Numerical study on the effect of nozzle-plate distance on the aerosols collection efficiency and deposition on the impaction plate of a multi-nozzle inertial impactor
摘要
Identifying the location of deposited particles on the impaction plate can help analyse them for mineralogical and geochemical purposes. So far, no direct studies have evaluated the effect of nozzle-plate distance (S) on the particle’s depositional arrangement in a multi-nozzle inertial impactor. In this study, an 8-nozzle inertial impactor with two different nozzle-plate distances, S = 8.5 and S = 10.5 mm, is simulated numerically using the Eulerian–Lagrangian approach. The effect of the parameter (S), particles’ aerodynamic diameters and shape factors on the collection efficiency, and particle distribution on the impaction plate are investigated. Particles with five various shape factors