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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >GIA-induced secular variations in the Earth's long wavelength gravity field: Influence of 3-D viscosity variations
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GIA-induced secular variations in the Earth's long wavelength gravity field: Influence of 3-D viscosity variations

机译:GIA诱导的地球长波长重力场中的长期变化:3-D粘度变化的影响

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摘要

Predictions of present day secular variations in the Earth's long wavelength geopotential driven by glacial isostatic adjustment (GIA) have previously been analyzed to Infer the radial profile of mantle viscosity and to constrain ongoing cryospheric mass balance. These predictions have been based on spherically symmetric Earth models, We explore the impact of lateral variations in mantle viscosity using a new finite-volume formulation for computing the response of 3-D Maxwell viscoelastic Earth models. The geometry of the viscosity field is constrained from seismic-to-mographic images of mantle structure, while the amplitude of the lateral viscosity variations is tuned by a free parameter in the modeling. We focus IS on the zonal J, harmonics for degrees l =2.,..,8 and demonstrate that large-scale lateral viscosity variations of two to three orders Of magnitude have a modest. 5 10%. impact on predictions Of J(2), In contrast, predictions of higher degree harmonics show a much greater sensitivity to lateral variation in viscosity structure. We conclude that future analyses of secular trends (for degree l 2) estimated front ongoing (GRACE, CHAMP) satellite missions must incorporate GIA predictions based on 3-D viscoelastic Earth models. (C) 2005 Elsevier B.V. All rights reserved.
机译:先前已经分析了由冰川等静压调节(GIA)驱动的地球长波长地势中当今长期变化的预测,以推断出地幔粘度的径向分布并限制了持续的冰冻圈质量平衡。这些预测基于球形对称地球模型。我们使用新的有限体积公式,用于计算3-D Maxwell粘弹性地球模型的响应,探索了地幔粘度横向变化的影响。黏度场的几何形状受地幔结构的地震成像图像约束,而横向黏度变化的幅度由建模中的自由参数调整。我们将IS集中在带状J上,度为l = 2 ...,8的谐波,并证明2到3个数量级的大规模横向粘度变化是适度的。 5 10%。相反,对J(2)预测的影响,高次谐波的预测显示出对粘度结构横向变化的敏感性更高。我们得出的结论是,对长期趋势(未来2级)的估计未来正在进行中的(GRACE,CHAMP)卫星任务的未来分析必须纳入基于3-D粘弹性地球模型的GIA预测。 (C)2005 Elsevier B.V.保留所有权利。

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