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首页> 外文期刊>Tectonics >Anisotropic Horizontal Thermal Contraction of Young Oceanic Lithosphere Inferred From Stress Release Due To Oceanic Intraplate Earthquakes
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Anisotropic Horizontal Thermal Contraction of Young Oceanic Lithosphere Inferred From Stress Release Due To Oceanic Intraplate Earthquakes

机译:由板内地震引起的应力释放推断出年轻大洋岩石圈的各向异性水平热收缩

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摘要

How freely the oceanic lithosphere contracts horizontally due to thermal contraction is important information, because it reflects the boundary condition of the oceanic lithosphere, which includes information regarding the magnitude of driving/resisting forces of plate tectonics. We investigated the horizontal thermal contraction of young oceanic lithosphere using an analysis of the intraplate stress release due to oceanic intraplate earthquakes (OCEQs) and numerical simulations. The stress release due to OCEQs in young oceanic lithosphere (5-15 Ma) shows significant differences between the spreading directional component and the ridge-parallel component. The extensional stress release of the ridge-parallel component is 6 times as large as that of the spreading directional component, while the compressional stress release of the ridge-parallel component is one seventh that of the spreading directional component. We conducted a numerical simulation of the thermal stress evolution of the oceanic lithosphere to investigate how the difference in the horizontal contraction rates between the spreading direction and the ridge-parallel direction can explain the observed anisotropic stress release. The result indicates that young oceanic lithosphere (5-15 Ma) barely contracts in the ridge-parallel direction (only 0-30% of the spreading directional contraction rate), while it contracts freely in the spreading direction due to the weakness of the oceanic ridge strength and the low-viscosity asthenosphere. From the results, we constrained the magnitude of the basal traction working on the bottom of the oceanic lithosphere to be smaller than 0.44 MPa.
机译:重要的信息是海洋岩石圈如何因热收缩而水平收缩,因为它反映了海洋岩石圈的边界条件,其中包括有关板块构造的驱动/抵抗力大小的信息。我们使用对由于板内地震(OCEQs)引起的板内应力释放的分析和数值模拟,研究了年轻大洋岩石圈的水平热收缩。在年轻的岩石圈(5-15 Ma)中,由于OCEQs引起的应力释放显示出扩展方向分量和脊平行分量之间存在显着差异。脊平行分量的拉伸应力释放是扩展方向分量的6倍,而脊平行分量的压缩应力释放是扩展方向分量的七分之一。我们对海洋岩石圈的热应力演化进行了数值模拟,以研究扩展方向和脊平行方向之间的水平收缩率差异如何解释观测到的各向异性应力释放。结果表明,年轻的岩石圈(5-15 Ma)几乎不沿着脊平行方向收缩(仅是扩张方向收缩率的0-30%),而由于海洋的弱点,它在扩张方向上自由收缩脊强度和低粘度软流圈。从结果来看,我们将作用在海洋岩石圈底部的基础牵引力的大小限制为小于0.44 MPa。

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