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首页> 外文期刊>Journal of South American earth sciences >Paleomagnetic data and K-Ar ages from Mesozoic units of the Santa Marta massif: A preliminary interpretation for block rotation and translations
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Paleomagnetic data and K-Ar ages from Mesozoic units of the Santa Marta massif: A preliminary interpretation for block rotation and translations

机译:来自圣玛尔塔地块中生代单元的古地磁数据和K-Ar年龄:块体旋转和平移的初步解释

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摘要

We report 6 K-Ar ages and paleomagnetic data from 28 sites collected in Jurassic, Lower Cretaceous and Paleocene rocks of the Santa Marta massif, to test previous hypothesis of rotations and translations of this massif, whose rock assemblage differs from other basement-cored ranges adjacent to the Guyana margin. Three magnetic components were identified in this study. A first component has a direction parallel to the present magnetic field and was uncovered in all units (D = 352, 7 = 25.6, k = 57.35, a95 = 5.3, N=12). A second component was isolated in Cretaceous limestone and Jurassic volcaniclastic rocks (D = 8.8, I = 8.3, k = 24.71, a95 = 13.7, N = 6), and it was interpreted as of Early Cretaceous age. In Jurassic sites with this component. Early Cretaceous K-Ar ages obtained from this and previous studies are interpreted as reset ages. The third component was uncovered in eight sites of Jurassic volcaniclastic rocks, and its direction indicates negative shallow to moderate inclinations and northeastward declinations. K-Ar ages in these sites are of Early (196.5 ±4.9 Ma) to early Late Jurassic age (156.6 ±8.9 Ma). Due to local structural complexity and too few Cretaceous outcrops to perform a reliable unconformity test, we only used two sites with (1) K-Ar ages, (2) less structural complexity, and (3) reliable structural data for Jurassic and Cretaceous rocks. The mean direction of the Jurassic component is (D = 20.4, I = -18.2, k = 46.9, a95 = 5.1, n = 18 specimens from two sites). These paleomagnetic data support previous models of northward along-margin translations of Grenvillian-cored massifs. Additionally, clockwise vertical-axis rotation of this massif, with respect to the stable craton, is also documented; the sense of rotation is similar to that proposed for the Perija Range and other ranges of the southern Caribbean margin. More data is needed to confirm the magnitudes of rotations and translations.
机译:我们报告了在圣玛尔塔地块的侏罗纪,下白垩统和古新世岩石中收集的28个地点的6 K-Ar年龄和古磁数据,以检验该地块的旋转和平移的先前假设,该地块的岩石组合不同于其他以地下室为中心的范围毗邻圭亚那边缘。在这项研究中确定了三个磁性成分。第一分量具有平行于当前磁场的方向,并且在所有单位中均未被覆盖(D = 352、7 = 25.6,k = 57.35,a95 = 5.3,N = 12)。在白垩纪石灰岩和侏罗纪火山碎屑岩中分离出第二个成分(D = 8.8,I = 8.3,k = 24.71,a95 = 13.7,N = 6),并被解释为早于白垩纪。在侏罗纪遗址具有这一成分。从这项研究和以前的研究中获得的白垩纪早期K-Ar年龄被解释为复位年龄。在侏罗纪火山碎屑岩的八个位置中发现了第三部分,其方向指示为负的浅至中度倾斜和东北倾斜。这些地点的K-Ar年龄处于侏罗纪早期(196.5±4.9 Ma)到晚期晚期(156.6±8.9 Ma)。由于局部结构的复杂性以及白垩纪露头很少以进行可靠的不整合试验,我们仅使用了两个地点:(1)K-Ar年龄,(2)结构复杂度较低,(3)侏罗纪和白垩纪岩石的可靠结构数据。侏罗纪成分的平均方向是(D = 20.4,I = -18.2,k = 46.9,a95 = 5.1,n =来自两个地点的18个样本)。这些古磁数据支持格伦维利尔核心地块向北沿边界平移的先前模型。此外,还记录了该质量块相对于稳定克拉通的顺时针垂直轴旋转。旋转感类似于针对佩里贾山脉和南部加勒比海边缘其他山脉提出的旋转感。需要更多数据来确定旋转和平移的幅度。

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