首页> 外文会议>9th International Conference on Indoor Air Quality and Climate Vol.4, Jun 30-Jul 5, 2002, Monterey, California >PREDICTION OF PARTICLE DEPOSITION IN TURBULENT INDOOR FLOWS WITH A 3D LAGRANGIAN MODEL
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PREDICTION OF PARTICLE DEPOSITION IN TURBULENT INDOOR FLOWS WITH A 3D LAGRANGIAN MODEL

机译:用3D拉格朗日模型预测湍流室内流动中的颗粒沉积

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摘要

This study describes the development of a three dimensional (3D) Lagrangian code of particle transport in indoor turbulent flows. This approach consists of integrating transport equations for each particle at each time step to determine successive positions of the particle. The first challenge was to calculate instantaneous velocities of the airflow. The mean component of these velocities was calculated by a classic CFD code. A stochastic process based on the Gosman and Ioannides method generated the fluctuating component. Corrections were applied to better fit experimental results. The second challenge was the determination of the wall-particle interactions. These interactions were evaluated through the simulation of small-scale experiments to measure particles deposition on real textures encountered in building surfaces. Two kinds of boundary conditions were tested: a particle rebound probability and a critical velocity of rebound. The latter seems more appropriate for simulating the interaction between textures and 5.0 μm particles.
机译:这项研究描述了室内湍流中粒子传输的三维(3D)拉格朗日码的发展。该方法包括在每个时间步积分每个粒子的传输方程,以确定粒子的连续位置。第一个挑战是计算气流的瞬时速度。这些速度的平均分量是通过经典CFD代码计算得出的。基于Gosman和Ioannides方法的随机过程产生了波动分量。进行校正以更好地拟合实验结果。第二个挑战是确定壁-颗粒相互作用。通过模拟小规模实验来评估这些相互作用,以测量颗粒在建筑物表面遇到的真实纹理上的沉积。测试了两种边界条件:粒子回弹概率和临界回弹速度。后者似乎更适合于模拟纹理与5.0μm粒子之间的相互作用。

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