徐荟, 吴庆举. 0: 利用背景噪声反演兴蒙造山带阿巴嘎地区地壳高分辨率S波速度结构. 地震学报. DOI: 10.11939/jass.20230067
引用本文: 徐荟, 吴庆举. 0: 利用背景噪声反演兴蒙造山带阿巴嘎地区地壳高分辨率S波速度结构. 地震学报. DOI: 10.11939/jass.20230067
Hui XU, QingJu WU. 0: High-resolution crustal S-wave velocity structure of the Abaga area of Xing'an-Mongolia Orogenic Belt inverted from ambient noise. Acta Seismologica Sinica. DOI: 10.11939/jass.20230067
Citation: Hui XU, QingJu WU. 0: High-resolution crustal S-wave velocity structure of the Abaga area of Xing'an-Mongolia Orogenic Belt inverted from ambient noise. Acta Seismologica Sinica. DOI: 10.11939/jass.20230067

利用背景噪声反演兴蒙造山带阿巴嘎地区地壳高分辨率S波速度结构

High-resolution crustal S-wave velocity structure of the Abaga area of Xing'an-Mongolia Orogenic Belt inverted from ambient noise

  • 摘要: 利用布设于兴蒙造山带内蒙古中部的阿巴嘎台阵记录的连续背景噪声数据,获取了研究区内5-35 s周期的瑞利面波频散,使用蒙特卡罗非线性反演方法建立了阿巴嘎地区地壳高分辨率三维S波速度结构。结果显示,阿巴嘎和达里诺尔火山区上中下地壳均呈低速且下地壳30km处存在明显低速区,可能是下地壳的岩浆囊及上方岩浆通道。阿巴嘎、达里诺尔、达里甘嘎和乌兰哈达火山群在地壳内的低速都是相互连通的。阿巴嘎火山和达里诺尔火山群的岩浆源区在上地幔的最上层,我们进一步推测阿巴嘎和达里诺尔火山群的形成是源于火山区地幔热物质上涌,沿缝合带或断层侵入地壳进而诱发了地表火山活动。

     

    Abstract: Based on the continuous data of the Abaga Array deployed in the central part of Inner Mongolia in the Xing’an-Mongolia Orogenic Belt, the Rayleigh surface wave dispersion of 5-35 s period was obtained. The high-resolution 3-D S-wave velocity structure of the crust of the study area was further established with the Monte Carlo nonlinear inversion method. The results show the crustal velocity of the Abaga and Dalinor volcanic group is low, and there is an obvious low velocity zone at about 30 km depth in the lower crust, which may be the magma chamber in the lower crust of the volcanic groups. The results also show the low velocity in the crust of Abaga volcanic group, Dalinor volcanic group, Dariganga volcanic group and Ulanhada volcanic group are interconnected. The magma sources of the Abaga volcanic group and the Dalinor volcanic group are in the uppermost layer of the upper mantle. Furtherly it is speculated that the formation of the Abaga and Dalinor volcanic group is due to the upwelling of hot material in the upper mantle, which invaded the crust along the suture zones or faults.

     

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