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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Ocean tides in the Weddell Sea: New observations on the Filchner-Ronne and Larsen C ice shelves and model alidation
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Ocean tides in the Weddell Sea: New observations on the Filchner-Ronne and Larsen C ice shelves and model alidation

机译:韦德尔海中的海潮:Filchner-Ronne和Larsen C冰架的新观测和模型滑坡

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Received 19 January 2011; revised 9 March 2011; accepted 14 March 2011; published 15 June 2011. [i] Ocean tides under the large Weddell Sea ice shelves are among the least well observed on Earth. Here we present new, spatially extensive observations of the vertical tidal motion of the Filchner-Ronne and Larsen C ice shelves using Global Positioning System (GPS) data spanning a few weeks to years. We pay particular attention to the major tidal constituents (M2, S2, 01, K1) as well as important GRACE aliasing periods (K2 and S1). We compare the estimated constituents with recent global and regional tide models and find that no single model is the most accurate across all constituents or ice shelves. The root-sum-square errors are 7-8 cm (CATS2008a and TPXO7.2) and 11-12 cm (GOT4.7 and FES2004) with the energetic M2 (RMSE = 4-8 cm) and S2 (4-5 cm) generally dominating these statistics. The FES2004 K1 is particularly inaccurate near the Larsen C Ice Shelf, with errors approaching 20 cm, meaning that GRACE Release 4 estimates of mass change in the northern Antarctic Peninsula will be biased. We find tidal energy at 3, 4, 5, 6 and, weakly, at 7 cycles per day at all of our sites. The largest amplitudes within these bands are at M4, M03 and SP3 and approach 30 mm, although significant spatial variations exist. We show that they generally do not appear to originate in areas of reduced water column in ice shelf grounding zones. Comparing model estimates with our M4, MS4 and MN4 values shows that models do not accurately represent these terms.
机译:2011年1月19日收到; 2011年3月9日修订; 2011年3月14日接受;出版于2011年6月15日。[i]在韦德大海冰架下的海潮是地球上观测得最少的海潮之一。在这里,我们使用全球定位系统(GPS)数周至数年的数据,对Filchner-Ronne和Larsen C冰架的垂直潮汐运动进行了新的空间扩展观测。我们特别注意主要的潮汐成分(M2,S2、01,K1)以及重要的GRACE混叠期(K2和S1)。我们将估计的成分与最新的全球和区域潮汐模型进行了比较,发现在所有成分或冰架上没有哪个模型是最准确的。带有能量M2(RMSE = 4-8 cm)和S2(4-5 cm)的均方根误差为7-8 cm(CATS2008a和TPXO7.2)和11-12 cm(GOT4.7和FES2004) )通常会主导这些统计数据。 FES2004 K1在拉森C冰架附近特别不准确,误差接近20厘米,这意味着GRACE Release 4对南极半岛北部质量变化的估计将有偏差。我们发现所有站点的潮汐能分别为每天3、4、5、6,而每天只有7个循环。尽管存在显着的空间变化,但这些频带内的最大振幅在M4,M03和SP3处接近30 mm。我们表明,它们通常似乎不起源于冰架接地区域水柱减少的区域。将模型估计值与我们的M4,MS4和MN4值进行比较表明,模型无法准确表示这些术语。

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