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首页> 外文期刊>International Geology Review >ASTER-based mapping of ophiolitic rocks: examples from the Allaqi-Heiani suture, SE Egypt
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ASTER-based mapping of ophiolitic rocks: examples from the Allaqi-Heiani suture, SE Egypt

机译:基于ASTER的脂橄榄岩测绘:埃及东南部Allaqi-Heiani缝合线的示例

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摘要

The Allaqi-Heiani suture is an similar to 250km-long ophiolite-associated fold-and-thrust belt in the South Eastern Desert of Egypt. It comprises imbricate thrust sheets of ophiolites (serpentinite, amphibolite, metagabbro, and metabasalt) and island-arc metavolcanic/metasedimentary rocks. Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER)-based mafic-ultramafic indices are combined with band ratioing (BR) and relative absorption band-depth techniques to comprehensively map the ophiolitic rocks along the eastern part of the Allaqi-Heiani suture. The applied techniques are found efficient in delineating the ophiolitic rocks in the study area, despite their highly tectonized and variably carbonate-altered character. Identification and mapping of the exposed mafic-ultramafic rocks were possible using shortwave infrared (SWIR) band ratio 4/8 and thermal infrared (TIR) band ratio 12/14. The refined mafic index (MI) provides an efficient discrimination of the ophiolitic mafic rocks, while the mafic-ultramafic indices (M1 and M2) show high sensitivity to ophiolitic ultramafic units. The mafic-ultramafic indices enabled an efficient discrimination of mafic ophiolites from mafic island-arc rocks. Combining mafic indices and SWIR band ratio 4/8 allowed an enhanced delineation of the ophiolitic mafic-ultramafic rocks from other rock units in the area. Detailed mapping of the ophiolitic units in the ophiolitic terranes was obtained using the relative absorption band depth (RBD8) together with the MI and band ratio 4/8. This approach offers a quick method to discriminate among ophiolitic rock units and to map their structural contacts, i.e. in such hitherto poorly studied and hardly accessible areas.
机译:Allaqi-Heiani缝合线类似于埃及东南沙漠中长250公里的蛇绿岩相关的褶皱冲断带。它由蛇纹岩(蛇纹岩,角闪石,变质岩和偏玄武岩)和岛弧变火山岩/变质岩的盘状冲断层组成。基于先进的星载热发射和反射辐射计(ASTER)的铁磁-超声指数与谱带比(BR)和相对吸收谱带深度技术相结合,全面绘制了阿拉基-黑亚尼缝合线东部的脂石质岩层。尽管所应用的技术具有高构造和碳酸盐变质的特征,但在描述研究区的脂石岩中却很有效。使用短波红外(SWIR)谱带比4/8和热红外(TIR)谱带比12/14可以识别和绘制裸露的镁铁-超镁铁质岩石。精炼的镁铁质指数(MI)可有效地区分脂石质镁铁质岩石,而镁铁质-超镁铁质指数(M1和M2)显示出对脂质超镁铁质岩体的高度敏感性。镁铁质-超镁铁质指数可以有效区分镁铁质蛇绿岩与镁铁质岛弧岩。将镁铁质指数和SWIR带比4/8结合起来,可以更好地描绘该地区其他岩石单元的脂滑质镁铁质-超镁铁质岩石。使用相对吸收谱带深度(RBD8)以及MI和谱带比4/8,可以得到卵石地形中的卵石单元的详细映射。这种方法提供了一种快速的方法来区分石质岩石单元并绘制它们的结构接触,即在迄今研究不足和难以接近的区域。

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