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首页> 外文期刊>Computational Mechanics: Solids, Fluids, Fracture Transport Phenomena and Variational Methods >High gradient magnetic particle separation in viscous flows by 3D BEM
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High gradient magnetic particle separation in viscous flows by 3D BEM

机译:通过3D BEM在粘性流动中实现高梯度磁性颗粒分离

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The boundary element method was applied to study the motion of magnetic particles in fluid flow under the action of external nonuniform magnetic field. The derived formulation combines the velocity-vorticity resolved Navier-Stokes equations with the Lagrange based particle tracking model, where the one-way coupling with fluid phase was considered. The derived algorithm was used to test a possible design of high gradient magnetic separation in a narrow channel by computing particles trajectories in channel flow under the influence of hydrodynamic and magnetic forces. Magnetic field gradient was obtained by magnetization wires placed outside of the channel. Simulations with varying external magnetic field and flow rate were preformed in order to asses the collection efficiency of the proposed device. We found that the collection efficiency decreases linearly with increasing flow rate. Also, the collection efficiency was found to increase with magnetic field strength only up a saturation point. Furthermore, we found that high collection efficiently is not feasible at high flow velocity and/or at weak magnetic field. Recommendation for optimal choice of external magnetic field and flow rate is discussed.
机译:采用边界元法研究了磁粒子在外界非均匀磁场作用体流动的运动规律。推导的公式将速度-涡度解析的纳维-斯托克斯方程与基于拉格朗日的粒子跟踪模型相结合,其中考虑了与流相的单向耦合。利用推导算法,通过计算流体动力和磁力影响下通道流中的粒子轨迹,测试了窄通道中高梯度磁分离的可能设计。磁场梯度是通过放置在通道外的磁化线获得的。通过模拟不同外部磁场和流速,对所提器件的收集效率进行了评估。我们发现收集效率随着流速的增加而线性降低。此外,发现收集效率仅随着磁场强度的增加而增加。此外,我们发现在高流速和/或弱磁场下高效收集是不可行的。讨论了最佳选择外部磁场和流速的建议。

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