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Numerical study of an electret filter composed of an array of staggered parallel rectangular split-type fibers

机译:交错排列的平行矩形分裂型光纤阵列组成的驻极体滤波器的数值研究

摘要

The flow field through a staggered array of parallel, rectangular split-type electret fibers was numerically modeled. The particle trajectory and the collection efficiency were simulated by solving the equation of particle motion, taking into account the effects of diffusion, interception, inertial impaction, and electrostatic forces. The model was validated against results calculated from semiempirical expressions. The model was applied to investigate the role of the inertial impaction and the interception mechanisms in the particle collection by an electret fiber, the particle trajectories under various filtration conditions, the effect of the aspect ratio of the rectangular fiber on the filter penetration, and the distribution of the deposited particles on the surface of the fiber. The simulated results indicate that the inertial impaction and interception mechanisms account for a major portion of neutral particles collected by an electret fiber when the Stokes number is higher than 0.5. For neutral particles, fibers with an aspect ratio of 38/10 have almost the same penetration as fibers with an aspect ratio of 10/38; while for singly charged particles, fibers with an aspect ratio of 38/10 achieve a much lower penetration when the electrophoretic collection mechanism dominates. In addition, it is predicted that a filter composed of fibers with an aspect ratio of 38/10 will result in a lower flow resistance and thus a slower clogging process when the dielectrophoretic collection mechanism dominates.
机译:通过一个交错的平行的矩形分裂式驻极体纤维的交错阵列的流场进行了数值模拟。考虑到扩散,拦截,惯性撞击和静电力的影响,通过求解粒子运动方程来模拟粒子的轨迹和收集效率。根据半经验表达式计算的结果对模型进行了验证。该模型用于研究惯性碰撞和拦截机制在驻极体纤维的颗粒收集中的作用,在各种过滤条件下的颗粒轨迹,矩形纤维的长径比对过滤器穿透的影响以及沉积颗粒在纤维表面的分布。模拟结果表明,当斯托克斯数大于0.5时,惯性碰撞和拦截机制占驻极体纤维收集的中性粒子的主要部分。对于中性粒子,长径比为38/10的纤维具有与长径比为10/38的纤维几乎相同的穿透力;而对于单电荷粒子,当电泳收集机制起主导作用时,长径比为38/10的纤维的渗透率要低得多。此外,据预测,当介电电泳收集机制占主导地位时,由长径比为38/10的纤维组成的过滤器将导致较低的流阻,从而导致较慢的堵塞过程。

著录项

  • 作者

    Cao YH; Cheung CS; Yan ZD;

  • 作者单位
  • 年度 2004
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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