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首页> 外文期刊>Theoretical and Computational Fluid Dynamics >Comparison of an adaptive wavelet method and nonlinearly filtered pseudospectral methods for two-dimensional turbulence
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Comparison of an adaptive wavelet method and nonlinearly filtered pseudospectral methods for two-dimensional turbulence

机译:二维湍流的自适应小波方法与非线性滤波伪谱方法的比较

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摘要

An adaptive wavelet method for solving the two-dimensional Navier-Stokes equations is compared with nonlinear Fourier filtering and nonlinear wavelet filtering of the pseudospectral method at each time step. The methods are each applied to a highly nonlinear flow typical of two-dimensional turbulence, the merger of two positive vortices pushed together by a weaker negative vortex, and the results are compared with a reference classical pseudospectral method. Nonlinear Fourier filtering uses 1.7 times fewer active modes than the reference simulation at the time of merger (when the flow is most complicated) and retains the overall dynamics and structure of the flow. However, it induces spurious oscillations in the background. Nonlinear wavelet filtering simulation uses 9.2 times fewer modes than the reference simulation at the time of merger, and reduces the errors in the solution. The adaptive wavelet simulation replicates precisely the dynamics and spatial structure of the reference simulation while retaining the high compression rate of the nonlinear wavelet filtering simulation. In addition we observe that the number of active wavelet modes remains quasi-constant during the whole merging process, independent of the strength of the vorticity gradients. On the contrary, the number of active Fourier modes is multiplied by 5 when the vorticity gradients are strongest. The increased accuracy of the adaptive wavelet simulation is due to the security zone added around the active coefficients and to the compression of the nonlinear term of the Navier-Stokes equations in the wavelet basis. These results suggest that nonlinear Fourier filtering of a classical pseudospectral method cannot produce significant improvement, but that the adaptive wavelet method combines a consistently high compression rate with high accuracy.
机译:在每个时间步,将用于求解二维Navier-Stokes方程的自适应小波方法与伪谱方法的非线性傅里叶滤波和非线性小波滤波进行比较。每种方法都适用于二维湍流典型的高度非线性流,两个较弱的负涡旋将正涡旋合并在一起,并将结果与​​参考经典伪谱方法进行比较。非线性傅里叶滤波在合并时(当流程最复杂时)使用的活动模式比参考模拟少1.7倍,并且保留了流程的整体动力学和结构。但是,它会在背景中引起杂散振荡。非线性小波滤波仿真在合并时使用的模式比参考仿真少9.2倍,并减少了解决方案中的误差。自适应小波仿真可精确复制参考仿真的动力学和空间结构,同时保留非线性小波滤波仿真的高压缩率。此外,我们观察到,在整个合并过程中,活动小波模的数量保持准恒定,而与涡度梯度的强度无关。相反,当涡度梯度最强时,活动傅里叶模式的数量乘以5。自适应小波仿真精度的提高是由于在有效系数周围增加了安全区域,以及在小波基础上压缩了Navier-Stokes方程的非线性项。这些结果表明,经典伪谱方法的非线性傅里叶滤波不能产生明显的改善,但是自适应小波方法将始终如一的高压缩率与高精度相结合。

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