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Mantle flow modeling of the anomalous subsidence of the Silurian Baltic Basin - art. no. 1096

机译:志留系波罗的海盆地异常沉降的地幔流模拟-艺术。没有。 1096

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1] Recent reconstructions of the Silurian Baltic Basin indicate a long-wavelength component of sediment deposition. This deposition extends over 400 km beyond basins predicted on the basis of supracrustal loading in the region; it has been suggested that the discrepancy may be due to dynamic topography associated with mantle flow linked to Silurian plate subduction under Baltica. We test this suggestion using mantle convection simulations, and find that dynamic topography is capable of reconciling the anomalous far-field deposition. These simulations constrain the paleo-dip of the subduction to 40degrees-60degrees, with the range reflecting an uncertainty in the location of the paleo-trench. We furthermore demonstrate that this mantle loading component provides 40-85% of the reconstructed near-field deposition. This result indicates that the slab-induced mantle flow mechanism is a potentially important contributor to the development of the foreland basin, and that previous estimates of the 'orogenic' (i.e., supracrustal) load associated with plate convergence may have been overestimated. [References: 20
机译:[1]志留纪波罗的海盆地最近的重建表明,沉积物是长波分量。这种沉积超出了根据该地区超壳负荷预测的盆地以外的400多公里;有人提出,这种差异可能是由于与波罗的海下志留纪板块俯冲作用有关的地幔流动态地形所致。我们使用地幔对流模拟测试了这一建议,发现动态地形能够调和异常的远场沉积。这些模拟将俯冲的古倾角限制在40度至60度之间,其范围反映了古沟位置的不确定性。我们进一步证明,该地幔加载分量提供了重建近场沉积的40-85%。该结果表明板坯诱发的地幔流动机制可能是前陆盆地发展的潜在重要因素,并且先前对与板块汇聚有关的“造山”(即超壳)载荷的估计可能被高估了。 [参考:20

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