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Numerical study on particle deposition in rough channels with large-scale irregular roughness

机译:具有大尺度不规则粗糙度的粗糙通道内颗粒沉积的数值研究

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We studied particle deposition in rough channels, using the W-M fractal function to characterize a large-scale irregular surface with a root-mean-square roughness of 0.5mm. The flow was numerically investigated by Reynolds stress model, and the particles were tracked by a Lagrangian particle model. An analysis of the flow field in a rough channel shows that the roughness enhances the max flow velocity and the pressure drop in the channel. It induces several eddies in the concave of the rough surface. We also compared particle deposition in a rough channel with particle deposition in a smooth channel. This comparison shows that the roughness significantly enhances the particle deposition of small particles, but the enhancement decreases with the increase of particle size. Moreover, the particle deposition ratio decreases with increasing flow velocity.
机译:我们研究了在粗糙通道中的颗粒沉积,使用W-M分形函数来表征具有0.5mm均方根粗糙度的大规模不规则表面。通过雷诺应力模型对流动进行了数值研究,并通过拉格朗日粒子模型跟踪了粒子。对粗糙通道中流场的分析表明,粗糙度提高了最大流速和通道中的压降。它在粗糙表面的凹面中诱发了多个涡流。我们还比较了粗糙通道中的颗粒沉积与光滑通道中的颗粒沉积。该比较表明,粗糙度显着增强了小颗粒的颗粒沉积,但是该增强随着颗粒尺寸的增加而减小。而且,颗粒沉积率随着流速的增加而降低。

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