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 >20th Century sea-level change along the eastern US: Unravelling the contributions from steric changes, Greenland ice sheet mass balance and Late Pleistocene glacial loading
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20th Century sea-level change along the eastern US: Unravelling the contributions from steric changes, Greenland ice sheet mass balance and Late Pleistocene glacial loading

机译:美国东部地区的20世纪海平面变化:揭示空间变化,格陵兰冰原质量平衡和晚更新世冰川负荷的作用

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We have considered the influence of ocean temperature and salinity changes, mass changes of the Greenland ice sheet (GIS) and the isostatic response of the solid earth to the most recent glacial cycle on 20th century sea-level change along the US east coast with the intention of better understanding the observed signal as well as determining the potential of the tide gauge data for constraining the recent (past 50-100 yr) mass balance of the GIS and earth viscosity structure. Our results show that the signal due to steric changes is large and displays a complex spatial variation which can account for a significant portion of the observed signal. In contrast, that due to changes in the GIS is relatively small and insensitive to the specific geometry of the mass balance model adopted. As a consequence, the tide gauge data alone are not capable of providing useful constraints on either the magnitude or form of recent GIS mass balance. Our inference of mantle viscosity structure based on the tide gauge data was affected dramatically when the steric effect was accounted for: An earth model with an upper mantle viscosity of 8 x 10(19) Pa s and a lower mantle viscosity of 5 x 10(22) Pa s produced the best fit to the steric-corrected data; the optimal fit to the uncorrected data was obtained for upper and lower mantle viscosities of 5 x 10(20) Pa s and 10(22) Pa s, respectively. (c) 2006 Elsevier B.V. All rights reserved.
机译:我们考虑了海洋温度和盐度变化,格陵兰冰原(GIS)的质量变化以及固体地球对20世纪沿美国东海岸海平面变化的最新冰川周期的等静压响应的影响。目的是为了更好地理解观测到的信号,并确定潮汐仪数据的潜力,以限制GIS和土壤黏性结构的最近(过去50-100年)质量平衡。我们的结果表明,由于空间变化而引起的信号很大,并且显示出复杂的空间变化,这可能占观察信号的很大一部分。相反,由于GIS的变化而引起的变化相对较小,并且对所采用的质量平衡模型的特定几何形状不敏感。结果,仅靠潮位计数据就无法对近期GIS质量平衡的大小或形式提供有用的约束。当考虑空间效应时,我们根据潮汐仪数据得出的地幔粘度结构的推论受到了极大的影响:地幔模型的上地幔粘度为8 x 10(19)Pa s,下地幔粘度为5 x 10( 22)Pas最适合空间校正的数据;对于上,下地幔粘度分别为5 x 10(20)Pa s和10(22)Pa s的情况,获得了对未校正数据的最佳拟合。 (c)2006 Elsevier B.V.保留所有权利。

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