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Randomized Spectral and Fourier-Wavelet Methods for multidimensional Gaussian random vector fields

机译:多维高斯随机矢量场的随机光谱和傅里叶小波方法

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摘要

We develop some new variations of the Randomized Spectral Method (RSM) and Fourier-Wavelet Method (FWM) for the simulation of homogeneous Gaussian random vector fields based on plane wave decompositions. We then compare the various random field simulation methods through the examination of their efficiency and the quality of the Eulerian and Lagrangian statistical characteristics of a three-dimensional isotropic incompressible random field as simulated by ensemble or by spatial averaging. We find that the RSM, which is easier to implement, can simulate random fields with accurate second order Eulerian and Lagrangian correlations more efficiently than the FWM when the statistics are collected through ensemble averages. When the correlation structure is inferred from spatial averages of a single realization of the random field (through appeal to an ergodic theorem), the FWM is more efficient in simulating an accurate Eulerian correlation function, and both the FWM and RSM are of comparable efficiency in simulating second order Lagrangian statistics accurately.
机译:我们开发了一些随机频谱方法(RSM)和傅里叶小波方法(FWM)的新变体,用于基于平面波分解的均匀高斯随机矢量场的仿真。然后,我们通过检查整体效率或空间平均模拟的三维各向同性不可压缩随机场的效率以及欧拉和拉格朗日统计特征的质量,比较了各种随机场模拟方法。我们发现,当通过集合平均收集统计数据时,RSM易于实现,可以比FWM更有效地模拟具有精确二阶欧拉和拉格朗日相关性的随机字段。当从随机场的单个实现的空间平均值推断相关结构时(通过遍历定理),FWM在模拟准确的欧拉相关函数时效率更高,而FWM和RSM的效率均相当。准确地模拟二阶拉格朗日统计量。

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