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Consistency of residence time calculations based on Lagrangian trajectory analysis in ocean modeling

机译:海洋建模中基于拉格朗日轨迹分析的停留时间计算的一​​致性

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摘要

The consistency of residence time calculations for Lagrangian particles is investigated based on simulations of near-stationary flow within an idealized model area consisting of a channel with a semicircular bay incursion. Variation in residence time is analyzed with respect to two modeling parameters; the horizontal grid resolution of the hydrodynamic model and the representation of particle diffusion in the Lagrangian trajectory model. It is found that residence time calculations are highly sensitive to grid resolution effects if the dominating flow features are insufficiently resolved. Particle diffusion contribute to decrease the residence time in under-resolved model simulations. The residence time calculations for non-diffusive and diffusive trajectory simulations converge when the grid resolution is sufficiently high to represent the dominating flow features, but the gap between predictions for different diffusion models remains significant even for the best resolved model simulations in this study. However, analysis of 5 day aggregated results show some consistent trends, particularly for the rate of particle loss at the initial stage of the simulations.
机译:拉格朗日粒子的停留时间计算的一​​致性是基于模拟的理想模型区域内的近似平稳流动进行研究的,该理想模型区域由具有半圆形海湾侵入的通道组成。关于两个建模参数分析了停留时间的变化;流体动力学模型的水平网格分辨率和拉格朗日轨迹模型中粒子扩散的表示。可以发现,如果主要的流动特征没有得到充分解决,则停留时间的计算对网格分辨率的影响高度敏感。在欠解析模型仿真中,粒子扩散有助于减少停留时间。当网格分辨率足够高以表示主要的流动特征时,非扩散和扩散轨迹模拟的停留时间计算会收敛,但是即使对于本研究中最好的解析模型模拟,对于不同扩散模型的预测之间的差距仍然很大。但是,对5天汇总结果的分析显示出一些一致的趋势,特别是对于模拟初始阶段的粒子丢失率。

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