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首页> 外文期刊>Journal of Physical Oceanography >A New Lagrangian Model of Arctic Sea Ice
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A New Lagrangian Model of Arctic Sea Ice

机译:北极海冰的新拉格朗日模型

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A new Lagrangian sea ice model for the Arctic Ocean has been developed to accommodate the assimilation of integral measures of ice displacement over periods of days or weeks. The model is a two-layer (thick ice and open water) dynamic model with 600-700 cells spaced at roughly 100 km. The force balance equation is solved for each cell with standard wind and water stress terms, a Coriolis term, and an internal ice stress term. The internal stress is found using a viscous-plastic rheology and an elliptical yield curve. The strain rate is determined by the "Smoothed Particle Hydrodynamics" formalism, which determines the spatial derivatives of the velocity by a weighted summation of the velocities of adjacent cells. A length scale of 150 km is used. The model is driven with observed geostrophic winds and climatological-mean ocean currents. Ice growth and melt are found from a seasonal- and thickness-based lookup table because the current focus is on the model dynamics. The model ice velocity simulations are compared to observed buoy motion. Over the 5-yr period 1993-97 the correlation of the daily averaged model velocity with buoy velocities is R = 0.76 (N = 42 553, rms difference = 0.072 m s~(-1), speed bias = +0.009 m s~(-1), angle bias = 8.0°). This compares favorably with the correlation of a state-of-the-art Eulerian coupled ice-ocean model, where R = 0.74 in the summer and 0.66 in the winter over the same 5-yr period.
机译:已经开发出一种新的北冰洋拉格朗日海冰模型,以适应几天或几周期间对冰驱替的整体测度的同化。该模型是一个两层(厚冰和开阔水域)动态模型,其中600-700个像元间隔约100 km。使用标准的风和水应力项,科里奥利项和内部冰应力项为每个单元求解力平衡方程。使用粘塑性流变学和椭圆屈服曲线可以找到内应力。应变率由“平滑粒子流体动力学”形式确定,该形式由相邻单元的速度的加权求和确定速度的空间导数。使用150 km的长度刻度。该模型由观测到的地转风和气候平均海流驱动。可从基于季节和厚度的查找表中找到冰的生长和融化,因为当前的重点是模型动力学。将模型冰速模拟与观察到的浮标运动进行比较。在1993-97年的5年期间,日平均模型速度与浮标速度的相关性为R = 0.76(N = 42553,均方根差= 0.072 ms〜(-1),速度偏差= +0.009 ms〜(- 1),角度偏差= 8.0°)。这与最新的欧拉耦合冰海模型的相关性相吻合,后者在同一五年期间,夏季的R = 0.74,冬季的R = 0.66。

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