页> 外文期刊>Catena: An Interdisciplinary Journal of Soil Science Hydrology-Geomorphology Focusing on Geoecology and Landscape Evolution >Badlands in marl lithologies: a field guide to soil dispersion, subsurface erosion and piping-origin gullies. (Special Issue: Updating badlands research.)
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Badlands in marl lithologies: a field guide to soil dispersion, subsurface erosion and piping-origin gullies. (Special Issue: Updating badlands research.)

机译:泥岩岩性中的荒地:土壤扩散,地下侵蚀和原始管道的野外指南。 (特刊:更新荒地研究。)

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摘要

Field scientists studying badland processes in Mediterranean and Semi-arid climates require assurances that the material in which gullies are presented is not dispersive. A dispersive context means; first, infiltration rates may be radically changing in very short periods due to swelling and deflocculation of clays; second, surface crusts could be the result of translocation of sodium into subsurface positions; third, rills may be formed or at least exacerbated by shallow subsurface erosion; fourth, large gullies with substantial up-channel headcuts, including so-called 'bank gullies', may have formed because subsurface pipes have collapsed; and fifth, that network connectivity and evolution may be principally internal, being effected by subsurface pipe capture network integration; and most importantly, the bulk of the sediment moving around in the landscape is not being lost from the surface. This paper presents a decision-support tool to assist the effective diagnosis of a landscape's principal genetic process suite. The soil's behaviour in response to its geochemistry in marls with high exchangeable sodium percentages (ESPs) is outlined in simple terms with minimum use of laboratory or field chemical investigations. Using examples the paper then presents a simple set of form indicators that can be used in the field to diagnose the possibility that subsurface process are dominating landscape erosion. Surface crust character, ephemeral rills, and large subsurface tunnel settings are explained and classified. In a final section, the geomorphological implications of piping in gullied landscapes are explored by reference to the literature on connectivity.
机译:研究地中海和半干旱气候中的荒地过程的现场科学家要求确保存在沟壑的物质不是分散的。分散上下文是指;首先,由于粘土的溶胀和抗絮凝作用,在很短的时间内渗透率可能会发生根本变化。第二,表面结皮可能是钠易位到地下位置的结果。第三,浅层地下侵蚀可能形成或至少加剧小溪。第四,由于地下管道坍塌,可能形成了带有大量向上通道顶部的大型沟渠,包括所谓的“河岸沟渠”。第五,网络连接和演进可能主要是内部的,这受到地下管道捕获网络集成的影响;最重要的是,景观中移动的大部分沉积物都不会从地表流失。本文提出了一种决策支持工具,以帮助有效诊断景观的主要遗传过程套件。用最少的实验室或野外化学调查以简单的方式概述了土壤在高可交换钠百分比(ESPs)的泥土中对其地球化学的响应行为。然后,通过使用示例,本文介绍了一组简单的形式指示器,可在现场使用该模型指示器来诊断地下过程主导景观侵蚀的可能性。解释并归类了地壳特征,短暂的小溪和较大的地下隧道设置。在最后一节中,参考有关连通性的文献探讨了沟壑景观中管道的地貌学意义。

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