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首页> 外文期刊>Geophysical Research Letters >Transoceanic infragravity waves impacting Antarctic ice shelves
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Transoceanic infragravity waves impacting Antarctic ice shelves

机译:越洋次重力波影响南极冰架

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摘要

Long-period oceanic infragravity (IG) waves (ca. [250, 50] s period) are generated along continental coastlines by nonlinear wave interactions of storm-forced shoreward propagating swell. Seismic observations on the Ross Ice Shelf show that free IG waves generated along the Pacific coast of North America propagate transoceanically to Antarctica, where they induce a much higher amplitude shelf response than ocean swell (ca. [30, 12] s period). Additionally, unlike ocean swell, IG waves are not significantly damped by sea ice, and thus impact the ice shelf throughout the year. The response of the Ross Ice shelf to IG-wave induced flexural stresses is more than 60 dB greater than concurrent ground motions measured at nearby Scott Base. This strong coupling suggests that IGwave forcing may produce ice-shelf fractures that enable abrupt disintegration of ice shelves that are also affected by strong surface melting. Bolstering this hypothesis, each of the 2008 breakup events of the Wilkins Ice Shelf coincides with wave-model-estimated arrival of IG-wave energy from the Patagonian coast.
机译:风暴沿岸传播的膨胀浪的非线性波相互作用沿着大陆海岸线产生了长周期海洋重力(IG)波(约[250,50] s周期)。在罗斯冰架上的地震观测表明,沿着北美洲太平洋海岸产生的自由中空波跨洋向南极传播,在南极,它们引起的波幅响应比海浪高得多(约[30,12] s周期)。另外,与海浪不同,IG波不会被海冰显着衰减,因此全年都会影响冰架。罗斯冰架对中波引起的弯曲应力的响应比在附近的斯科特基地测得的同时发生的地面运动大60 dB以上。这种强耦合表明,IGwave强迫可能会产生冰架破裂,使冰架突然崩解,而冰架也会受到强烈表面融化的影响。以此假设为依据,威尔金斯冰架的2008年破裂事件中的每一个,都与波模型估计的来自巴塔哥尼亚海岸的IG波能量的到达相吻合。

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