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Nested High-Resolution Modelling of the Greenland Summit Region

机译:格陵兰山顶地区的嵌套高分辨率建模

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The dynamics and thermodynamics of the vicinity of Summit, the highest point of the Greenland ice sheet at 72°34′ N, 37°38′ W, is simulated over two climate cycles until the present with a high-resolution regional model coupled to a large-scale model of the entire Greenland ice sheet. For the computation of the age of ice, two different methods are applied, an Eulerian scheme which solves the advective age equation in a frame fixed in space and requires some artificial diffusion, and a Lagrangian particle-tracing scheme which follows the motion of ice particles and is diffusion-free. The transient simulation is based on the shallow-ice approximation which neglects normal stress deviators and shear stresses in vertical planes. For the simulated modern ice sheet, the velocity and stress fields are then re-computed in the Summit region by a first-order algorithm which includes these stresses. The measured ice topography as well as the temperature profiles of the boreholes GRIP and GISP2 are reproduced very well. The simulated Summit motion of 16 ice thicknesses during the last 250,000 years gives a clue for understanding the origin of irregularities observed in the GRIP and GISP2 cores. In a 50 km region around Summit, all stresses are of the same order of magnitude, so that a very precise modelling of the ice dynamics, which is necessary for an accurate ice-core dating, requires that the shallow-ice approximation be locally abandoned.
机译:首脑会议附近的动态和热力学,72°34'N,37°38英寸W的格陵兰冰盖的最高点在两个气候循环中模拟,直到目前具有耦合到A的高分辨率区域模型整个格陵兰冰盖的大规模模型。对于冰的计算,应用了两种不同的方法,一种欧拉方案,其解决了固定在空间中的框架中的平均方程,并且需要一些人工扩散,以及跟随冰颗粒的运动的拉格朗日粒子跟踪方案并且是无扩散的。瞬态仿真基于浅冰近似,浅冰近似,忽略垂直平面中的正常应力偏差和剪切应力。对于模拟的现代冰片,然后通过包括这些应力的一阶算法在峰会区域中重新计算速度和应力场。测量的冰地形以及钻孔夹具和GISP2的温度轮廓非常好。在过去25万年期间,16冰厚度的模拟峰会运动给出了理解手柄和GISP2核中观察到的不规则起源的线索。在峰会周围50公里的地区中,所有应力都是相同的数量级,因此冰动力学的非常精确的建模,这是准确的冰核约会所必需的,要求浅冰近似是局部遗弃的。

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