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Large eddy simulation of passive scalar transport in a stirred tank for different diffusivities

机译:不同扩散率下搅拌釜中被动标量传输的大涡模拟

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摘要

Large eddy simulation of flow and passive scalar transport in a stirred tank has been carried out for three different Reynolds numbers of 4000, 16,000 and 64,000 and corresponding molecular diffusivities of 1.6 × 10~(-4), 4.3 × 10~(-5) and 1.1 × 10~(-5), respectively, using a spectral multi-domain method. The time sequence of concentration and flow fields are explored to investigate the dependency of the concentration development on the flow structure. The sharp gradients of the instantaneous and mean concentrations are distributed around the center of larger ring vortices at high molecular diffusivity. With decreasing molecular diffusivity and increasing Reynolds number, the distribution of concentration becomes much uniform. The eddy diffusivity and subgrid scale dissipation are widely spread from the impeller jet toward outer wall and also the regions possessing small dissipation becomes diminished with increasing Reynolds number and decreasing the molecular diffusivity.
机译:对于三个不同的雷诺数4000、16,000和64,000以及相应的分子扩散度1.6×10〜(-4),4.3×10〜(-5),在搅拌釜中对流动和被动标量传输进行了大涡模拟。和使用频谱多域方法分别为1.1×10〜(-5)。探索浓度和流场的时间顺序,以研究浓度发展对流结构的依赖性。瞬时浓度和平均浓度的尖锐梯度以较大的分子扩散率分布在较大环涡旋的中心附近。随着分子扩散率的降低和雷诺数的增加,浓度分布变得更加均匀。涡流扩散率和亚网格尺度的耗散从叶轮射流向外壁广泛传播,随着雷诺数的增加和分子扩散率的降低,具有小耗散性的区域也逐渐减小。

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