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Radar suitability in aeolian sand dunes — A global review

机译:雷达在风沙丘中的适用性—全球回顾

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摘要

Over the past 40 years, GPR has been used to image the internal architecture of aeolian sand dunes with generally impressive results. These data may be used to produce high resolution models of dune structures, useful in the study of dune migration rates, desertification, as palaeo-environmental indicators and for the construction of petroleum reservoir analogues. Although published works suggest that dry sands are ideal radar environments, practical experience in deserts around the world indicate that maximum penetration depths are highly variable. The factors which influence radar suitability appear to include moisture in the dune core, the presence of conductive evaporates drawn upwards from the dune base through capillarity, surface salinity on coastal dunes, the presence of vegetation, and the lithology of the source rocks. We herein discuss these factors, whilst comparing our results of standardised radar penetration tests from sand bodies in Algeria, Australia, Brazil, Libya, Madagascar, Namibia, Oman, and South Africa.
机译:在过去的40年中,GPR已用于对风沙沙丘的内部结构进行成像,效果总体令人满意。这些数据可用于生成沙丘结构的高分辨率模型,可用于研究沙丘迁移率,荒漠化,作为古环境指标以及用于建造石油储层类似物。尽管已发表的著作表明干沙是理想的雷达环境,但在世界各地的沙漠中,实践经验表明,最大穿透深度是高度可变的。影响雷达适用性的因素似乎包括沙丘核心中的水分,通过毛细作用从沙丘底部向上吸出的导电性蒸发,沿海沙丘的表面盐度,植被的存在以及源岩的岩性。我们在这里讨论这些因素,同时比较我们在阿尔及利亚,澳大利亚,巴西,利比亚,马达加斯加,纳米比亚,阿曼和南非的沙体进行的标准化雷达穿透测试的结果。

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