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Optimized compact finite difference schemes with high accuracy and maximum resolution

机译:优化的紧凑型有限差分方案,具有高精度和最大分辨率

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摘要

The pentadiagonal compact finite difference scheme and asymmetric boundary schemes are optimized with high accuracy and maximum resolution in this paper. Through Fourier analysis, the optimization is reduced to the problem of finding the minimum of a multivariable nonlinear function with multiple constraints. The advanced sequential quadratic programming method is employed to find the minimum. In order to extend the resolution characteristic of the schemes, the wavenumber domain for optimization is nearly identical to the well-resolved domain, and the maximum well-resolved wavenumber is obtained by means of equal step length searching. The optimized schemes are strictly stable as confirmed by an eigenvalue analysis. The increased performances of the schemes are demonstrated through their application to one- and two-dimensional examples and are compared with other schemes optimized before.
机译:本文对五角形紧致有限差分方案和非对称边界方案进行了优化,具有较高的精度和最大的分辨率。通过傅里叶分析,优化过程简化为找到具有多个约束的多元非线性函数的最小值的问题。采用先进的顺序二次规划方法来找到最小值。为了扩展该方案的分辨率特性,用于优化的波数域与分辨良好的域几乎相同,并且通过等步长搜索来获得最大分辨良好的波数。经特征值分析证实,优化方案严格稳定。通过将它们应用于一维和二维示例,可以证明该方案的性能有所提高,并与之前优化过的其他方案进行了比较。

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