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Present-day stress field and tectonic inversion in the Pannonian basin

机译:潘诺尼盆地现今应力场与构造反演

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This paper presents a latest compilation of data on the present-day stress pattern in the Pannonian basin, and its tectonic environment, the Alpine-Dinaric orogens. Extensional formation of the basin system commenced in the early Miocene, whereas its structural reactivation, in the form of gradual basin inversion, has been taking place since Pliocene to recent times. Reconstructed compression and associated horizontal contraction are mainly governed by the convergence between Adria and its buffer, the Alpine belt of orogens. The resulting contemporaneous stress field exhibits important lateral variation resulting in a complex pattern of ongoing tectonic activity. In the Friuli zone of the Southern Alps, where thrust faulting prevails, compression is orthogonal to the strike of the mountain belt. More to the southeast, intense contraction is combined with active strike-slip faulting constituting the dextral Dinaric transpressional corridor. Stresses are transferred far from Adria into the Pannonian basin, and the dominant style of deformation gradually changes from pure contraction through transpression to strike-slip faulting. The importance of late-stage inversion in the Pannonian basin is interpreted in a more general context of structural reactivation of back-arc basins where the sources of compression driving basin inversion are also identified and discussed. The state of recent stress and deformation in the Pannonian basin, particularly in its western and southern part, is governed by the complex interaction of plate boundary and infra-plate forces. The counterclockwise rotation and north-northeast-directed indentation of the Adriatic microplate appears to be of key importance as the dominant source of compression ("Adria-push"). Intra-plate stress sources, such as buoyancy forces associated with an elevated topography, and crustal as well as lithospheric inhomogeneities can also play essential, yet rather local role.
机译:本文介绍了有关Pannonian盆地及其构造环境Alpine-Dinaric造山带的当前应力模式的最新数据。盆地系统的伸展形成始于中新世早期,而自上新世以来,它以逐步盆地反转的形式进行了结构活化。重建的压缩作用和相关的水平收缩作用主要受阿德里亚及其缓冲带(造山带的高山带)之间的辐合作用控制。所得的同时期应力场表现出重要的横向变化,导致正在进行的构造活动的复杂模式。在南阿尔卑斯山的弗留利地区,那里存在逆冲断层,压缩与山带走向正交。在东南部,强烈的收缩与活跃的走滑断层结合在一起,构成了右旋的迪纳里克高压通道。应力从Adria转移到Pannonian盆地,主要的变形方式从单纯的收缩转变到压滑转变为走滑断层。在更广泛的后弧盆地构造活化背景下,解释了潘诺期盆地后期反演的重要性,在该背景下,也确定并讨论了压陷驱动盆地反演的来源。 Pannonian盆地,特别是西部和南部地区,最近的应力和变形状态受板块边界和板下力的复杂相互作用所控制。亚得里亚海微孔板的逆时针旋转和东北偏北压痕似乎是压缩的主要来源(“ Adria-push”)至关重要。板内应力源,例如与地形升高相关的浮力,地壳以及岩石圈的不均匀性,也可能起着至关重要的作用,但在局部上也起着重要作用。

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