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首页> 外文期刊>Archives of Computational Methods in Engineering >New Trends in Ensemble Forecast Strategy: Uncertainty Quantification for Coarse-Grid Computational Fluid Dynamics
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New Trends in Ensemble Forecast Strategy: Uncertainty Quantification for Coarse-Grid Computational Fluid Dynamics

机译:集合预测策略的新趋势:粗栅计算流体动力学的不确定性量化

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摘要

Numerical simulations of industrial and geophysical fluid flows cannot usually solve the exact Navier-Stokes equations. Accordingly, they encompass strong local errors. For some applications-like coupling models and measurements-these errors need to be accurately quantified, and ensemble forecast is a way to achieve this goal. This paper reviews the different approaches that have been proposed in this direction. A particular attention is given to the models under location uncertainty and stochastic advection by Lie transport. Besides, this paper introduces a new energy-budget-based stochastic subgrid scheme and a new way of parameterizing models under location uncertainty. Finally, new ensemble forecast simulations are presented. The skills of that new stochastic parameterization are compared to that of the dynamics under location uncertainty and of randomized-initial-condition methods.
机译:工业和地球物理流动的数值模拟通常不能解决精确的Navier-Stokes方程。 因此,它们包括强烈的当地错误。 对于一些类似应用的耦合模型和测量 - 需要准确地量化这些错误,并且集合预测是实现这一目标的一种方法。 本文审查了在此方向上提出的不同方法。 特别注意的是谎言运输地点不确定性和随机平流的模型。 此外,本文介绍了一种新的能源预算的随机底图方案和位置不确定性的参数化模型的新方式。 最后,提出了新的集合预测模拟。 将新的随机参数化的技能与位置不确定性和随机初始条件方法的动态进行比较。

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    Espace Nobel SCALIAN 2 Allee Becquerel F-35700 Rennes France;

    INRIA Fluminance Grp Campus Univ Beaulieu F-35042 Rennes France;

    Espace Nobel SCALIAN 2 Allee Becquerel F-35700 Rennes France;

    INRIA Fluminance Grp Campus Univ Beaulieu F-35042 Rennes France;

    INRIA Fluminance Grp Campus Univ Beaulieu F-35042 Rennes France;

    IFREMER LOPS F-29280 Plouzane France;

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