A platform for research: civil engineering, architecture and urbanism
Optical Measurement Method of Particle Suspension in Stirred Vessels
Suspending particles in liquids is an important and versatile case for industrial stirring processes. By using advanced optical, non‐invasive measurement techniques like particle image velocimetry (PIV), it is possible to gain deep insights into the involved fluid dynamics without affecting the flow. However, for suspensions, the application of PIV is not trivial since both, suspended and tracer particles are present and need to be discerned during experiments. The here presented method development solves this problem and thus leads to a better insight into turbulent kinetic energy distribution, which can be utilized for process optimization through improved stirred vessel design.
Optical Measurement Method of Particle Suspension in Stirred Vessels
Suspending particles in liquids is an important and versatile case for industrial stirring processes. By using advanced optical, non‐invasive measurement techniques like particle image velocimetry (PIV), it is possible to gain deep insights into the involved fluid dynamics without affecting the flow. However, for suspensions, the application of PIV is not trivial since both, suspended and tracer particles are present and need to be discerned during experiments. The here presented method development solves this problem and thus leads to a better insight into turbulent kinetic energy distribution, which can be utilized for process optimization through improved stirred vessel design.
Optical Measurement Method of Particle Suspension in Stirred Vessels
Wolinski, Sven (author) / Ulbricht, Mathias (author) / Schultz, Heyko Juergen (author)
Chemie Ingenieur Technik ; 91 ; 1326-1332
2019-09-01
7 pages
Article (Journal)
Electronic Resource
English
SUSPENSION POSITION MEASUREMENT DEVICE AND SUSPENSION POSITION MEASUREMENT METHOD OF FLOATING CRANE
European Patent Office | 2015
|British Library Online Contents | 2017
|