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Subsurface Investigation of the Neogene Mygdonian Basin, Greece Using Magnetic Data

机译:磁性数据,希腊新生Mygdonian盆地的地下调查

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A high-resolution ground and marine magnetic survey was executed to determine the structure of the subsurface and the thickness of the sedimentary cover in the Mygdonian Basin. A spacing of approximately 250 m or 500 m between measurement stations was selected to cover an area of 15 km x 22 km. Edge detectors such as total horizontal derivative (THDR), analytic signal (AS), tilt derivative (TDR), enhanced total horizontal gradient of tilt derivative (ETHDR) were applied to map the subsurface structure. Depth was estimated by power spectrum analysis, tilt derivative, source parameter imaging (SPI), and 2D-forward modeling techniques. Spectral analysis and SPI suggest a depth to the basement ranging from near surface to 600 m. For some selected locations, depth was also calculated using the TDR technique suggesting depths from 160 to 400 m. 2D forward magnetic modeling using existing boreholes as constraints was carried out along four selected profiles and confirmed the presence of alternative horsts and grabens formed by parallel normal faults. The dominant structural trends inferred from THDR, AS, TDR, and ETHDR are N-S, NW-SE, NE-SW and E-W. This corresponds with the known structural trends in the area. Finally, a detailed structural map showing the magnetic blocks and the structural architecture of the Mygdonian Basin was drawn up by collating all of the results.
机译:执行了高分辨率的地面和海洋磁性调查,以确定岩壁盆地中沉积盖的地下结构和沉积盖的厚度。选择测量站之间约250μm或500μm的间距,以覆盖面积15公里×22公里。诸如总水平衍生(THDR),分析信号(AS),倾斜导数(TDR),增强倾斜导数(乙醚)的倾斜衍生物(ethdr)的边缘检测器被应用于映射地下结构。通过功率频谱分析,倾斜导数,源参数成像(SPI)和2D-前向建模技术估算深度。光谱分析和SPI建议深度从近表面到600米的基底。对于某些所选位置,还使用TDR技术计算深度,暗示从160到400米的深度。 2D使用现有钻孔作为约束的前向磁性建模沿四个选定的曲线进行,并确认了通过并联正常断层形成的替代HORSTS和GRABREN的存在。从THDR,AS,TDR和ethdr推断的主导结构趋势是N-S,NW-SE,NE-SW和E-W。这对应于该地区的已知结构趋势。最后,通过整理所有结果来制定显示磁块和磁性盆地的结构架构的详细结构图。

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