Reference experiment on aerosol particle transport for dynamic situations

Author:

Merbold Sebastian1ORCID,Hasanuzzaman Gazi1,Buchwald Tom2,Schunk Christoph3,Schmeling Daniel4,Volkmann André4,Brinkema Robert4,Hampel Uwe35,Schröder Andreas26,Egbers Christoph1

Affiliation:

1. Department of Aerodynamics and Fluid Mechanics , Brandenburg University of Technology Cottbus-Senftenberg , Cottbus , Germany

2. Chair of Image Based Measurement Techniques , Brandenburg University of Technology Cottbus-Senftenberg , Cottbus , Germany

3. Experimental Thermal Fluid Dynamics , Helmholtz-Zentrum Dresden-Rossendorf , Dresden , Germany

4. Ground Vehicles, German Aerospace Center (DLR) , Institute of Aerodynamics and Flow Technology , Göttingen , Germany

5. Chair of Imaging Techniques in Energy and Process Engineering , Technische Universität Dresden, Dresden , Germany

6. Experimental Methods, German Aerospace Center (DLR) , Institute of Aerodynamics and Flow Technology , Göttingen , Germany

Abstract

Abstract To study airborne transport of aerosol particles by mixed convection and dynamic situations within a closed room, the Cottbus Aerosol Particle Reference Experiment (CARE) was built and equipped, which includes thermal manikins and a spreader dummy. For various flow configurations (location of spreader, heating bodies, windows opened, air ventilation with and without air purification systems) flow visualisation was performed, particulate matter sensors (PMS) measured local particle concentrations, head-mounted camera systems counted particle concentrations of individuals and finally, large field of view Shake-The-Box Particle Tracking delivered velocity fields. The comprehensive experimental configuration of different measurement systems are discussed in terms of their aerosol transport properties and quantitative results, effective application and comparative efficiency explaining the flow dynamics. The findings from these experiments also provide information under which circumstances particularly high concentrations of aerosol particles can be found on which locations.

Funder

Deutsche Forschungsgemeinschaft

Initiative and Networking Fund of the Helmholtz Association of German Research Centres

Helmholtz Association

Publisher

Walter de Gruyter GmbH

Subject

Electrical and Electronic Engineering,Instrumentation

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