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Lagrangian dispersion in sheared flow

机译:剪切流中的拉格朗日色散

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摘要

Two-dimensional Lagrangian trajectories are studied near an idealized ocean front with shear and convergence plus an uncorrelated random walk. Applications include fixed-depth drifters and plankton patches with perfect depth regulation.In the drifter case, observed trajectories need to be interpreted in terms of the ensemble of possibilities. In the plankton case, surveys of abundance and distribution need to be interpreted similarly if vital rates are to be deduced, often involving an individual-based model incorporating both biotic rates and motion. In both cases, forecasting requires such an ensemble description; and both model skill assessment and data assimilation requires knowledge of the ensemble statistical properties.Closed-form expressions are presented for mean and covariance of positions, and for the important case of model-data misfit. The analysis is extended to include plankton parcels - mass and position - for parcels moving within a spatially variable growth rate, originating for example in a temperature gradient. The solutions support the interpretation of Lagrangian displacement data in the presence of shear; evaluating Lagrangian misfit with simulation results; and the use of individual-based models in spatially explicit applications.
机译:在具有剪切和收敛以及不相关的随机游走的理想化海洋附近研究了二维拉格朗日轨迹。应用包括固定深度的漂流器和具有完美深度调节的浮游生物斑块。在漂流器情况下,需要根据可能性的整体来解释观察到的轨迹。在浮游生物的情况下,如果要推导出生命率,则需要类似地解释丰度和分布的调查,这通常涉及结合生物率和运动的基于个体的模型。在两种情况下,预测都需要这样的整体描述。模型技能评估和数据同化都需要了解整体统计属性。对于位置的均值和协方差以及模型数据失配的重要情况,提供了闭式表达式。分析扩展到包括浮游生物地块-质量和位置-用于例如在温度梯度中在空间可变增长率内移动的地块。这些解决方案支持在剪切作用下对拉格朗日位移数据的解释。用模拟结果评估拉格朗日拟合度;以及在空间明确的应用程序中使用基于个人的模型。

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