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Does thermal weakening explain basin inversion? Stochastic modelling of the thermal structure beneath sedimentary basins

机译:热弱能解释盆地逆转吗?沉积盆地下热结构的随机模拟

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摘要

The fact that basin inversion is possible long after the cessation of rifting indicates that at least some sedimentary basins are characterized by permanent relative weakness. This paper investigates whether the steady-state thermal structure in itself can provide the necessary pattern of rheological weakening to facilitate compressional inversion of a sedimentary basin. By Monte Carlo simulation of a two-dimensional thermal finite element model we find that, generally, the maximum Moho temperature, and therefore also the weakest upper mantle, is encountered beneath the flanks of the basin. The reason for this is heat refraction deviating away from the central parts of the sedimentary cover and into the adjacent basement highs. The weakest crust, however, is located in the center of the basin due to sediment thermal blanketing, lower confining pressure, and the presence of relatively weak sediments.
机译:在裂谷停止后很长的时间内就有可能发生盆地倒转的事实,这表明至少某些沉积盆地的特征是永久性的相对脆弱。本文研究稳态热结构本身是否可以提供必要的流变弱化模式,以促进沉积盆地的压缩反演。通过二维热有限元模型的蒙特卡洛模拟,我们发现,通常在盆地两侧遇到最高的莫霍面温度,因此也遇到最弱的上地幔。其原因是热折射偏离沉积物覆盖层的中心部分并进入相邻的地下室高处。然而,由于沉积物的热覆盖,较低的围​​压和相对较弱的沉积物的存在,最弱的地壳位于盆地的中心。

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