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- W87128905 abstract "Publisher Summary Mixing is the process of bringing initially separated fluid elements into close contact, usually with the purpose to achieve a certain mass exchange of reactants. Especially the molecular diffusion at the smallest dynamical scales of the turbulent flow is important, since at these scales the chemical reactions take place. The small scale flow locally behaves as a laminar flow, consisting of vortices that are driven by the larger scale motion. The vortices mix the fluid by rolling up, thereby creating multiple layers of fluid. This chapter discusses a Laser Induced Fluorescence experiment that measures the time evolution of a 3D concentration field. This way, the mixing of a passive scalar into the turbulent flow of a tubular reactor is studied at Re = 4,000. In the experiment a fluorescent dye is radially injected in the flow system. The mixing process is visualized by exciting the dye molecules with a sheet of laser light. The resulting fluorescence, being proportional to the local dye concentration, is imaged with a high-speed digital camera, yielding 2D images of the concentration field. By sweeping the laser sheet in the depth direction, parallel to itself, a 3D realization of the concentration field can be measured from the successive, closely spaced 2D images. As such 3D concentration fields can be captured successively in time, the technique is denoted as four-dimensional laser induced fluorescence (4D-LIF)." @default.
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- W87128905 date "2000-01-01" @default.
- W87128905 modified "2023-09-27" @default.
- W87128905 title "Four-dimensional Laser Induced Fluorescence measurements of micro mixing in a tubular reactor" @default.
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- W87128905 doi "https://doi.org/10.1016/b978-044450476-0/50007-8" @default.
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