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首页> 外文期刊>Journal of marine systems: journal of the European Association of Marine Sciences and Techniques >Lagrangian modelling of plankton motion: From deceptively simple random walks to Fokker-Planck and back again
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Lagrangian modelling of plankton motion: From deceptively simple random walks to Fokker-Planck and back again

机译:拉格朗日浮游生物运动建模:从看似简单的随机游走到福克普朗克再返回

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摘要

The movement of plankton, either by turbulent mixing or their own inherent motility, can be simulated in a Lagrangian framework as a random walk. Validation of random walk simulations is essential. There is a continuum of mathematically valid stochastic integration schemes upon which random walk simulations depend, each of which lead to radically different macro-scale dynamics as expressed in their corresponding Fokker-Planck equations. In addition, diffusivity is not a unique parameter describing a random walk and its corresponding Fokker-Planck equation. Spatially varying translation speed and turn frequency have different effects on population distributions. Validation requires extra information either in the form of the well-mixed condition for physical diffusion, or in detailed information on the sensing ability, internal state modulation and swimming response for plankton motility. (C) 2007 Elsevier B.V. All rights reserved.
机译:浮游生物的运动,无论是通过湍流混合还是自身固有的运动性,都可以在拉格朗日框架中模拟为随机游动。验证随机游走仿真至关重要。存在一系列数学上有效的随机积分方案,随机游走仿真取决于该方案,每种方案都导致了以其相应的Fokker-Planck方程表示的根本不同的宏观尺度动力学。另外,扩散率不是描述随机游动及其对应的Fokker-Planck方程的唯一参数。空间变化的翻译速度和转折频率对人口分布有不同的影响。验证需要额外的信息,要么是物理扩散的充分混合条件的形式,要么是有关浮游生物运动的感知能力,内部状态调节和游泳反应的详细信息。 (C)2007 Elsevier B.V.保留所有权利。

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