基于新旧重力数据分析的中非喀麦隆山地区主要地下不连续面深度估算

Kenfack Jean Victor, Kamguia Joseph, Kagou Dongmo Armand, K. Lucas, Mbog Michel Bertrand, Tassongwa Bernard, Tabod Tabod Charles
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引用次数: 0

摘要

利用重力数据的二维光谱分析对喀麦隆山地区进行了调查,以确定该地区地下界面的深度。新的重力数据与现有的数据相结合,以确定整个地区主要地下不连续的深度。深度由对数功率径向谱在波数带下端的斜率确定。喀麦隆山地下确定了三个主要的地下密度不连续面:(1)0.41±0.02公里,(2)1.26±0.06公里,(3)4.73±0.24公里。与前布格异常相比,该结果具有最好的精度,前布格异常获得的主要地下不连续面为:(1)第一层0.48±0.02 km,第二层1.81±0.09 km,第三层6.87±0.34 km。这种差异可能是由于重力数据的致密化。了解地壳中不同界面的深度对重建地球历史是非常重要的。这些结果将支持整个地区的前瞻性调查。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Estimation of the Depth of Major Subsurface Discontinuities Beneath the Mount Cameroon Region, Central Africa, Based on New and Existing Gravity Data Analysis
The Mount Cameroon region is investigated using 2-D spectral analysis of the gravity data, in order to determine the depth of subsurface interfaces beneath the region. New gravity data are combined to existing ones to determine the depth of the major subsurface discontinuities throughout the region. Depths are established from the slope of the log-power radial spectrum et the lower end of the wave number band. Three major subsurface density discontinuities are determined beneath the Mount Cameroon: (1) 0.41 ±  0.02 km, (2) 1.26 ± 0.06 km, (3) 4.73 ± 0.24 km. This result has the best precision comparing with the those from the former Bouguer anomaly where the major subsurface discontinuities obtained are: (1) 0.48 ± 0.02 km for the first layer, 1.81 ± 0.09 km for the second and 6.87 ± 0.34 km for the third. This difference is probabely due to the densification of gravity data.  The knowledge on the depth of different interfaces in the crust is very important in the reconstitution of the earth history. These results will the support of prospective investigations throughout this region.
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