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The missing craton edge: Crustal structure of the East European Craton beneath the Carpathian Orogen revealed by double-difference tomography

机译:缺少的Craton Edge:喀尔巴阡山脉下方的东欧Craton的地壳结构被双差分断层扫描透露

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摘要

The Trans-European Suture Zone (TESZ) is the most important and extensive continental suture in Europe, marking the edge of the East European Craton (EEC), from the North Sea to the Black Sea. It corresponds to significant changes in surface geology and deep crustal structure, evident in seismic, gravitational and magnetic studies. However, the TESZ disappears beneath the Eastern Carpathians accretionary nappes and Neotethys ophiolites, thrusted over the subducted EEC passive margin in Romania that may have experienced progressive southward break-off generating post-collisional volcanism and anomalous seismicity in the Vrancea region of the South-East Carpathians. To illuminate the missing TESZ section and investigate the change in crustal properties from the Precambrian EEC across the collisional orogen and the impact of related volcanism, we determined a 3D seismic model of P and S wave velocities of the Eastern Carpathians in Romania. With the advent of new permanent broadband and short-period seismic stations of the Romanian Seismic Network, we were able to lower the earthquake magnitude detection threshold to 0.5 M-L, largely expanding the earthquake database and create seismic images of the crust across the Carpathians. Using double-difference tomography and waveform cross correlation differential times, we relocated local crustal earthquakes between 2010 and 2017 and jointly inverted for the 3D P and S-wave velocity structure down to the Moho discontinuity. Our study provides the highest resolution 3D crustal seismic model of this area to date and emphasizes the manifestation of surface tectonic boundaries at lower crustal depths. The TESZ is highlighted at mid-to lower-crustal depths beneath the Carpathian nappes, east of the post-collisional volcanic belt, as a gently-dipping transition from high Vp in the eastern footwall, the dipping Precambrian basement, to low Vp beneath the Carpathian Orogen to the west and a downward decrease in Vp/Vs. In parts of the volcanic region, Vp/Vs ratios increase suggesting the presence of fluids, mafic material and partial melts that may have altered the seismic structure of the TESZ. Relocated hypocenters are vertically distributed in the velocity transition zone from low to high especially beneath the youngest volcanoes in the south, consistent with a hypothetically active magmatic plumbing system. In the northern segment, where volcanoes are older, relatively high velocities are estimated and seismicity tends to cluster in the top 10 km, likely connected to a recently reactivated fault system. Seismicity in the foreland of the East Carpathians aligns along the NW-SE trending major crustal faults and continues beneath the thrust belt, suggesting the East European Craton basement extends beneath the orogen as far as the volcanic belt.
机译:跨欧洲缝线区(Tesz)是欧洲最重要而广泛的大陆缝合线,标志着东欧Craton(EEC)的边缘,从北海到黑海。它对应于地面地质和深层地壳结构的显着变化,在地震,引力和磁性研究中明显。然而,Tesz消失在东部喀尔巴阡山脉炎症的Nappes和Neotethys Ophiolites之下,在罗马尼亚的被推介的EEC被动率上推动了可能在东南部的Vrancea地区产生累进的南部突破的逐步南部突破喀尔巴阡山脉。为了照亮缺少的Tesz部分并调查跨敌意的前令人生畏的皮前武器EEC的地壳性质的变化以及相关火山中的影响,我们确定了罗马尼亚东喀尔巴阡山脉的P和S波速度的3D地震模型。随着新的永久宽带和罗马尼亚地震网络的短时间地震站的出现,我们能够将地震幅度检测阈值降低到0.5 m-L,在很大程度上扩展地震数据库,并在喀尔巴阡山脉的地壳中产生地震图像。使用双差分断层扫描和波形交叉相关差分时间,我们在2010年和2017年之间重新安置当地地区地震,并将3D P和S波速度结构联合倒置为Moho不连续性。我们的研究提供了迄今为止该地区的最高分辨率3D地壳地震模型,并强调了在较低的地壳深度下的表面构造边界的表现。在后碰撞火山腰部的喀尔巴阡山脉内部的中,TESZ突出显示,在碰撞后的火山腰带,作为从东部脚踏壁,浸渍前锋地下室的高VP的轻微过渡到低vp喀尔巴阡山脉对西部的orgen和vp / vs的下降减少。在火山区域的部分中,VP / VS比率增加了可能改变了TESZ的地震结构的流体,镁造材料和部分熔体的存在。重新定位的低旋转器在速度过渡区中垂直分布在南方的最小火山中的速度过渡区中,符合一个假设活动的岩浆管道系统。在北部段中,火山较旧的北部,估计相对高的速度,并且地震性倾向于在10公里处簇形成,可能与最近重新激活的故障系统相连。东喀尔巴阡山脉的前地地震性沿着NW-SE趋势的主要地壳断层对齐,并在推力皮带下面继续,建议东欧Craton地下室延伸到orgens下面,只要火山皮带。

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