dc.creatorUniversidad San Sebastián
dc.creatorUniversidad San Sebastián
dc.creatorUniversidad San Sebastián
dc.creatorUniversidad San Sebastián
dc.creatorUniversidad San Sebastián
dc.creatorTarud, F.
dc.creatorAybar, M.
dc.creatorPizarro, G.
dc.creatorCienfuegos, R.
dc.creatorPastén, P.
dc.date.accessioned2023-05-24T04:20:58Z
dc.date.available2023-05-24T04:20:58Z
dc.date.created2023-05-24T04:20:58Z
dc.date.issued2010-08
dc.identifier1061-4303
dc.identifierhttps://repositorio.uss.cl/handle/uss/3755
dc.identifier10.2175/106143009X425889
dc.description.abstractEnhancing the performance of clarifiers requires a thorough understanding of their hydraulics. Fluorescence spectroscopy and acoustic doppler velocimeter (ADV) profiling generally have been used separately to evaluate secondary settlers. We propose that simultaneous use of these techniques is needed to obtain a more reliable and useful evaluation. Experiments were performed on laboratory- and full-scale clarifiers. Factors affecting Fluorescein and Rhodamine 6G properties were identified. Underestimations up to 500% in fluorescence intensities may be derived from differential fluorescence quenching by oxygen. A careful control and interpretation of fluorescent dye experiments is needed to minimize artifacts in real settings. While flow-curve tests constructed under controlled conditions provided a more accurate overall quantitative estimation of the hydraulic performance, ADV velocity and turbulence profiling provided a detailed spatial understanding of flow patterns that was used to troubleshoot and fix the causes of hydraulic short-circuits.
dc.languageeng
dc.relationWater Environment Research
dc.titleIntegrating fluorescent dye flow-curve testing and acoustic doppler velocimetry profiling for in situ hydraulic evaluation and improvement of clarifier performance
dc.typeArtículo


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