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Numerical Model for particle deposition and loading in electret filter with rectangular split-type fibers

机译:矩形分体式纤维驻极体滤波器中颗粒沉积与载荷的数值模型

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A simulation model for electret filter made of split type fibers has been developed to study the filtration efficiency as well as the particle loading process. The filter was assumed to be composed of rectangular fibers arranged in staggered array in which the flow field, the electrostatic field and the collection mechanisms were determined by numerical simulation. Single fiber efficiencies under various filtration conditions were calculated and compared with results obtained from semi-empirical expressions derived from experimental results. Influences of particle charge, fiber charge and orientation of fiber on the collection efficiency were evaluated. Finally the particle loading process was studied using the present model. Dendrite growth of particles in equilibrium charge state was simulated. The mechanical efficiency compensation effect was studied by a series of simulations. It is found that the loading of 1.5 μm or larger particles has a significant mechanical collection compensation to the loss in electrostatic efficiency; while for 0.4 μm particles such compensation is slow and insignificant.
机译:为了研究过滤效率以及颗粒的装载过程,已经开发了由分离纤维制成的驻极体过滤器的仿真模型。假设该过滤器是由矩形纤维以交错排列的形式组成的,通过数值模拟确定了流场,静电场和收集机理。计算了在各种过滤条件下的单纤维效率,并将其与从实验结果得出的半经验表达式获得的结果进行了比较。评估了颗粒电荷,纤维电荷和纤维取向对收集效率的影响。最后,使用本模型研究了颗粒加载过程。模拟了平衡电荷状态下粒子的枝晶生长。通过一系列仿真研究了机械效率补偿效果。发现1.5μm或更大的颗粒的负载对静电效率的损失具有显着的机械收集补偿。而对于0.4μm的颗粒,这种补偿是缓慢且微不足道的。

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