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Curie point depth beneath the Barramiya-Red Sea coast area estimated from spectral analysis of aeromagnetic data

机译:根据航磁数据的频谱分析估算的Barramiya-Red Sea海岸区域下方的居里点深度

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The geothermal regime beneath the Barramiya-Red Sea coast area of the Central Eastern Desert of Egypt has been determined by using the Curie point depth, which is temperature dependent. This study is based on the analysis of aeromagnetic data. The depth to the tops and centroid of the magnetic anomalies are calculated by power spectrum method for the whole area. The result of this investigation indicates, two new maps of the Curie point depth (CPD) and the surface heat flow (q) maps of the study area. The coastal regions are characterized by high heat flow (83.6 mW/m~2), due to the geothermic nature of the region, and shallow Curie depth (22.5 km), where (CPD) depends on the tectonic regime and morphology in the eastern part of the area. The western portion of the studied area has a lower heat flow (<50 mW/ m~2) and deeper Curie depth (~40 km), due to the existence of a large areal extent of negative Bouguer anomaly in the NE-SW direction. In addition to its bordering to the Red Sea margin, such high heat flow anomaly is associated with the increased earthquake swarms activity in the Abu Dabbab area.
机译:埃及中东部沙漠的Barramiya-Red Sea海岸地区下方的地热状况是通过居里点深度确定的,居里点深度与温度有关。这项研究基于对航空磁数据的分析。用功率谱法计算整个区域到磁异常的顶部和质心的深度。调查结果表明,研究区域的两个新的居里点深度(CPD)图和表面热流(q)图。由于该地区的地热性质,其沿海地区具有高热流(83.6 mW / m〜2)的特征,而居里深度较浅(22.5 km),其中(CPD)取决于东部的构造体制和形态部分区域。由于NE-SW方向上存在较大的负布格异常区域范围,所研究区域的西部具有较低的热流(<50 mW / m〜2)和较深的居里深度(〜40 km)。 。除了与红海边缘接壤外,这种高热流异常还与阿布达巴布地区地震群活动的增加有关。

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