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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Prediction of particle deposition characteristic in 90° square bend: Square bend particle deposition characteristic
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Prediction of particle deposition characteristic in 90° square bend: Square bend particle deposition characteristic

机译:90°方弯颗粒沉积特性的预测:方弯颗粒沉积特性

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摘要

The deposition characteristic of particles at different air velocities and particle Stokes numbers in the 90° square bend was numerically investigated by Reynolds stress transport model (RSM) coupling Lagrangian method. The simulation computations were performed at different flow velocities and bend curvatures of the tube. The result shows that an increase in particle Stokes number induces a reduction of the particle penetration. A similar behavior is also demonstrated when bend curvature of the tube increases. Particle deposition velocity on outer wall is higher than that on other walls. It also can be found that particle's centripetal force results in its deposition on outer wall. However, the gravity is the main reason that causes higher particle deposition velocity on the floor than that on the ceiling. The numerical results of particle penetration show a good agreement with the corresponding experimental data.
机译:通过雷诺应力传递模型(RSM)耦合拉格朗日方法,数值研究了在90°方弯中不同风速下的颗粒沉积特征和斯托克斯数。在不同的流速和管的弯曲曲率下进行了仿真计算。结果表明,颗粒斯托克斯数的增加引起颗粒渗透的降低。当管子的弯曲曲率增加时,也表现出类似的行为。外壁的颗粒沉积速度高于其他壁。还可以发现,粒子的向心力导致其在外壁上的沉积。但是,重力是导致地板上的颗粒沉积速度高于天花板上的颗粒沉积速度的主要原因。颗粒渗透的数值结果与相应的实验数据吻合良好。

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