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Strong and highly variable push of ocean waves on Southern Ocean sea ice

机译:强力和高度可变的海浪推动南洋海冰

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摘要

Sea ice in the Southern Ocean has expanded over most of the past 20 y, but the decline in sea ice since 2016 has taken experts by surprise. This recent evolution highlights the poor performance of numerical models for predicting extent and thickness, which is due to our poor understanding of ice dynamics. Ocean waves are known to play an important role in ice break-up and formation. In addition, as ocean waves decay, they cause a stress that pushes the ice in the direction of wave propagation. This wave stress could not previously be quantified due to insufficient observations at large scales. Sentinel-1 synthetic aperture radars (SARs) provide high-resolution imagery from which wave height is measured year round encompassing Antarctica since 2014. Our estimates give an average wave stress that is comparable to the average wind stress acting over 50 km of sea ice. We further reveal highly variable half-decay distances ranging from 400 m to 700 km, and wave stresses from 0.01 to 1 Pa. We expect that this variability is related to ice properties and possibly different floe sizes and ice thicknesses. A strong feedback of waves on sea ice, via break-up and rafting, may be the cause of highly variable sea-ice properties.
机译:在过去的20年中,南大洋的海冰一直在扩大,但是自2016年以来海冰的下降使专家感到意外。这一最新进展突显了数值模型在预测范围和厚度方面的不良表现,这是由于我们对冰动力学缺乏了解。众所周知,海浪在冰的破裂和形成中起着重要作用。此外,随着海浪的衰减,它们会产生应力,将冰推向波的传播方向。由于没有足够的大规模观测,因此无法预先量化该波浪应力。自2014年以来,Sentinel-1合成孔径雷达(SAR)提供了高分辨率图像,可从该图像全年测量南极周围的波高。我们的估算得出的平均波应力可与作用于50 km海冰上的平均风应力相媲美。我们进一步揭示了高度可变的半衰变距离,范围从400 m到700 km,波浪应力从0.01到1 Pa。我们期望这种变化与冰的性质以及可能不同的絮凝物大小和冰厚度有关。通过破碎和漂流,海冰上的波浪强烈反馈可能是导致海冰特性高度可变的原因。

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