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Effective thermal expansivity of Maxwellian oceanic lithosphere

机译:麦克斯韦海洋岩石圈的有效热膨胀率

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摘要

The thermal expansivity of oceanic lithosphere is a key mineral physics parameter that controls the rate of seafloor subsidence. Because of strongly temperature-dependent mantle rheology, effective expansivity for lithosphere as a whole could be substantially lower than indicated by mineral physics data. Viscoelastic modeling indicates that this reduction in expansivity could be as high as similar to 15-30% for a plausible range of mantle viscosity. Though brittle relaxation by thermal cracking is likely to alleviate this reduction, tension cracking results in fractured lithosphere with finite crack porosity, thereby prohibiting the recovery of fully equilibrated density. Even with complete brittle relaxation, effective thermal expansivity could still be lower by up to similar to 20%. (C) 2007 Elsevier B.V. All rights reserved.
机译:海洋岩石圈的热膨胀系数是控制海床沉降速率的关键矿物物理参数。由于强烈依赖于温度的地幔流变性,整个岩石圈的有效膨胀率可能大大低于矿物物理数据所表明的范围。粘弹性模型表明,对于可能的地幔粘度范围,这种膨胀率的降低可能高达15-30%。尽管通过热裂变引起的脆性松弛可能会减轻这种减少,但是拉伸裂化会导致岩石圈破裂,孔隙度有限,从而阻碍了完全平衡密度的恢复。即使完全脆性松弛,有效的热膨胀率仍可能降低多达20%。 (C)2007 Elsevier B.V.保留所有权利。

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