...
首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Seismic anisotropy beneath the Afar Depression and adjacent areas: Implications for mantle flow
【24h】

Seismic anisotropy beneath the Afar Depression and adjacent areas: Implications for mantle flow

机译:阿法尔De陷及其附近地区的地震各向异性:对地幔流动的影响

获取原文
获取原文并翻译 | 示例
           

摘要

Shear wave splitting is a robust tool to infer the direction and strength of seismic anisotropy in the lithosphere and underlying asthenosphere. Previous shear wave splitting studies in the Afar Depression and adjacent areas concluded that either Precambrian sutures or vertical magmatic dikes are mostly responsible for the observed anisotropy. Here we report results of a systematic analysis of teleseismic shear wave splitting using all the available broadband seismic data recorded in the Afar Depression, Main Ethiopian Rift (MER), and Ethiopian Plateau. We found that while the –450 measurements on the Ethiopian Plateau and in the MER show insignificant azimuthal variations with MER-parallel fast directions and thus can be explained by a single layer of anisotropy, the –150 measurements in the Afar Depression reveal a systematic azimuthal dependence of splitting parameters with a 7r/2 periodicity, suggesting a two-layer model of anisotropy. The top layer is characterized by a relatively small (0.65 s) splitting delay time and a WNW fast direction that can be attributed to magmatic dikes within the lithosphere, and the lower layer has a larger (2.0 s) delay time and a NE fast direction. Using the spatial coherency of the splitting parameters obtained in the MER and on the Ethiopian Plateau, we estimated that the optimal depth of the source of anisotropy is centered at about 300 km, i.e., in the asthenosphere. The spatial and azimuthal variations of the observed anisotropy can best be explained by a NE directed flow in the asthenosphere beneath the MER and the Afar Depression.
机译:剪切波分裂是推断岩石圈和潜在软流圈中地震各向异性的方向和强度的强大工具。先前在Afar凹陷及其附近地区进行的剪切波分裂研究得出的结论是,前寒武纪缝合线或垂直岩浆堤坝是造成观测到的各向异性的主要原因。在这里,我们报告对远震剪切波分裂进行系统分析的结果,该结果使用了在阿法尔低压,主要埃塞俄比亚裂谷(MER)和埃塞俄比亚高原中记录的所有可用宽带地震数据进行了分析。我们发现,虽然埃塞俄比亚高原和MER的–450测量结果显示与MER平行的快速方向无关紧要的方位角变化,因此可以用单层各向异性来解释,但阿法尔低压的–150测量值却显示出系统的方位角分裂参数具有7r / 2周期性的相关性,表明存在各向异性的两层模型。顶层的特征是分裂延迟时间相对较小(0.65 s),且可归因于岩石圈内岩浆岩的WNW快速方向,而下层具有较大的(2.0 s)延迟时间和NE快速方向。利用在MER和埃塞俄比亚高原上获得的分裂参数的空间相干性,我们估计各向异性源的最佳深度以软流圈为中心约300 km。观测到的各向异性的空间和方位变化可以用MER和Afar凹陷下方的软流圈中的NE定向流最好地解释。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号