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Upper mantle viscosity and lithospheric thickness under Iceland

机译:冰岛下的上地幔粘度和岩石圈厚度

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Deglaciation during the Holocene on Iceland caused uplift due to glacial isostatic adjustment. Relatively low estimates for the upper mantle viscosity and lithospheric thickness result in rapid uplift responses to the deglaciation cycles on Iceland. The relatively high temperatures of the upper mantle under the newly formed mid-ocean ridge under Iceland are responsible for the low upper mantle viscosity values. In this study, estimates for lithospheric thickness and upper mantle viscosity under Iceland from glacial isostatic adjustment studies are complemented by a microphysical modelling approach using the theoretical temperature distribution under mid-ocean ridges combined with olivine diffusion and dislocation creep flow laws. The lithospheric thickness (27-40km) and upper mantle viscosity (2×10~(18)-10~(19)Pas) outcomes for the upper mantle recent glaciation under the Vatnajoekull glacier are consistent with previous reports of viscosity and lithospheric thickness from glacial isostatic adjustment studies. A combination of a 40 km thick elastic lithosphere and an average upper mantle viscosity of 5×10~(18) Pa s would suggest that the upper mantle under Iceland is most likely dry. The earlier and larger Weichselian glaciation event (~10,000 BP) on Iceland is predicted to have had a slightly larger upper mantle viscosity ~10~(19) Pa s and a lithospheric thickness of ~100 km. Large lateral variations in upper mantle viscosity and especially lithospheric thickness are expected for Iceland perpendicular to the ridge axis.
机译:由于冰川的等静压调整,冰岛全新世期间的冰川融化引起隆升。上地幔粘度和岩石圈厚度的相对较低的估计值导致对冰岛冰消周期的快速隆升响应。冰岛之下新近形成的中海脊之下的上地幔温度较高,是上地幔粘度值较低的原因。在这项研究中,通过冰川冰压调节研究对冰岛下岩石圈厚度和上地幔粘度的估算,结合了微物理模拟方法,利用中洋脊下的理论温度分布,结合橄榄石扩散和位错蠕变流定律,对岩石圈厚度和上地幔粘度进行了补充。 Vatnajoekull冰川下上地幔近期冰期的岩石圈厚度(27-40km)和上地幔粘度(2×10〜(18)-10〜(19)Pas)的结果与以前的粘度和岩石圈厚度的报道一致冰川均衡调整研究。 40 km厚的弹性岩石圈与平均上地幔粘度为5×10〜(18)Pa s相结合,表明冰岛之下的上地幔最有可能是干燥的。据预测,冰岛的魏氏早期冰期事件(〜10,000 BP)较大,上地幔粘度约为〜10〜(19)Pa s,岩石圈厚度约为〜100 km。垂直于山脊轴线的冰岛,预计上地幔粘度会有较大的横向变化,尤其是岩石圈厚度。

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