Selected article for: "airflow function and particle sizer"

Author: Turgeon, Nathalie; Hamelin, Marie-Ève; Verreault, Daniel; Lévesque, Ariane; Rhéaume, Chantal; Carbonneau, Julie; Checkmahomed, Liva; Girard, Matthieu; Boivin, Guy; Duchaine, Caroline
Title: Design and Validation with Influenza A Virus of an Aerosol Transmission Chamber for Ferrets
  • Document date: 2019_2_19
  • ID: 1pcy24po_9
    Snippet: The D50 diameters at a chamber flow rate of 400 L/min were 5.07 ± 0.18 µm and 6.36 ± 0.22 µm with 40 and 160 open orifices, respectively, and 7.8 ± 0.78 µm at 200 L/min with 160 open orifices ( Figure 6 ). To ensure correct air sampling, measurements were also made at 2" from the air exhaust of cage number three for validation purposes. The D50 values measured at 2" from air exhaust were the same (data not shown). Figure 6 . Particle separa.....
    Document: The D50 diameters at a chamber flow rate of 400 L/min were 5.07 ± 0.18 µm and 6.36 ± 0.22 µm with 40 and 160 open orifices, respectively, and 7.8 ± 0.78 µm at 200 L/min with 160 open orifices ( Figure 6 ). To ensure correct air sampling, measurements were also made at 2" from the air exhaust of cage number three for validation purposes. The D50 values measured at 2" from air exhaust were the same (data not shown). Figure 6 . Particle separator D50 measurement as a function of airflow and the number of separator orifices used. Comparison of particle distribution in cage three with and without a particle separator, as measured with an aerodynamic particle sizer (APS) located at 2" from the particle separator.

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