Space/ground-borne techniques and petrographic microscopic dissection for geologic mapping in Gabal Ras Abda area, Northeastern Desert, Egypt

IF 2.5 Q2 MULTIDISCIPLINARY SCIENCES Beni-Suef University Journal of Basic and Applied Sciences Pub Date : 2024-05-11 DOI:10.1186/s43088-024-00502-z
Mahmoud M. Salem, Mohamed A. Yehia, Ali A. Omran, Hassan I. El Sundoly, Mohammed A. Soliman, Karim Abdelmalik
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引用次数: 0

Abstract

Background

Gabal Ras Abda area as a part of the Red Sea Mountain range, is characterized by inaccessible and rugged terrains. The exposed rock units are hardly followed in the field because of the rigid topography. Thus, the present work proposes and develops an integrated approach to map the exposed rock units and extract the geologic structures using satellite imagery data followed by both field and petrographic verification, saving time, efforts and cost.

Results

To achieve the target, both the measured spectral signature curves with Landsat-8 and Sentinel-2A data were used to develop and create the most enhanced Band Ratios and Principal Components for lithological discrimination and mapping which were (((Band7 + Band 4)/(Band 7), (Band 2)/(Band 2 + Band 5) and (Band 5) in RGB) and ((Band 9 + Band 11 + Band 12)/(Band 1), (Band 4 − Band 2) and (Band 11/Band 6) + (Band 6) in RGB)) with Principal Component Bands ((PC1, PC2 and PC3 in RGB) and (PC3, PC2 and PC1 in RGB)), respectively. Also, georeferenced Google Earth Pro, panchromatic band of Landsat-8 and ALOS PALSAR Digital Elevation Model images were used to extract the structural lineaments. Geologic, petrographic and field structural studies were emphasized the remote sensing results, indicating that the main rock types cropped out in Ras Abda area from the oldest to the youngest are older granitoids (quartz-diorites, tonalites and granodiorites), Dokhan volcanics (andesites, rhyodacites, rhyolites and their related tuffs), younger gabbros, younger granites (monzogranites, syenogranites and alkali-feldspar granites), post-granite dykes and offshoots (acidic, microgranitic and basic types) and Phanerozoic sedimentary rocks. Also, the study emphasized that the E-W trend is the main structural trend controlling the investigated area followed by WNW-ESE and NE-SW directions.

Conclusions

The results of remote sensing achieved compliance with the geologic, petrographic and structural investigation through distinctly differentiating the different rocks and extracting the lineaments, indicating the accuracy of the remote sensing results and emphasizing their importance and effective role in producing a precise and highly accurate geologic map.

Graphical abstract

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用于埃及东北部沙漠 Gabal Ras Abda 地区地质制图的空间/地面载体技术和岩相显微解剖技术
背景Gabal Ras Abda 地区是红海山脉的一部分,其特点是人迹罕至、地形崎岖。由于僵硬的地形,在野外很难跟踪到裸露的岩石单元。因此,本研究提出并开发了一种综合方法,利用卫星图像数据绘制裸露岩石单元图并提取地质结构,然后进行实地验证和岩石学验证,从而节省时间、精力和成本。结果为实现目标,利用大地遥感卫星-8 和哨兵-2A 数据测量的光谱特征曲线,开发并创建了用于岩性判别和绘图的增强型波段比和主成分,即((波段 7 + 波段 4)/(波段 7)、(波段 2)/(波段 2)、(波段 3)/(波段 4)、(波段 5)/(波段 6)、(波段 7)/(波段 7)、((带 7 + 带 4)/(带 7)、(带 2)/(带 2 + 带 5)和(带 5) in RGB),以及((带 9 + 带 11 + 带 12)/(带 1)、(带 4 - 带 2) 和 (带 11/Band 6) + (Band 6) in RGB)),主成分带分别为((PC1、PC2 和 PC3 in RGB)和(PC3、PC2 和 PC1 in RGB))。此外,还使用了地理参照的 Google Earth Pro、Landsat-8 全色波段和 ALOS PALSAR 数字高程模型图像来提取构造线形。地质学、岩相学和实地结构研究强调了遥感结果,表明拉斯阿布达地区从最古老到最年轻的主要岩石类型是较古老的花岗岩(石英闪长岩、辉绿岩和花岗闪长岩)、多汗火山岩(安山岩、流纹岩、流纹岩及其相关凝灰岩)、较年轻的辉长岩、较年轻的花岗岩(单花岗岩、正长花岗岩和碱长花岗岩)、后花岗岩岩脉和分支(酸性、微花岗岩和碱性类型)以及新生代沉积岩。此外,研究还强调,E-W 走向是控制调查区域的主要构造走向,其次是 WNW-ESE 和 NE-SW。结论遥感结果与地质、岩相和构造调查相吻合,能明显区分不同的岩石并提取线型,表明遥感结果的准确性,并强调了其在绘制精确和高精度地质图方面的重要性和有效作用。
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期刊介绍: Beni-Suef University Journal of Basic and Applied Sciences (BJBAS) is a peer-reviewed, open-access journal. This journal welcomes submissions of original research, literature reviews, and editorials in its respected fields of fundamental science, applied science (with a particular focus on the fields of applied nanotechnology and biotechnology), medical sciences, pharmaceutical sciences, and engineering. The multidisciplinary aspects of the journal encourage global collaboration between researchers in multiple fields and provide cross-disciplinary dissemination of findings.
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