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An oblate spheroidal model for multi-frequency acoustic back-scattering of frazil ice

机译:Frazil Ice的多频声学背部散射的弓形球体模型

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Frazil ice plays an important role in the growth of sea ice in the polar oceans. However, measurement of the size distribution of frazil crystals, and their number density, is still a challenging task. Most quantitative observations use acoustic back-scattering complemented with the equivalent sphere assumption. We provide a more realistic theoretical model of small frazil ice crystals by considering the scattering from an oblate spheroid, using properties appropriate for ice in the ocean. We show an alternative method to analyse measurement data, evaluating the numerical implementation against a dataset collected in October 2012 in McMurdo Sound, Antarctica. Our approach is consistent with previous laboratory studies and studies of frazil ice in rivers.
机译:逃离冰在极地海洋海冰的生长中起着重要作用。然而,测量逃离晶体的尺寸分布及其数量密度,仍然是一个具有挑战性的任务。大多数定量观测使用声学背散射互补,等同的球体假设。我们通过考虑来自扁圆形球体的散射来提供更现实的小逃生冰晶理论模型,使用适合海洋中的冰的性质。我们显示另一种方法来分析测量数据,评估2012年10月在McMurdo Sound,南极洲的数据集的数值实现。我们的方法与先前的河流冰冰的实验室研究和研究一致。

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