从雷利波相速度和接收函数揭示华北克拉通与中亚造山带主要构造边界的精细壳幔结构

IF 3.9 2区 地球科学 Q1 GEOCHEMISTRY & GEOPHYSICS Journal of Geophysical Research: Solid Earth Pub Date : 2024-07-11 DOI:10.1029/2024JB028857
Tingwei Yang, Tao Xu, Yinshuang Ai, Jinhui Yang, Huaiyu Yuan
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引用次数: 0

摘要

郯庐断裂带(TLFZ)和赤峰-开原断裂(CKF)是华北克拉通(NCC)和中亚造山带(CAOB)之间的构造边界。厘清这些构造边界的细化结构对于理解构造单元之间的关系和华北克拉通破坏的异质性至关重要。本研究在这些构造边界上部署了两个线性地震阵列。根据从地震阵列中提取的相位速度频散和接收函数,采用哈密尔顿蒙特卡洛算法对地壳和最上层地幔中的 S 波速度(Vs)进行了联合反演。然后利用 Vs 模型对共同转换点(CCP)叠加中的时差进行校正。CCP 叠加结果表明,边界断层 TLFZ 和 CKF 都是分隔 NCC 和 CAOB 的全地壳断层。Vs 结构显示,NCC 下的地幔有明显的低速异常,地壳内有强烈的地震活动。这表明,NCC 受到了西太平洋俯冲的影响,导致了地壳和地幔的破坏。而 CAOB 则表现出明显的高速异常,地壳结构相对稳定。我们认为,自中生代晚期以来,由于古亚洲洋的关闭和TLFZ的活动,NCC和CAOB经历了结构的改变和破坏。在新生代,TLFZ以东地区的NCC比其他相邻构造单元经历了更严重的破坏。
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Fine Crust-Mantle Structure of the Major Tectonic Boundaries Between the North China Craton and Central Asian Orogenic Belt Revealed From Rayleigh Wave Phase Velocities and Receiver Functions

The Tanlu Fault Zone (TLFZ) and Chifeng-Kaiyuan Fault (CKF) serve as tectonic boundaries between the North China Craton (NCC) and the Central Asian Orogenic Belt (CAOB). Clarifying the refined structure of these tectonic boundaries is crucial for understanding the relationships between the tectonic units and the heterogeneity in the destruction of the NCC. In this study, two linear seismic arrays were deployed across these tectonic boundaries. Based on the phase velocity dispersion and receiver functions extracted from the seismic arrays, the Hamiltonian Monte Carlo algorithm was employed for the joint inversion of the S-wave velocity (Vs) in the crust and uppermost mantle. The Vs model was then used to correct the time differences in common conversion point (CCP) stacking. The CCP stacking results indicate that the boundary faults TLFZ and CKF are both whole-crustal faults that separate the NCC and CAOB. The Vs structure showed a significant low-velocity anomaly in the mantle beneath the NCC, with intense seismic activity within the crust. This suggests that the NCC was affected by the subduction of the Western Pacific, leading to crustal and mantle destruction. In contrast, the CAOB exhibited a clear high-velocity anomaly with relatively stable crustal structures. We believe that the NCC and CAOB have undergone structural modification and destruction due to the closure of the Paleo-Asian Ocean and the activities of the TLFZ since the Late Mesozoic. During the Cenozoic, the region east of the TLFZ experienced more significant destruction in the NCC than the other adjacent tectonic units.

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来源期刊
Journal of Geophysical Research: Solid Earth
Journal of Geophysical Research: Solid Earth Earth and Planetary Sciences-Geophysics
CiteScore
7.50
自引率
15.40%
发文量
559
期刊介绍: The Journal of Geophysical Research: Solid Earth serves as the premier publication for the breadth of solid Earth geophysics including (in alphabetical order): electromagnetic methods; exploration geophysics; geodesy and gravity; geodynamics, rheology, and plate kinematics; geomagnetism and paleomagnetism; hydrogeophysics; Instruments, techniques, and models; solid Earth interactions with the cryosphere, atmosphere, oceans, and climate; marine geology and geophysics; natural and anthropogenic hazards; near surface geophysics; petrology, geochemistry, and mineralogy; planet Earth physics and chemistry; rock mechanics and deformation; seismology; tectonophysics; and volcanology. JGR: Solid Earth has long distinguished itself as the venue for publication of Research Articles backed solidly by data and as well as presenting theoretical and numerical developments with broad applications. Research Articles published in JGR: Solid Earth have had long-term impacts in their fields. JGR: Solid Earth provides a venue for special issues and special themes based on conferences, workshops, and community initiatives. JGR: Solid Earth also publishes Commentaries on research and emerging trends in the field; these are commissioned by the editors, and suggestion are welcome.
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