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首页> 外文期刊>Journal of geodynamics >Glacial isostatic adjustment in 3-D earth models: Implications for the analysis of tide gauge records along the U.S. east coast
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Glacial isostatic adjustment in 3-D earth models: Implications for the analysis of tide gauge records along the U.S. east coast

机译:3-D地球模型中的冰川等静压调整:对美国东海岸潮汐仪记录分析的启示

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Tide gauge records of recent sea-level change along the U.S. east coast have received significant attention within the literature of glacial isostatic adjustment (GlA). Geographic trends in these tide gauge rates are not reduced by a GIA correction based on a commonly adopted radial viscosity profile (characterized, in particular, by a lower mantle viscosity ~ 1 - 2 × 10~(21) Pa s), and this has led to speculation that the residual trends reflect contributions from neotectonics or oceanographic processes. While the trends can be significantly reduced by adopting an Earth model with a stiffer lower mantle, such a model appears to be incompatible with independent constraints from post-glacial decay times in Hudson Bay, We use a finite-element model of the GIA process to investigate whether 3-D viscosity variations superimposed onto the "common" radial viscosity profile may provide a route to reconciling the east coast sea-level trends. We find that the specific 3-D structure we impose has little impact on the geographic trends in the GIA-corrected rates. However, we do find that the imposed lateral variations in lower mantle viscosity introduce a nearly uniform upward shift of 0.5 mm/yr in GIA-induced sea-level rates along the U.S. east coast. Thus, inferences of regional (U.S. east coast) sea-level rise due to modern melting of ice reservoirs, based on tide gauge rates corrected using 1-D GIA models, may be significantly biased by this simplifying assumption.
机译:在美国冰川等静压调整(GlA)文献中,最近沿美国东海岸海平面变化的潮汐仪记录备受关注。通过基于常用的径向粘度曲线(尤其是通过较低的地幔粘度〜1-2×10〜(21)Pa s)进行的GIA校正,这些潮汐仪速率的地理趋势不会减少,并且具有导致人们猜测残余趋势反映了新构造学或海洋学过程的贡献。尽管采用下地幔更坚硬的地球模型可以显着降低趋势,但这种模型似乎与哈德逊湾冰川后衰落时间的独立约束不兼容。我们使用GIA过程的有限元模型来研究叠加在“常用”径向粘度曲线上的3-D粘度变化是否可以为协调东海岸海平面趋势提供一条途径。我们发现,我们采用的特定3-D结构对GIA校正率的地理趋势影响很小。但是,我们确实发现,在美国东部沿海沿岸的GIA诱发的海平面速率中,较低的地幔粘度引起的横向变化导致0.5 mm / yr的几乎均匀的向上偏移。因此,基于简化的假设,基于使用1-D GIA模型校正的潮汐表计速率,推断由于现代冰库融化导致的区域(美国东海岸)海平面上升的推论。

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