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Efficient flowline simulations of ice-shelf/ocean interactions: Sensitivity studies with a fully coupled model

机译:冰架/海洋相互作用的有效流线模拟:使用完全耦合模型进行灵敏度研究

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摘要

Thermodynamic flowline and plume models for the ice-shelf/ocean system simplify the ice and ocean dynamics sufficiently to allow extensive exploration of parameters affecting ice-sheet stability while including key physical processes. Comparison between laboratory and geophysically based treatments of ice-ocean interface thermodynamics shows reasonable agreement between calculated melt rates, except where steep basal slopes and relatively high ocean temperatures are present. Results are especially sensitive to the poorly known drag coefficient, highlighting the need for additional field experiments to constrain its value. Our experiments also suggest that if the ice-ocean interface near the grounding line is steeper than some threshold, further steepening the slope may drive higher entrainment that limits buoyancy, slowing the plume and reducing melting; if confirmed, this will provide a stabilizing feedback on ice sheets under some circumstances.
机译:用于冰架/海洋系统的热力学流线和羽流模型充分简化了冰和海洋动力学,从而可以广泛探索影响冰盖稳定性的参数,同时包括关键的物理过程。实验室和地球物理方法对冰-海洋界面热力学的比较表明,除了存在陡峭的基坡和相对较高的海洋温度外,在计算的融化速率之间存在合理的一致性。结果对鲜为人知的风阻系数特别敏感,突出显示了需要进行其他野外试验来限制其数值的需求。我们的实验还表明,如果接地线附近的冰洋界面比某个阈值更陡峭,则进一步加大坡度可能会导致更高的夹带,从而限制浮力,减缓羽流并降低融化。如果得到确认,在某些情况下这将为冰盖提供稳定的反馈。

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