Crustal Structure of the Flood Basalt Province of Ethiopia from Constrained 3-D Gravity Inversion

被引:21
|
作者
Mammo, Tilahun [1 ]
机构
[1] Univ Addis Ababa, Sch Earth Sci, Addis Ababa, Ethiopia
关键词
Flood basalts; isostatic anomalies; gravity inversion; crustal/upper mantle structures; underplating; Ethiopia; LARGE IGNEOUS PROVINCES; EAST-AFRICAN RIFT; RED-SEA; CONTINENTAL BREAKUP; EXPERIMENTAL ISOSTASY; RECEIVER FUNCTIONS; AFAR DEPRESSION; TRIPLE JUNCTION; MANTLE PLUMES; DYKE SWARM;
D O I
10.1007/s00024-013-0663-0
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
The Oligocene Afar mantle plume resulted in the eruption of a large volume of basaltic magma, including major sequences of rhyolitic ignimbrites, in a short span of time across Ethiopia. In order to assess the impact of these magmatic processes on the crust and to investigate the general crustal configuration beneath the Ethiopian plateau, northern part of the Main Ethiopian Rift and the Afar depression, analysis and modeling of the gravity field have been conducted. The Bouguer gravity map is dominated by long-wavelength anomalies that primarily arise from the isostatic compensation of the topography. Consequently, anomalies within the crust/upper mantle are masked and quantitative interpretation becomes difficult. The long-wavelength anomalies are approximated using admittance technique and subsequently removed from the Bouguer anomalies to obtain the residual isostatic anomalies. The residual map contains both short- and intermediate-wavelength anomalies related to geologic and tectonic features. The long-wavelength regional isostatic field is used to map the crust-mantle interface and the results are in good agreement with those determined by other geophysical methods. Seismic constrained gravity inversion was performed on the isostatic residual field and series of three-dimensional models have been constructed for the structures of the crust and upper mantle beneath the uplifted and rifted flood basalt province of northern Ethiopia. The inversion results have shown that the NW plateau has thick crust that rests on normal lithospheric mantle. Afar, On the other hand, is marked by thin stretched crust resting on a low-density upper mantle indicating a hotter thermal regime and partial melt. No lithospheric mantle is observed beneath Afar. The models further indicate the presence of an extensive sub-crustal thick (similar to 12 km on average) and high-density (similar to 3.06 gm/cc) mafic accreted igneous layer of fractionated cumulate (magmatic underplating) beneath the NW plateau. The study suggests that the underplate was fundamental to the accretion process and may have played a role in compensating most of the plateau uplift and in localizing stresses.
引用
收藏
页码:2185 / 2206
页数:22
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