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NUMERICAL SIMULATIONS OF THE FLOW AND PARTICLE DEPOSITION PATTERNS IN MODEL LUNG AIRWAYS

机译:模型肺气通道流动和粒子沉积图案的数值模拟

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The objective of this study is to find the flow and particle deposition patterns in model lung airways. The model is a five generations, 90 degrees non-planar structure with bifurcation angles arrange from 40 to 70 degrees. The local airflow velocity field is the dominant factor for the local concentration of the particles on the wall. The airflow field is obtained by solving three-dimensional Navier -Stokes equation with the standard k-e turbulence model and standard wall function. The trajectories of the solid particles are predicted by integrating the force balance on the particles, which is written in a Lagrangian reference frame. A one way coupled, stochastic model is used to model the influence of turbulence on particle trajectories. A segregated, implicit, steady and three dimension solver is used for the simulations. The Power Law method is used to discrete the transport equations.
机译:本研究的目的是在肺气通道中找到流动和粒子沉积图案。该模型是五代,90度非平面结构,分叉角度排列40至70度。局部气流速度场是墙壁上颗粒局部浓度的主导因素。通过用标准K-E湍流模型和标准壁功能求解三维Navier -Stokes方程来获得气流场。通过将力平衡整合在粒子上,该颗粒的轨迹预测为用拉格朗日参考框架写入。一种方式耦合,随机模型用于模拟湍流对粒子轨迹的影响。分离,隐式,稳定和三维求解器用于模拟。电力法方法用于离散传输方程。

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