电位场是描述地球上无法进入地区特征的工具:南极洲西部松树岛-埃尔斯沃思山脉地区案例

Giuseppe Ferrara, Fausto Ferraccioli, Maurizio Fedi
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引用次数: 0

摘要

我们试图描述南极西部裂谷系统的地球物理特性。南极西部裂谷系统是公认的地球上最大的裂谷系统之一,但由于被厚厚的南极西部冰盖所覆盖,人们对它的了解甚少,因此很难对其进行地质评估。我们利用英国南极勘测局获得的势场数据集(包括航空磁测)进行了多尺度分析,以确定主要的构造线形,即接触面、岩尖、岩屑、火山颈和导管以及球形源分布。我们确定了几个有趣的区域,其中接触型源与主要裂谷系统(松岛、伯德冰川下盆地和本特利冰川下海沟)的断层有关,或与松岛裂谷的支流有关。此外,我们还根据岩浆源的形状和方向(本特利冰川下盆地边缘)探测到了靠近断裂带的岩浆源,这有助于确定冰下地形的深度。我们的研究结果有助于增进我们对南极西部裂谷系统区域地质结构的了解。这项工作为岩浆源的范围和位置以及它们如何对南极西部裂谷系统这一部分的地形起作用提供了有趣的设想。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Potential fields as a tool to characterize the inaccessible areas of the earth: The case of Pine Island–Ellsworth Mountains area, West Antarctica
We seek to characterize the geophysical properties of the West Antarctic Rift System. While it is recognized as one of the largest rift systems on the earth, the West Antarctic Rift System is poorly understood as it is covered by the thick West Antarctic Ice Sheet, making any geologic evaluation difficult. We used the potential-field data sets acquired by the British Antarctic Survey, which included aeromagnetic surveys, to conduct a multiscale analysis to identify the main structural lineaments, i.e., contacts, dikes, sills, volcanic necks and conduits, and spherical source distributions. Several interesting areas were defined in which contact-type sources were associated with faults bordering major rift systems (Pine Island, Byrd Subglacial Basin, and Bentley Subglacial Trench) or related to the tributaries in the Pine Island Rift. Moreover, we detected magmatic sources close to rifting zones based on their shape and orientation (Bentley Subglacial Basin edges), helping to define the depth of the sub-ice topography. Our results helped improve our knowledge of the structural regional geology of the West Antarctic Rift System. This work opens interesting scenarios about the extent and position of magmatic sources and how they contribute to the topography of this sector of the West Antarctic Rift System.
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