Optimisation of a Stirred Bioreactor through the Use of a Novel Holographic Correlation Velocimetry Flow Measurement Technique |
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Authors: | Mohd-Zulhilmi Ismadi Simon Higgins Chaminda R. Samarage David Paganin Kerry Hourigan Andreas Fouras |
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Affiliation: | 1. Department of Mechanical and Aerospace Engineering, Monash University, Melbourne, Victoria, Australia.; 2. Division of Biological Engineering, Monash University, Melbourne, Victoria, Australia.; 3. School of Physics, Monash University, Melbourne, Victoria, Australia.; Institute for Frontier Medical Sciences, Kyoto University, Japan, |
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Abstract: | We describe a method for measuring three dimensional (3D) velocity fields of a fluid at high speed, by combining a correlation-based approach with in-line holography. While this method utilizes tracer particles contained within the flow, our method does not require the holographic reconstruction of 3D images. The direct flow reconstruction approach developed here allows for measurements at seeding densities in excess of the allowable levels for techniques based on image or particle reconstruction, thus making it suited for biological flow measurement, such as the flow in bioreactor. We outline the theory behind our method, which we term Holographic Correlation Velocimetry (HCV), and subsequently apply it to both synthetic and laboratory data. Moreover, because the system is based on in-line holography, it is very efficient with regard to the use of light, as it does not rely on side scattering. This efficiency could be utilized to create a very high quality system at a modest cost. Alternatively, this efficiency makes the system appropriate for high-speed flows and low exposure times, which is essential for imaging dynamic systems. |
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