首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Processing and interpretation of the gravity field of the East African Rift: implication for crustal extension
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Processing and interpretation of the gravity field of the East African Rift: implication for crustal extension

机译:东非大裂谷重力场的处理和解释:对地壳扩展的影响

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Compilation of new and existing gravity data were undertaken to assess the nature of the crust beneath the East African Rift System. Using 3D gravity modeling code crustal model of gravity profiles across two sectors of the rift were computed. The results are discussed in light of the structure of the rift system.The results of the 3D modeling of gravity profiles across the two rift zones revealed northward thinning of the crust. The maximum crustal attenuation occurs beneath the Afar depression, indicating the Afar rift undergoes an intense fragmentation of the crust resulting from faulting and magmatic activity. However, our computed crustal thickness below the Afar depression falls within an upper bound compared to elsewhere below tectonically active rift zones. This can be explained in terms of crustal accretion resulting from an impact of the Afar mantle plume since similar to30 Ma ago.The residual gravity obtained using high-cut filtering techniques reveals significant density contrast between the northern and southern sectors of the rift. The northern part of the rift is characterized by regular patterns of positive gravity anomalies, which can be interpreted in terms of a zone of crustal thinning through which relatively dense materials have intruded the overlying crust. In contrast, south of the Main Ethiopian Rift, the anomalies are characterized by random patterns and low amplitudes. The along-rift-axis variation in gravity anomalies implies that the style of crustal deformation changed progressively, beginning with regionally distributed crustal deformation, such as the one we observe within the more juvenile and wider southern segment of the rift, to localized deformation within the active and narrow rift zones of the northern sector of the Ethiopian Rift. We suggest that the key parameters controlling along-rift-axis variation in gravity anomalies are the rate of crustal extension, faulting and magmatic activities. (C) 2004 Elsevier B.V. All rights reserved.
机译:进行了新的和现有的重力数据汇编,以评估东非裂谷系统下的地壳的性质。使用3D重力建模代码,计算了裂谷两个扇区之间的重力剖面地壳模型。根据裂谷系统的结构讨论了结果。两个裂谷区域重力剖面的3D建模结果表明地壳向北变薄。最大的地壳衰减发生在阿法尔凹陷以下,表明阿法尔裂谷经历了断层和岩浆活动导致的地壳强烈破碎。但是,与在构造活动裂谷带以下的其他区域相比,我们在阿法尔凹陷以下的计算出的地壳厚度处于一个上限之内。这可以用类似于30 Ma以前的阿法尔地幔羽的撞击所产生的地壳积聚来​​解释。使用高切过滤技术获得的残余重力显示出该裂谷北部和南部之间的显着密度对比。裂谷的北部以正重力异常的规律性为特征,这可以用地壳变薄的区域来解释,相对较稠密的物质穿过地壳变薄的区域侵入了上地壳。相反,在埃塞俄比亚主要裂谷以南,异常的特征是随机模式和低振幅。重力异常沿裂谷轴线的变化表明,地壳变形的样式从区域分布的地壳变形开始逐渐变化,例如我们在裂谷的较幼小和较宽的南段观察到的,直到地壳内的局部变形。埃塞俄比亚裂谷北部地区的活跃和狭窄裂谷带。我们认为,控制重力异常沿裂谷轴线变化的关键参数是地壳伸展率,断层和岩浆活动。 (C)2004 Elsevier B.V.保留所有权利。

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