APPLICATION OF THE NONUNIFORM FAST FOURIER TRANSFORM TO THE DIRECT NUMERICAL SIMULATION OF TWO-WAY COUPLED PARTICLE LADEN FLOWS

M. Carbone, M. Iovieno
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引用次数: 4

Abstract

We present the application of the Nonuniform Fast Fourier Transform (NUFFT) to the pseudo-spectral Eulerian–Lagrangian direct numerical simulation of particle-laden flows. In the two-way coupling regime, when the particle feedback on the flow is taken into account, a spectral method requires not only the interpolation of the flow fields at particle positions, but also the Fourier representation of the particle back-reaction on the flow fields on a regular grid. Even though the direct B-spline interpolation is a well-established tool, to the best of our knowledge the reverse projection scheme has never been used, replaced by less accurate linear reverse interpolation or Gaussian regularization. We propose to compute the particle momentum and temperature feedback on the flow by means of the forward NUFFT, while the backward NUFFT is used to perform the B-spline interpolation. Since the backward and forward transformations are symmetric and the (non local) convolution computed in physical space is removed in Fourier space, this procedure satisfies all constraints for a consistent interpolation scheme, and allows an efficient implementation of high-order interpolations. The resulting method is applied to the direct numerical simulation of a forced and isotropic turbulent flow with different particle Stokes numbers in the two-way coupling regime. A marked multifractal scaling is observed in the particle statistics, which implies that the feedback from the particles on the fields is far from being analytic and therefore only high-order methods, like the one here proposed, can provide an accurate representation.
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非均匀快速傅立叶变换在双向耦合颗粒载流直接数值模拟中的应用
本文提出了非均匀快速傅立叶变换(NUFFT)在含颗粒流动的伪谱欧拉-拉格朗日直接数值模拟中的应用。在双向耦合状态下,当考虑粒子对流动的反馈时,谱法不仅需要对粒子位置的流场进行插值,还需要在规则网格上对流场进行粒子反作用的傅里叶表示。尽管直接b样条插值是一个完善的工具,但据我们所知,反向投影方案从未被使用过,取而代之的是不太精确的线性反向插值或高斯正则化。我们提出利用前向NUFFT计算粒子动量和温度对流动的反馈,并利用后向NUFFT进行b样条插值。由于向后和向前变换是对称的,并且在物理空间中计算的(非局部)卷积在傅里叶空间中被移除,因此该过程满足一致插值方案的所有约束,并允许有效地实现高阶插值。将所得方法应用于双向耦合条件下具有不同粒子斯托克斯数的强迫各向同性湍流的直接数值模拟。在粒子统计中观察到明显的多重分形标度,这意味着来自粒子对场的反馈远不是解析的,因此只有高阶方法,如本文提出的方法,才能提供准确的表示。
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