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首页> 外文期刊>Journal of Marine Research >Estimates of turbulence parameters from Lagrangian data using a stochastic particle model
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Estimates of turbulence parameters from Lagrangian data using a stochastic particle model

机译:使用随机粒子模型从拉格朗日数据估计湍流参数

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A new parametric approach for the study of Lagrangian data is presented. It provides parameter estimates for velocity and transport components and is based on a stochastic model for single particle motion. The main advantage of this approach is that it provides more accurate parameter estimates than existing methods by using the a-priori knowledge of the model. Also, it provides a complete error analysis of the estimates and is valid in presence of observation errors. Unlike nonparametric methods (e.g. Davis, 1991b), our technique depends on a-priori assumptions which require that the model validity be checked in order to obtain reliable estimates. The model used here is the simplest one in a hierarchy of "random flight" models (e.g. Thomson, 1987), and it describes the turbulent velocity as a linear Markov process, characterized by an exponential autocorrelation. Experimental and numerical estimates show that the model is appropriate for mesoscale turbulent flows in homogeneous regions of the upper ocean. More complex models, valid under more general conditions, are presently under study. Estimates of the mean flow, variance, turbulent time scale and diffusivity are obtained. The properties of the estimates are discussed in terms of biases and sampling errors, both analytically and using numerical experiments. Optimal sampling for the measurements is studied and an example application to drifter data from the Brazil/Malvinas extension is presented.
机译:提出了一种新的拉格朗日数据研究的参数方法。它为速度和传输分量提供参数估计,并且基于单个粒子运动的随机模型。这种方法的主要优点是,通过使用模型的先验知识,它可以比现有方法提供更准确的参数估计。而且,它提供了估计的完整误差分析,并且在存在观察误差的情况下有效。与非参数方法不同(例如Davis,1991b),我们的技术依赖先验假设,这些先验假设要求检查模型的有效性以获取可靠的估计。此处使用的模型是“随机飞行”模型层次结构中最简单的模型(例如Thomson,1987年),并将湍流速度描述为线性马尔可夫过程,其特征是指数自相关。实验和数值估算表明,该模型适用于上层海洋同质区域中尺度的湍流。目前正在研究在更一般的条件下有效的更复杂的模型。获得了平均流量,方差,湍流时间尺度和扩散率的估计值。估计的性质在偏差和抽样误差方面进行了讨论,无论是分析方法还是使用数值实验方法。研究了用于测量的最佳采样,并给出了来自巴西/马尔维纳斯扩展区的漂移数据示例应用。

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