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Adjoint sensitivities of sub-ice shelf melt rates to ocean circulation under Pine Island Ice Shelf, West Antarctica

机译:在南极洲西部松岛冰架下,亚冰架融化率对海洋环流的伴随敏感性

摘要

We investigate the sensitivity of sub-ice-shelf melt rates under Pine Island Ice Shelf, West Antarctica, to changes in the oceanic state using an adjoint ocean model that is capable of representing the flow in sub-ice-shelf cavities. The adjoint code is based on algorithmic differentiation (AD) of the Massachusetts Institute of Technology’s ocean general circulation model (MITgcm). The adjoint model was extended by adding into the AD process the corresponding sub-ice-shelf cavity code, which implements a three-equation thermodynamic melt-rate parameterization to infer heat and freshwater fluxes at the ice-shelf/ocean boundary. The inferred sensitivities reveal dominant timescales of 30–60 days over which the shelf exit is connected to the deep interior via advective processes. They exhibit rich three-dimensional time-evolving patterns that can be understood in terms of a combination of the buoyancy forcing by inflowing water masses, the cavity geometry and the effect of rotation and topography in steering the flow in the presence of prominent features in the bedrock bathymetry. Dominant sensitivity pathways are found over a sill, as well as ‘shadow regions’ of very low sensitivities. To the extent that these transient patterns are robust they carry important information for decision- making in observation deployment and monitoring.
机译:我们使用能够代表子冰架腔中流动的伴随海洋模型,研究了南极西岛松岛冰架下的子冰架融化速率对海洋状态变化的敏感性。伴随代码基于麻省理工学院海洋总体环流模型(MITgcm)的算法差异(AD)。通过将相应的子冰架腔体代码添加到AD过程中,扩展了伴随模型,该模型实现了三方程式热力学融化速率参数化,以推断冰架/海洋边界处的热量和淡水通量。推断的灵敏度显示出30-60天的主导时间尺度,在此期间,货架出口通过对流过程连接到深层内部。它们表现出丰富的三维时间演变模式,这些模式可以通过以下两种方式来理解:流入水团的浮力强迫,腔体几何形状以及在存在明显特征的情况下在控制流动时旋转和地形的影响。基岩测深法。在窗台以及灵敏度非常低的“阴影区域”中发现了主要的敏感性途径。在一定程度上,这些瞬变模式很健壮,它们承载着重要的信息,可用于观察部署和监视中的决策。

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  • 作者

    Heimbach Patrick; Losch Martin;

  • 作者单位
  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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