“…And also PM2.5 removal efficiency by a single lm can by calculated using eqn (24), once the values of r 0 and q 0 are calculated with eqn (20) and (21). Then the calculation of efficiency by a single lm for increasing lm row numbers n in a GLCA can be repeated for all the lms one by one using the same way, the theoretical result of PM2.5 removal efficiency by a GLCA with 100 water lms can be calculated using eqn (25).…”
Section: Resultsmentioning
confidence: 99%
“…22,23 Particle growth by heterogeneous condensation can be also ignored, because a critical degree of supersaturation of vapor is not achieved. 24 Thus non-dimensional motion equations of PM2.5 with DP and TP in the boundary layer with R and q components are: 25…”
Section: Trajectory Of Pm25 Through a Boundary Layer With Dp And Tpmentioning
“…And also PM2.5 removal efficiency by a single lm can by calculated using eqn (24), once the values of r 0 and q 0 are calculated with eqn (20) and (21). Then the calculation of efficiency by a single lm for increasing lm row numbers n in a GLCA can be repeated for all the lms one by one using the same way, the theoretical result of PM2.5 removal efficiency by a GLCA with 100 water lms can be calculated using eqn (25).…”
Section: Resultsmentioning
confidence: 99%
“…22,23 Particle growth by heterogeneous condensation can be also ignored, because a critical degree of supersaturation of vapor is not achieved. 24 Thus non-dimensional motion equations of PM2.5 with DP and TP in the boundary layer with R and q components are: 25…”
Section: Trajectory Of Pm25 Through a Boundary Layer With Dp And Tpmentioning
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