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首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Thickness of extrusive basalts dominating the magnetic structure along the ultraslow-spreading Mohns Ridge axis (71.8°–73.7°N)
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Thickness of extrusive basalts dominating the magnetic structure along the ultraslow-spreading Mohns Ridge axis (71.8°–73.7°N)

机译:沿超声波展示Mohns脊柱轴主导磁性结构的喷射底座(71.8°-73.7°N)的厚度

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摘要

The equivalent magnetization (EM) and mantle Bouguer anomaly (MBA) were calculated along the ultraslow-spreading Mohns Ridge axis in the Norwegian-Greenland Sea. The magnetic anomaly and the associated EM were compared with the bathymetry, MBA, seismically determined crustal structure and geochemical data at both the inter-segment scale (>60?km) and the intra-segment scale (20–60?km). At the inter-segment scale, the magnetic highs at the segment centers are independent of the MBA. Of the 13 segments, 9 with magnetic anomalies >700?nT coincide with axial volcanic ridges identified from multibeam bathymetry maps, which suggests that the magnetic highs at the segment centers may be more associated with the extrusive lavas rather than the amount of magma supply. With few exceptions, the magnetic anomaly lows associated with MBA highs at the segment ends increase from south to north. This trend might be explained by thickened extrusive basalts and/or more serpentinized peridotites at the segment ends in the north. At the intra-segment scale, the most prominent features are the decreases in the magnetic anomalies and associated EMs from the segment centers to the ends. The intra-segment magnetic anomalies have positive and negative correlations with the bathymetry and MBA, respectively. The magnetic signal modeled by the seismically determined layer 2A with an assumed constant magnetization is remarkably consistent with the observed magnetic anomaly, which strongly suggests that the thickness of the extrusive basalts dominates the magnetic structure in each segment along the Mohns Ridge. In general, the thickness of the extrusive basalts dominates the magnetic structure along the Mohns Ridge, whereas the contributions from serpentinized peridotites may be significant at the segment ends and may produce long-wavelength magnetic variations. The magnetic data can be used as an indicator of the thickness of the extrusive basalts within segments along the ultraslow-spreading
机译:沿着挪威 - 格陵兰海域的超声波展开的Mohns脊轴计算等效磁化(EM)和搭配Bouguer异常(MBA)。将磁性异常和相关的EM与浴约定,MBA,地震确定的地壳结构和地球间尺度(> 60 km)和分段间规模(20-60 km)进行比较。在段间规模处,分段中心的磁性高度与MBA无关。在13个区段中,9个具有磁性异常> 700·NT与多射流浴型图谱识别的轴向火山脊重合,这表明该段中心的磁性高度可能与喷射熔岩相比,而不是岩浆供应量。少数例外情况下,与MBA高点关联的磁异常低点在段的距离南北部门增加。这种趋势可能通过增厚的肌醇玄武岩和/或更多蛇形化的岩石在北方的末端解释。在段内刻度,最突出的特征是磁性异常和从分段中心到末端的相关EMS的降低。分段内磁异常分别与碱和MBA具有正相关和负相关。由地震确定的层2a建模的具有假定恒定磁化的磁信号与观察到的磁异常相一致,这强烈地表明挤出基础的厚度在沿着Mohns脊的每个段中的磁结构主导。通常,喷射底座的厚度沿着Mohns脊主导磁性结构,而来自蛇形恒星的贡献可以在区段末端处具有重要的并且可以产生长波长磁场。磁性数据可以用作沿超声波展开段段内的喷射基底厚度的指示器

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