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Effect of Particle-Fiber Friction Coefficient on Ultrafine Aerosol Particles Clogging in Nanofiber Based Filter

机译:颗粒纤维摩擦系数对纳米纤维基过滤器中超细气溶胶颗粒阻塞的影响

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摘要

Realistic SEM image based 3D filter model considering transition/free molecular flow regime, Brownian diffusion, aerodynamic slip, particle-fiber and particle-particle interactions together with a novel Euclidian distance map based methodology for the pressure drop calculation has been utilized for a polyurethane nanofiber based filter prepared via electrospinning process in order to more deeply understand the effect of particle-fiber friction coefficient on filter clogging and basic filter characteristics. Based on the performed theoretical analysis, it has been revealed that the increase in the fiber-particle friction coefficient causes, firstly, more weaker particle penetration in the filter, creation of dense top layers and generation of higher pressure drop (surface filtration) in comparison with lower particle-fiber friction coefficient filter for which deeper particle penetration takes place (depth filtration), secondly, higher filtration efficiency, thirdly, higher quality factor and finally, higher quality factor sensitivity to the increased collected particle mass. Moreover, it has been revealed that even if the particle-fiber friction coefficient is different, the cake morphology is very similar.
机译:基于逼真的SEM图像的3D过滤器模型(考虑了过渡/自由分子流动状态,布朗扩散,空气动力学滑移,颗粒-纤维和颗粒-颗粒之间的相互作用以及基于欧氏距离图的新颖压降计算方法)已用于聚氨酯纳米纤维通过静电纺丝工艺制备的基过滤器,以便更深入地了解颗粒纤维摩擦系数对过滤器堵塞和基本过滤器特性的影响。根据进行的理论分析,已经发现,纤维-颗粒摩擦系数的增加首先导致颗粒在过滤器中的渗透更弱,形成致密的顶层以及产生更高的压降(表面过滤)较低的颗粒纤维摩擦系数过滤器可实现更深的颗粒渗透(深度过滤);其次,过滤效率更高;其次,更高的品质因数,最后更高的品质因数对增加的收集颗粒质量的敏感性。此外,已经发现,即使颗粒-纤维摩擦系数不同,饼的形态也非常相似。

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