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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Remote Control of Filchner-Ronne Ice Shelf Melt Rates by the Antarctic Slope Current
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Remote Control of Filchner-Ronne Ice Shelf Melt Rates by the Antarctic Slope Current

机译:沿南极斜坡电流遥控器的菲克纳 - 罗恩冰货架熔体率

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摘要

Recent work on the Filchner-Ronne Ice Shelf (FRIS) system has shown that a redirection of the coastal current in the southeastern Weddell Sea could lead to a regime change in which an intrusion of warm Modified Circumpolar Deep Water results in large increases in the basal melt rate. Work to date has mostly focused on how increases in the Modified Circumpolar Deep Water crossing the continental shelf break leads directly to heat driven changes in melting in the ice-shelf cavity. In this study, we introduce a Weddell Sea regional ocean model configuration with static ice shelves. We evaluate a reference simulation against radar observations of melting, and find good agreement between the simulated and observed mean melt rates. We analyze 28 sensitivity experiments that simulate the influence of changes in remote water properties of the Antarctic Slope Current on basal melting in the FRIS. We find that remote changes in salinity quasi-linearly modulate the mean FRIS net melt rate. Changes in remote temperature quadratically vary the FRIS net melt rate. In both salinity and temperature perturbations, the response is rapid and transient, with a recovery time-scale of 5-15 years dependent on the size/type of perturbation. We show that the two types of perturbations lead to different changes on the continental shelf, and that ultimately different factors modulate the melt rates in the FRIS cavity. We discuss how these results, are relevant for ocean hindcast simulations, sea level, and melt rate projections of the FRIS.
机译:最近对Filchner-Ronne冰架(FRIS)系统的研究表明,威德尔海东南部沿岸洋流的重新定向可能会导致一种体制变化,在这种变化中,暖改性环极深水的入侵会导致基础融化速率的大幅增加。迄今为止的工作主要集中在穿过大陆架断裂带的改良环极地深水的增加如何直接导致冰架空腔中融化的热驱动变化。在这项研究中,我们介绍了一个带有静态冰架的威德尔海区域海洋模式配置。我们评估了一个参考模拟对熔化的雷达观测,发现模拟和观测的平均熔化速率之间有很好的一致性。我们分析了28个敏感性实验,这些实验模拟了南极斜坡流的远程水属性变化对FRIS中基底融化的影响。我们发现,盐度的远程变化准线性调节平均FRIS净熔融速率。远程温度的变化使FRIS净熔化率呈二次曲线变化。在盐度和温度扰动中,响应迅速且短暂,恢复时间尺度为5-15年,取决于扰动的大小/类型。我们表明,这两种类型的扰动会导致大陆架发生不同的变化,最终不同的因素会调节FRIS腔中的熔体速率。我们将讨论这些结果如何与海洋后向预报模拟、海平面和FRI的融化速率预测相关。

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