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Strong tidal variations in ice flow observed across the entire Ronne Ice Shelf and adjoining ice streams

机译:在整个Ronne冰架及其附近的冰流中观察到强烈的潮汐变化

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We present a compilation of GPS time series, including those for previously unpublished sites, showing that flow across the entire Ronne Ice Shelf and its adjoining ice streams is strongly affected by ocean tides. Previous observations have shown strong horizontal diurnal and semidiurnal motion of the ice shelf, and surface flow speeds of Rutford Ice Stream (RIS) are known to vary with a fortnightly (Msf) periodicity. Our new data set shows that the Msf flow modulation, first observed on RIS, is also found on Evans, Talutis, Institute, and Foundation ice streams, i.e. on all ice streams for which data are available. The amplitude of the Msf signal increases downstream of grounding lines, reaching up to 20?% of mean flow speeds where ice streams feed into the main ice shelf. Upstream of ice stream grounding lines, decay length scales are relatively uniform for all ice streams but the speed at which the Msf signal propagates upstream shows more variation. Observations and modelling of tidal variations in ice flow can help constrain crucial parameters that determine the rate and extent of potential ice mass loss from Antarctica. Given that the Msf modulation in ice flow is readily observed across the entire region at distances of up to 80?km upstream of grounding lines, but is not completely reproduced in any existing numerical model, this new data set suggests a pressing need to identify the missing processes responsible for its generation and propagation. The new GPS data set is publicly available through the UK Polar Data Centre at http://doi.org/10.5285/4fe11286-0e53-4a03-854c-a79a44d1e356.
机译:我们提供了GPS时间序列的汇编,包括以前未发布的站点的GPS时间序列,表明整个Ronne冰架及其毗邻的冰流的流动都受到海潮的强烈影响。以前的观察结果表明,冰架的水平日和半日运动很强,并且已知拉特福德冰河(RIS)的表面流速每两周(Msf)周期性变化。我们的新数据集显示,在RIS上首次观察到的Msf流量调制,也可以在Evans,Talutis,Institute和Foundation冰流上找到,也就是在所有有数据可用的冰流上。 Msf信号的幅度在接地线的下游增大,达到冰流馈入主冰架的平均流速的20%。在冰流接地线的上游,所有冰流的衰减长度尺度相对均匀,但Msf信号向上游传播的速度显示出更多的变化。对冰流中的潮汐变化进行观察和建模可以帮助约束关键参数,这些参数决定了南极洲潜在冰块流失的速度和程度。鉴于很容易在接地线上游最远80千米的整个区域内观察到整个冰流中的Msf调制,但是在任何现有的数值模型中都无法完全再现,因此这个新的数据集表明迫切需要确定缺少负责其生成和传播的过程。新的GPS数据集可通过英国极地数据中心(http://doi.org/10.5285/4fe11286-0e53-4a03-854c-a79a44d1e356)公开获得。

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