巴颜喀尔地块及其周缘地壳速度结构与组成

Jiyan Lin , Tao Xu , Zhenyu Fan , Yong Qiu , Minjie Chen , Yonghong Duan
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引用次数: 0

摘要

巴颜喀尔地块是中国地震最活跃的地区之一,近年来经历了多次7.0级以上的大地震。它是研究青藏高原与邻近地块相互作用、高原隆升和强震机制的关键区域。纵波速度和地壳成分是不同构造单元性质及其演化改造过程的关键制约因素。基于近20年来在巴颜喀拉地块及周边地区完成的8条深地震测深(DSS)剖面,建立了巴颜喀拉地块、祁连褶皱带、秦岭褶皱带、阿拉好地块、鄂尔多斯地块和四川盆地地壳的一维纵波速度模型。在此基础上建立了不同构造单元的地壳成分模型。结果表明,巴颜喀拉地块地壳厚度沿NNE、NE、SE方向逐渐减小,平均地壳速度相应增大。地壳中的长英质层占地壳总厚度的一半以上。不同构造单元地壳内镁基含量差异显著,这可能反映了巴颜喀尔地块、祁连褶皱带和秦岭褶皱带比鄂尔多斯盆地和四川盆地经历了更为强烈的岩石圈演化过程。该地区的地震活动分布明显受巴颜喀尔块体及其邻区地壳速度和组成非均质性的控制,表明巴颜喀尔块体内部和周围地震频率高、震级大。这些地震特征主要是青藏高原向外扩张过程中强烈的地应力积累和释放所致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Crustal velocity structure and composition of Bayan Har block and surrounding areas
The Bayan Har block, one of China's most seismically active regions, has experienced multiple major earthquakes (≥M 7.0) in recent years. It is a key area for investigating the interactions between the Qinghai-Xizang (Qingzang) Plateau and adjacent blocks, plateau uplift, and strong earthquake mechanisms. P-wave velocity and crustal composition provide key constraints on the properties of distinct tectonic units and their evolutionary modification processes. Based on the results of 8 Deep Seismic Sounding (DSS) profiles completed in the Bayan Har block and surrounding areas over the past 20 years, We constructed one-dimensional P-wave velocity models for the crust of Bayan Har block, Qilian fold belt, Qinling fold belt, Alxa block, Ordos block and Sichuan basin. Furthermore, crustal composition models for different tectonic units were established based on these results. The results reveal that the crustal thickness of the Bayan Har block gradually decreases towards the NNE, NE, and SE directions, while the average crustal velocity increases correspondingly. The felsic layer in the crust accounts for more than half of the total crustal thickness. The mafic content within the crust of different tectonic units exhibits notable variations, which may reflect that the Bayan Har block, Qilian fold belt, and Qinling fold belt have experienced more intensive lithospheric evolution processes compared to Ordos basin and Sichuan basin. The seismicity distribution in this region is significantly controlled by crustal velocity and composition heterogeneity across the Bayan Har block and adjacent areas, which demonstrates that earthquakes within and around the Bayan Har block exhibit both high frequency and larger magnitudes. These seismic characteristics primarily result from intense crustal stress accumulation and release during the outward expansion of the Qingzang Plateau.
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