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首页> 外文期刊>Journal of mathematical fluid mechanics >Abridged Continuous Data Assimilation for the 2D Navier-Stokes Equations Utilizing Measurements of Only One Component of the Velocity Field
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Abridged Continuous Data Assimilation for the 2D Navier-Stokes Equations Utilizing Measurements of Only One Component of the Velocity Field

机译:利用仅速度分量的一个分量的二维Navier-Stokes方程的简化连续数据同化

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摘要

We introduce a continuous data assimilation (downscaling) algorithm for the two-dimensional Navier-Stokes equations employing coarse mesh measurements of only one component of the velocity field. This algorithm can be implemented with a variety of finitely many observables: low Fourier modes, nodal values, finite volume averages, or finite elements. We provide conditions on the spatial resolution of the observed data, under the assumption that the observed data is free of noise, which are sufficient to show that the solution of the algorithm approaches, at an exponential rate asymptotically in time, to the unique exact unknown reference solution, of the 2D Navier-Stokes equations, associated with the observed (finite dimensional projection of) velocity.
机译:我们为二维Navier-Stokes方程引入了一种连续数据同化(降尺度)算法,该方程使用仅对速度场的一个分量进行粗网格测量。该算法可以用多种有限的可观察的形式实现:低傅立叶模式,节点值,有限的体积平均值或有限的元素。我们在观测数据没有噪声的假设下提供了观测数据空间分辨率的条件,这些条件足以表明该算法的解在时间上渐近地以指数速率接近唯一的确切未知数。二维Navier-Stokes方程的参考解,与观测到的速度(有限维投影)相关。

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