Kinematics of rift linkage between the Eastern and Ethiopian rifts in the Turkana Depression, Africa

IF 2.8 2区 地球科学 Q2 GEOSCIENCES, MULTIDISCIPLINARY Basin Research Pub Date : 2024-09-14 DOI:10.1111/bre.12900
Garrett Sullivan, C. J. Ebinger, M. Musila, Mason Perry, E. R. Kraus, Ian Bastow, Becks Bendick
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Abstract

Rift initiation within cold, thick, strong lithosphere and the evolving linkage to form a contiguous plate boundary remains debated in part owing to the lack of time–space constraints on kinematics of basement-involved faults. Different rift sectors initiate diachronously and may eventually link to produce a jigsaw spatial pattern, as in the East African rift, and along the Atlantic Ocean margins. The space–time distribution of earthquakes illuminates the geometry and kinematics of fault zones within the crystalline crust, as well as areas with pressurized magma bodies. We use seismicity and Global Navigation System Satellites (GNSS) data from the Turkana Rift Array Investigating Lithospheric Structure (TRAILS) project in East Africa and a new digital compilation of faults and eruptive centres to evaluate models for the kinematic linkage of two initially separate rift sectors: the Main Ethiopian Rift (MER) and the Eastern rift (ER). The ca. 300 km wide zone of linkage includes failed basins and linkage zones; seismicity outlines active structures. Models of GNSS data indicate that the ca. 250 km-wide zone of seismically active en echelon basins north of the Turkana Depression is a zone, or block, of distributed strain with small counterclockwise rotation that serves to connect the Main Ethiopian and Eastern rifts. Its western boundary is poorly defined owing to data gaps in South Sudan. Strain across the northern and southern boundaries of this block, and an ca. 50 km-wide kink in the southern Turkana rift is accommodated by en echelon normal faults linked by short strike-slip faults in crystalline basement, and relay ramps at the surface. Short segments of obliquely oriented basement structures facilitate across-rift linkage of faults, but basement shear zones and Mesozoic rift faults are not actively straining. This configuration has existed for at least 2–5 My without the development of localized shear zones or transform faults, documenting the importance of distributed deformation in continental rift tectonics.

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非洲图尔卡纳凹地东部裂谷与埃塞俄比亚裂谷之间的运动学联系
由于缺乏对涉及基底的断层运动学的时空约束,在冷、厚、强岩石圈内的裂谷起始以及形成连续板块边界的演化联系仍存在争议。不同的断裂带是异步启动的,最终可能会连接起来,形成拼图式的空间模式,如东非断裂带和大西洋边缘。地震的时空分布揭示了结晶地壳内断层带的几何形状和运动学特征,以及岩浆体受压地区的情况。我们利用东非图尔卡纳裂谷阵列岩石圈结构研究(TRAILS)项目的地震数据和全球导航系统卫星(GNSS)数据,以及新的断层和喷发中心数字汇编,对两个最初独立的裂谷区(埃塞俄比亚主裂谷(MER)和东部裂谷(ER))的运动学联系模型进行了评估。约宽约 300 公里的连接区包括塌陷盆地和连接区;地震勾勒出活跃的结构。全球导航卫星系统数据模型表明,约 250 公里宽的地震活动带是一个活跃的结构。图尔卡纳凹陷以北约 250 公里宽的地震活跃的梯状盆地带是一个分布式应变带或区块,具有较小的逆时针旋转,起到连接埃塞俄比亚主断裂带和东部断裂带的作用。由于南苏丹的数据空白,其西部边界界定不清。该区块北部和南部边界的应变以及图尔卡纳裂谷南部约 50 公里宽的褶皱由晶质基底的短走向滑动断层和地表的中继斜坡相连的梯形正断层所控制。斜向基底结构的短段有利于断层的跨裂谷连接,但基底剪切带和中生代裂谷断层的应变并不活跃。这种构造至少存在了 2-5 My 年,但没有形成局部剪切带或转换断层,这证明了分布式变形在大陆裂谷构造中的重要性。
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来源期刊
Basin Research
Basin Research 地学-地球科学综合
CiteScore
7.00
自引率
9.40%
发文量
88
审稿时长
>12 weeks
期刊介绍: Basin Research is an international journal which aims to publish original, high impact research papers on sedimentary basin systems. We view integrated, interdisciplinary research as being essential for the advancement of the subject area; therefore, we do not seek manuscripts focused purely on sedimentology, structural geology, or geophysics that have a natural home in specialist journals. Rather, we seek manuscripts that treat sedimentary basins as multi-component systems that require a multi-faceted approach to advance our understanding of their development. During deposition and subsidence we are concerned with large-scale geodynamic processes, heat flow, fluid flow, strain distribution, seismic and sequence stratigraphy, modelling, burial and inversion histories. In addition, we view the development of the source area, in terms of drainage networks, climate, erosion, denudation and sediment routing systems as vital to sedimentary basin systems. The underpinning requirement is that a contribution should be of interest to earth scientists of more than one discipline.
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