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首页> 外文期刊>Geomorphology >Geoelectric investigations into sandstone moisture regimes: Implications for rock weathering and the deterioration of San Rock Art in the Golden Gate Reserve, South Africa
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Geoelectric investigations into sandstone moisture regimes: Implications for rock weathering and the deterioration of San Rock Art in the Golden Gate Reserve, South Africa

机译:砂岩水分状态的地电研究:对岩石风化的影响以及南非金门保护区的San Rock Art的恶化

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摘要

The Clarens sandstone in the Golden Gate Reserve, South Africa, is the canvas for a collection of San (Bushmen) Rock Art, dating from Neolithic times until as recently as 150 years ago. This Rock Art is under threat from human interference but also, to a greater degree, from weathering processes on the rock surface. The dominant weathering processes occurring in the rock shelters which host the Rock Art are flaking and honeycombing. Two rock shelter sites in the Reserve have been investigated using electric resistivity tomography (ERT) and supportive methods for measuring surface moisture (Protimeter) and surface hardness (Equotip). These nondestructive techniques can be used in situ to assess the extent of weathering within a rock outcrop and are especially suited for investigations in sensitive areas such as Rock Art sites. Moisture movement has been mapped and related to the weathering processes observed on the surface. The aim of the study is to aid Rock Art conservation in the Golden Gate Reserve through a better understanding of the driving processes of surface weathering. The evidence shows that the extensive flaking and honeycombing found in the rock shelters is most likely caused by water pockets in the near-surface zone, which are replenished through internal moisture transport, driving the superficial weathering processes. These weathering processes pose a significant problem: Rock Art in the Golden Gate Reserve shows severe deterioration due to flaking. Conservation strategies should therefore take internal processes into account as much as their superficial expression.
机译:南非金门保护区的Clarens砂岩是新山石器时代(新石器时代至150年前)收藏的画布。这种岩石艺术不仅受到人为干扰的威胁,而且在更大程度上受到岩石表面的风化作用的威胁。托管岩石艺术的岩石掩体中发生的主要风化过程是剥落和蜂窝状。利用电阻层析成像(ERT)和支持性方法测量表面水分(Protimeter)和表面硬度(Equotip),对保护区中的两个岩石掩体进行了调查。这些非破坏性技术可用于评估岩石露头内的风化程度,特别适合在诸如岩石艺术遗址等敏感区域进行调查。水分运动已经绘制出来,并且与表面上观察到的风化过程有关。该研究的目的是通过更好地了解地表风化的驱动过程来帮助金门保护区的岩石艺术保护。证据表明,在岩石掩体中发现的大量剥落和蜂窝状现象最有可能是由于近地表区域的水坑引起的,这些水坑通过内部水分传输得到补充,从而推动了表面风化过程。这些风化过程带来了一个严重的问题:金门保护区的岩画由于剥落而严重恶化。因此,保护​​策略应尽可能多地考虑内部过程。

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  • 来源
    《Geomorphology》 |2010年第4期|p.280-287|共8页
  • 作者

    L. Mol; H.A. Viles;

  • 作者单位

    School of Geography, University of Oxford, South Parks Road, Oxford, 0X1 3QY, United Kingdom;

    rnSchool of Geography, University of Oxford, South Parks Road, Oxford, 0X1 3QY, United Kingdom School of Geography, Archaeology and Environmental Studies, University of the Witwatersrand, Johannesburg, South Africa;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    sandstone; weathering; South Africa; rock art; resistivity; moisture;

    机译:砂岩;风化;南非;岩石艺术电阻率湿气;

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