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首页> 外文期刊>International Journal of Multiphase Flow >Direct numerical simulation of a particle-laden low Reynolds number turbulent round jet
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Direct numerical simulation of a particle-laden low Reynolds number turbulent round jet

机译:含颗粒低雷诺数湍流圆形射流的直接数值模拟

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Direct numerical simulation method is used for the investigating of particle-laden turbulent flows in a spatially evolution of low Reynolds number axisymmetric jet, and the Eulerian-Lagrangian point-particle approach is employed in the simulation. The simulation uses an explicit coupling scheme between particles and the fluid, which considers two-way coupling between the particle and the fluid. The DNS results are compared well with experimental data with equal Reynolds number (R_e=1700). Our objects are: (i) to investigate the correlation between the particle number density and the fluctuating of fluid streamwise velocity; (ii) to examine whether the three-dimensional vortex structures in the particle-laden jet are the same as that in the free-air jet and how the particles modulate the thee-dimensional vortex structures and turbulence properties with different Stokes number particles; (iii) to discover the particle circumferential dispersion with different Stokes number particles. Our findings: (i) all the particles, regardless of their particle size, tend to preferentially accumulate in the region with large-than-mean fluid streamwise velocity; (ii) the small Stokes number particles take an important part in the modulation of three-dimensional vortex structures, but for the intermediate and larger sized particles, this modulation effect seems not so apparent; (iii) the particle circumferential dispersion is more effective for the smaller and intermediate sized particles, especially for the intermediate sized particles.
机译:直接数值模拟方法用于研究低雷诺数轴对称射流的空间演化过程中充满粒子的湍流,并在模拟中采用欧拉-拉格朗日点粒子方法。该模拟使用粒子与流体之间的显式耦合方案,该方案考虑了粒子与流体之间的双向耦合。将DNS结果与雷诺数相等(R_e = 1700)的实验数据进行比较。我们的目的是:(i)研究颗粒数密度与流体流速度波动之间的关系; (ii)检查带有粒子的射流中的三维涡旋结构是否与自由空气射流中的三维涡旋结构相同,以及粒子如何利用不同的斯托克斯数粒子来调节三维涡旋结构和湍流特性; (iii)发现具有不同斯托克斯数粒子的粒子圆周分散。我们的发现:(i)所有颗粒,无论其颗粒大小如何,都倾向于优先以高于平均的流体流速度聚集在该区域中; (ii)小斯托克斯数粒子在三维涡旋结构的调制中起着重要作用,但是对于中型和较大尺寸的粒子,这种调制效果似乎并不那么明显; (iii)颗粒圆周分散体对于较小和中等尺寸的颗粒,特别是对于中等尺寸的颗粒更有效。

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