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首页> 外文期刊>Journal of Aerosol Science >Memory effect in the Eulerian Particle deposition in a fully developed turbulent channel flow
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Memory effect in the Eulerian Particle deposition in a fully developed turbulent channel flow

机译:充分发展的湍流通道中欧拉粒子沉积中的记忆效应

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The constitutive relation for the particle Reynolds normal stress in the presence of the memory effect are derived in a form usable in the Eulerian transport equation through averaging the particle-turbulence interactions over an intermediate diffusion time scale. The memory effect in the aerosol deposition in a two-dimensional fully developed turbulent channel flow is estimated by applying the constitutive equation into the turbophoresis term. The calculated results reasonably predicted that with the memory effect a high level of fluctuating particle velocity is maintained down to much closer to the wall than with the simple equilibrium model, and an additional drift velocity towards the wall is induced very near the wall(y~+ approx=8).In the diffusional-impaction regime (0.3 < T: < 30), the additional drift velocity augments the deposition of particles densely accumulated in the viscous sublayer. All the calculated results are in good agreement with the available, though limited, experimental and numerical data.
机译:通过在中间扩散时间尺度上平均颗粒-湍流相互作用,以记忆效应的存在形式得出了颗粒雷诺法向应力的本构关系,可用于欧拉输运方程中。通过将本构方程应用到涡轮电泳项中,可以估算二维完全展开的湍流通道流中气溶胶沉积的记忆效应。计算结果合理地预测,与简单的平衡模型相比,在记忆效应的作用下,高水平的波动粒子速度将保持到更接近壁的高度,并且会在壁附近产生额外的朝向壁的漂移速度(y〜 +大约= 8)。在扩散-碰撞状态下(0.3

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