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Efficiency of Fibrous Filters in Suspension Filtration
      
Diffusion Deposition of Finite Size Particles on Fibrous Filters at Intermediate Knudsen Numbers
      
Deposition of Aerosol Nanoparticles in Fibrous Filters
      
The deposition of aerosol nanoparticles on model fibrous filters of different porosity at small Reynolds numbers was considered.
      
The calculation results agree with the known experiments on the model filters over the Peclet number (Pe) range from 0.05 to 1000.
      
The Deposition of Aerosol Submicron Particles on Ultrafine Fiber Filters
      
The Influence of Fluctuations on the Efficiency of Aerosol Particle Collection with Fibrous Filters
      
The effect of van der Waals forces on the collection of highly dispersed aerosol particles with ultrafine fiber filters was studied theoretically.
      
Inertial Deposition of Aerosol Particles on Fiberous Filters
      
The inertial deposition of aerosol particles on model filters at low and intermediate Stokes numbers and low Reynolds numbers was studied.
      
Diffusional Deposition of Heavy Submicron Aerosol Particles on Fibrous Filters
      
The deposition of Brownian submicron aerosol particles of high density in fibrous filters with allowance for interception effect, influence of gravitational, van der Waals forces, and the gas slip on the surface of ultrafine fibers was considered.
      
The viscous drag of three-dimensional model fibrous filters
      
Deposition of nanoparticles in filters composed of permeable porous fibers
      
The diffusion deposition of nanoparticles is studied from a flow at low Reynolds numbers in model filters composed of permeable circular porous fibers.
      
Deposition of aerosol nanoparticles in filters composed of fibers with porous shells
      
The diffusion deposition of submicron aerosol particles in model filters consisting of fibers covered with permeable porous shells is studied.
      
The results of calculations are given for the dependences of the capture coefficient on the shell radius, the shell permeability, the packing density of the filters, the particle radius, and the flow velocity.
      
Behavioral and Brain Activity Changes in Users of Optical Filters with Fractal Matrix Topology
      
Resistance of fibrous filters in free molecule flow
      
 

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