Application of the finite analytic numerical method to a flow-dependent variational data assimilation

IF 1.4 3区 地球科学 Q3 OCEANOGRAPHY
Yan Hu, Wei Li, Xuefeng Zhang, Guimei Liu, Liang Zhang
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引用次数: 0

Abstract

An anisotropic diffusion filter can be used to model a flow-dependent background error covariance matrix, which can be achieved by solving the advection-diffusion equation. Because of the directionality of the advection term, the discrete method needs to be chosen very carefully. The finite analytic method is an alternative scheme to solve the advection-diffusion equation. As a combination of analytical and numerical methods, it not only has high calculation accuracy but also holds the characteristic of the auto upwind. To demonstrate its ability, the one-dimensional steady and unsteady advection-diffusion equation numerical examples are respectively solved by the finite analytic method. The more widely used upwind difference method is used as a control approach. The result indicates that the finite analytic method has higher accuracy than the upwind difference method. For the two-dimensional case, the finite analytic method still has a better performance. In the three-dimensional variational assimilation experiment, the finite analytic method can effectively improve analysis field accuracy, and its effect is significantly better than the upwind difference and the central difference method. Moreover, it is still a more effective solution method in the strong flow region where the advective-diffusion filter performs most prominently.

将有限解析数值方法应用于流动变量数据同化
各向异性扩散滤波器可用于模拟随流量变化的背景误差协方差矩阵,这可以通过求解平流扩散方程来实现。由于平流项具有方向性,因此需要非常谨慎地选择离散方法。有限解析法是求解平流扩散方程的另一种方案。作为分析方法和数值方法的结合,它不仅计算精度高,而且具有自动上风的特点。为了证明它的能力,分别用有限解析法求解了一维稳定和非稳定平流-扩散方程数值示例。此外,还采用了应用更为广泛的上风差分法作为控制方法。结果表明,有限解析法的精度高于上风差分法。在二维情况下,有限解析法仍然具有更好的性能。在三维变分同化试验中,有限解析法能有效提高分析场精度,其效果明显优于上风差分法和中心差分法。此外,在平流-扩散滤波器表现最为突出的强流区域,有限解析法仍然是一种更为有效的求解方法。
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来源期刊
Acta Oceanologica Sinica
Acta Oceanologica Sinica 地学-海洋学
CiteScore
2.50
自引率
7.10%
发文量
3884
审稿时长
9 months
期刊介绍: Founded in 1982, Acta Oceanologica Sinica is the official bi-monthly journal of the Chinese Society of Oceanography. It seeks to provide a forum for research papers in the field of oceanography from all over the world. In working to advance scholarly communication it has made the fast publication of high-quality research papers within this field its primary goal. The journal encourages submissions from all branches of oceanography, including marine physics, marine chemistry, marine geology, marine biology, marine hydrology, marine meteorology, ocean engineering, marine remote sensing and marine environment sciences. It publishes original research papers, review articles as well as research notes covering the whole spectrum of oceanography. Special issues emanating from related conferences and meetings are also considered. All papers are subject to peer review and are published online at SpringerLink.
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