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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 >3D gravity modelling reveals off-axis crustal thickness variations along the western Gakkel Ridge (Arctic Ocean)
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3D gravity modelling reveals off-axis crustal thickness variations along the western Gakkel Ridge (Arctic Ocean)

机译:3D重力建模揭示了沿西部Gakkel脊(北冰洋)的地壳厚度变化

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摘要

Near-orthogonal ultra-slow (133 mm yr(-1) to 6.5 mm yr(-1)) sea floor spreading in the absence of large transform faults make the Arctic Gakkel Ridge ideally suited for the study of magmatic processes. To enable this, we generated a three-dimensional gravity model of crustal thickness over the ridge and parts of the adjacent Nansen and Amundsen basins west of 65 degrees E. The model shows that oceanic crust accreted prior to chrons C5/C6 is generally very thin (1-3 km). Magnetic anomalies over this thin crust are highly variable both parallel and perpendicular to the ridge axis. This is the result of amagmatic or weakly volcanic spreading that started with the opening of the basins 56 Ma ago. The separation of Greenland from Svalbard at chron C5/C6 led to the inflow of North Atlantic mantle into the western Eurasia Basin leading to a change in the mantle convection system and the establishment of a magmatic dichotomy along the Gakkel Ridge. Robust magmatism was established in the Western Volcanic Zone (6 degrees 30' W-3 degrees 30' E), leading to creation of a 6.6 km thick igneous crust, characterized by a strong positive axial magnetic anomaly, numerous volcanic cones, and widespread thick mid-ocean ridge basalts. The transition to the neighbouring Sparsely Magmatic (3 degrees 30' E-29 degrees E) and Eastern Volcanic (29 degrees E-85 degrees E) zones is sharp. Peridotites cover the central valley and the inner rift flanks, the central magnetic anomaly vanishes and crustal thickness decreases to 1-4 km. Transverse basement ridges, extending for as much as 100 km into the adjacent basins, intersect the central valley. Although partly of tectonic origin, the transverse ridges are also an expression of long-living magmatic centres, as revealed by increased magnetic anomaly intensities and local thickening of the crust to values as great as 5.9 km. (C) 2016 Elsevier B.V. All rights reserved.
机译:在没有大的转换断层的情况下,近正交的超慢(133 mm yr(-1)至6.5 mm yr(-1))海床扩展使北极Gakkel Ridge非常适合于岩浆作用研究。为了做到这一点,我们在65度E以西的山脊和相邻的Nansen和Amundsen盆地的一部分上建立了一个地壳厚度的三维重力模型。该模型表明,在C5 / C6年代之前积聚的洋壳通常很薄(1-3公里)。平行于和垂直于山脊轴的薄壳上的磁异常变化很大。这是从56 Ma以前盆地开放开始的岩浆或弱火山扩散的结果。在时间C5 / C6,格陵兰与斯瓦尔巴特群岛分离,导致北大西洋地幔流入欧亚大陆盆地西部,导致地幔对流系统发生变化,并沿Gakkel山脊形成岩浆二分法。西部火山带(6度30'W-3度30'E)建立了强大的岩浆作用,形成了6.6 km厚的火成壳,其特征是强烈的正向轴向磁异常,众多的火山锥和广泛的厚度中海脊玄武岩。向邻近的稀疏岩浆区(3度30'E-29度E)和东部火山区(29度E-85度E)过渡非常明显。橄榄岩覆盖中央山谷和内部裂谷侧面,中央磁异常消失,地壳厚度减小至1-4 km。横贯地下的山脊延伸至相邻盆地,长达100公里,与中央山谷相交。尽管部分地源于构造,但横向脊也表现为长寿岩浆中心,这表现为磁异常强度增加和地壳局部增厚至5.9 km。 (C)2016 Elsevier B.V.保留所有权利。

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