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Development of a Laboratory System and 2D Routing Analysis to Determine Solute Mixing Within Aquatic Vegetation
Abstract A laser induced fluorometry (LIF) system was developed to quantify mixing within spatially variable aquatic vegetation. A comparison is made between intrusive fluorometry techniques and the application of LIF, to quantify mixing in real vegetation in the laboratory setting. LIF provides greater spatial resolution when compared to point fluorometry. Furthermore, LIF is non-intrusive. A two-dimensional routing procedure is used to calculate the longitudinal and transverse velocities and mixing coefficients from a single pulse injection of tracer within a vegetation patch.
Development of a Laboratory System and 2D Routing Analysis to Determine Solute Mixing Within Aquatic Vegetation
Abstract A laser induced fluorometry (LIF) system was developed to quantify mixing within spatially variable aquatic vegetation. A comparison is made between intrusive fluorometry techniques and the application of LIF, to quantify mixing in real vegetation in the laboratory setting. LIF provides greater spatial resolution when compared to point fluorometry. Furthermore, LIF is non-intrusive. A two-dimensional routing procedure is used to calculate the longitudinal and transverse velocities and mixing coefficients from a single pulse injection of tracer within a vegetation patch.
Development of a Laboratory System and 2D Routing Analysis to Determine Solute Mixing Within Aquatic Vegetation
West, Patrick (Autor:in) / Hart, James (Autor:in) / Guymer, Ian (Autor:in) / Stovin, Virginia (Autor:in)
01.01.2016
13 pages
Aufsatz/Kapitel (Buch)
Elektronische Ressource
Englisch
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