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Numerical study of mixing of passive and reactive scalars in two-dimensional turbulent flows using orthogonal wavelet filtering

机译:正交小波滤波在二维湍流中被动标量和反应标量混合的数值研究

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We present the application of orthogonal wavelet filtering to study mixing and chemical reaction in 2D turbulent flows. We show that the coherent vortices are responsible for the mixing dynamics. Therefore, we perform direct numerical simulation of decaying and statistically stationary homogeneous isotropic 2D turbulence. We split the flow in each time step into coherent vortices represented by few wavelet modes and containing most of the kinetic energy and an incoherent background flow. We quantify the mixing properties of both flow components and demonstrate that efficient mixing of scalars is triggered by the coherent flow, while the influence of the incoherent flow on the mixing corresponds to pure diffusion. These results hold for both passive scalars and reactive scalars with simple and multi-step kinetics. (C) 2003 Elsevier Science Ltd. All rights reserved. [References: 36]
机译:我们提出了正交小波滤波在二维湍流中研究混合和化学反应的应用。我们证明相干涡是造成混合动力学的原因。因此,我们对衰减和统计上稳定的均质各向同性二维湍流进行直接数值模拟。我们将每个时间步长中的流分成由少量小波模式表示并包含大部分动能和非相干背景流的相干涡流。我们量化了两个流动分量的混合特性,并证明了标量的有效混合是由相干流触发的,而非相干流对混合的影响相当于纯扩散。这些结果对于具有简单和多步动力学的被动标量和反应标量都成立。 (C)2003 Elsevier ScienceLtd。保留所有权利。 [参考:36]

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