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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Deep structure of the Baringo Rift Basin (central Kenya) from three-dimensional magnetotelluric imaging: Implications for rift evolution
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Deep structure of the Baringo Rift Basin (central Kenya) from three-dimensional magnetotelluric imaging: Implications for rift evolution

机译:三维大地电磁成像的巴林戈裂谷盆地(肯尼亚中部)的深层结构:对裂谷演化的启示

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Three-dimensional modeling of data: from 31 vertical electrical and 24 magnetotelluric soundings collected in the Baringo-Bogoria Basin (central Kenya Rift Valley) shows a thick succession of well-defined tectonostratigraphic units beneath the Recent deposits of the Marigat-Loboi Plain. They include from top to bottom, a sedimentary basin, similar to 1.5 km thick, controlled by N-S and N140 degrees structural trends, and a thick homogeneous resistive layer related to the bottom of the basin, overlying a conductive structure, which cannot be clearly correlated with the Proterozoic basement. It is suggested that the resistive layer correlates with the mid-Miocene plateau-type flood phonolites which flowed over the early Kenya Rift during a major volcanic activity period. The conductive structure overlain by these lava flows could be a sedimentary basin developed during the initial phase of rifting, during the Oligocene-Miocene. The absence of a significant gravity low associated with this deep basin suggests a zone of dense intrusion deeper than 5-10 km, not discernible with the magnetotelluric data but required to explain the gravity anomalies. The recognition of a deeply buried sedimentary succession lying between 4 and 8 km beneath the lower Miocene volcanic series of the Baringo valley would provide new insights into the regional volcano-sedimentary stratigraphic succession and the rift development of the Kerio and Baringo Basins. [References: 61]
机译:数据的三维建模:从Baringo-Bogoria盆地(肯尼亚中部裂谷)采集的31个垂直电波和24个大地电磁测深表明,在Marigat-Loboi平原的近期沉积物之下,有一系列清晰的构造地层单元。它们包括从上到下的沉积盆地,厚度约为1.5 km,受NS和N140度结构趋势控制,以及与盆地底部相关的厚均质电阻层,覆盖导电结构,无法明确关联。与元古代的地下室。建议该电阻层与主要火山活动期间流经肯尼亚大裂谷的中新世高原型洪泛音石有关。这些熔岩流覆盖的导电结构可能是渐新世-中新世裂谷初期阶段形成的沉积盆地。没有与该深水盆地有关的显着重力低点,表明一个深部侵入区深于5-10 km,这是大地电磁数据无法识别的,但需要解释重力异常。对巴林哥河谷中新世下部火山序列下方4至8公里之间深埋的沉积演替的认识将为该地区火山沉积的地层演替以及Kerio和Baringo盆地的裂谷发展提供新的见解。 [参考:61]

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