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Statistics of Particle Accumulation in Spatially Developing Turbulent Boundary Layers

机译:空间扩展湍流边界层中颗粒堆积的统计

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We present the results of a Direct Numerical Simulation of a particle-laden spatially developing turbulent boundary layer up to Re_θ = 2500. Two main features differentiate the behavior of inertial particles in a zero-pressure-gradient turbulent boundary layer from the more commonly studied case of a parallel channel flow. The first is the variation along the streamwise direction of the local dimensionless parameters defining the fluid-particle interactions. The second is the coexistence of an irrotational free-stream and a near-wall rotational turbulent flow. As concerns the first issue, an inner and an outer Stokes number can be defined using inner and outer flow units. The inner Stokes number governs the near-wall behavior similarly to the case of channel flow. To understand the effect of a laminar-turbulent interface, we examine the behavior of particles initially released in the free stream and show that they present a distinct behavior with respect to those directly injected inside the boundary layer. A region of minimum concentration occurs inside the turbulent boundary layer at about one displacement thickness from the wall. Its formation is due to the competition between two transport mechanisms: a relatively slow turbu- lent diffusion towards the buffer layer and a fast turbophoretic drift towards the wall.
机译:我们介绍了一个高达Re_θ= 2500的充满粒子的空间发展湍流边界层的直接数值模拟的结果。两个主要特征将惯性粒子在零压力梯度湍流边界层中的行为与更常见的情况区分开来平行通道流。第一个是定义流体-颗粒相互作用的局部无量纲参数沿流向的变化。第二个是非旋转自由流和近壁旋转湍流的并存。关于第一个问题,可以使用内部和外部流量单位定义内部和外部斯托克斯数。内斯托克斯数控制着近壁行为,类似于通道流动的情况。为了了解层流湍流界面的影响,我们检查了自由流中最初释放的粒子的行为,并显示出与直接注入边界层内部的粒子相比,它们表现出不同的行为。在湍流边界层内部以距壁大约一个位移的厚度出现最小浓度的区域。它的形成归因于两种传输机制之间的竞争:湍流向缓冲层的扩散相对较慢,湍流向壁的漂移较快。

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