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A geophysical analysis of hydro-geomorphic controls within a headwater wetland in a granitic landscape, through ERI and IP

机译:通过ERI和IP对花岗岩景观中源头湿地内水-地貌控制的地球物理分析

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摘要

Wetlands are undergoing considerable degradation in South Africa. As interventions are often technical and costly, there is a requirement to develop conceptual process models for these wetland systems so that rehabilitation attempts will be successful. This paper presents an approach using the geophysical methods of Electrical Resistivity Imaging (ERI) and Induced Polarization (IP) to delineate sub-surface hydro-geomorphic controls that maintain equilibrium disconnectivity of wetland-catchment processes, which through gully erosion are increasing the catchments connectivity through loss of water and sediment. The findings presented here give insight into the geomorphic processes that maintain the wetland in an un-degraded state, this allows for the development of a conceptual model outlining the wetland forming processes. The analysis suggests that sub-surface clay-plugs, within an otherwise sandy substrate are created by illuviation of clays from the surrounding hillslopes particularly at zones of valley confinement.
机译:南非的湿地正在严重退化。由于干预通常是技术性的且成本高昂的,因此需要为这些湿地系统开发概念性的过程模型,以便成功进行修复。本文提出了一种利用电阻率成像(ERI)和诱导极化(IP)的地球物理方法来描述维持湿地集水过程平衡不连通性的地下水地貌控制方法的方法,通过沟壑侵蚀增加了集水区的连通性通过水和沉积物的损失。此处提出的发现使人们深入了解了将湿地保持在未退化状态的地貌过程,这有助于开发概述湿地形成过程的概念模型。分析表明,在本来是沙质的基质中,地下粘土塞是通过从周围的山坡(特别是在山谷限制区)对粘土进行照射而形成的。

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