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Role of thermal refraction in localizing intraplate deformation in southeastern Ukraine

机译:热折射在乌克兰东南部局部板内变形中的作用

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摘要

Although tectonic plates are deformed mostly at their boundaries, plate interiors can also show considerable non-rigid behaviour(1-3). The deformational response of plate interiors to tectonic forces depends on composition and texture, temperature and confining pressure, strain rate, presence of fluids and pre-existing structure. However, the relative importance of these factors has been difficult to establish(4). Here we use numerical modelling constrained by geological and geophysical data to assess the factors controlling intraplate deformation in southeastern Ukraine. The model's starting point was the steady-state thermal structure in an otherwise tectonically stable but heterogeneous lithosphere. Our results show that compressional deformation and uplift of the thick Dniepr-Donets sedimentary basin was facilitated by strain localization resulting from temperature effects (thermal refraction) produced by the contrast in thermal conductivity between the sedimentary fill of the basin and the surrounding crystalline crust. We suggest that in settings where thick sedimentary basins occur in cold lithosphere, intraplate deformation can occur simply because of thermal conductivity contrasts, and the reactivation of inherited mechanical weaknesses may not be necessary.
机译:尽管构造板块大部分在其边界处变形,但板块内部也可能表现出相当大的非刚性行为(1-3)。板内部对构造力的变形响应取决于成分和质地,温度和围压,应变率,流体的存在和既有结构。但是,这些因素的相对重要性很难确定(4)。在这里,我们使用受地质和地球物理数据约束的数值模型来评估控制乌克兰东南部板内变形的因素。该模型的起点是构造稳定但异质的岩石圈中的稳态热结构。我们的研究结果表明,厚的第聂伯-顿涅茨沉积盆地的压缩变形和隆升是由盆地局部沉积物与周围的结晶壳之间的热导率差异产生的温度效应(热折射)引起的应变局部化所促进的。我们建议在寒冷的岩石圈中发生厚沉积盆地的环境中,仅由于导热系数的差异而可能发生板内变形,并且可能不需要重新激活继承的机械弱点。

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