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Flow rate measurement in flows with asymmetric velocity profiles by means of distributed thermal anemometry
Affiliation:1. Helmholtz-Zentrum Dresden-Rossendorf, Institute of Fluid Dynamics, Bautzner Landstraße 400, 01328, Dresden, Germany;2. Technische Universität Dresden, Chair of Imaging Techniques in Energy and Process Engineering, 01062, Dresden, Germany
Abstract:Flow rate in closed conduits is one of the most frequently measured parameters in industrial processes and in gas and water supply. For an accurate measurement, flow meters typically require a fully developed symmetric flow profile with preferably no radial or tangential velocity components. This is commonly secured by mounting flow meters in a pipe at a sufficiently long distance downstream any change in cross-section or pipe direction. In this paper, we introduce a new approach for flow rate measurement of gases or liquids that employs a novel spatially resolving fluid velocity sensor basing on thermal anemometry. The new principle allows accurate flow rate measurements for non-axisymmetric velocity profiles, even directly after pipe bends, T-junctions or other alterations in the pipe geometry. This is exemplified for air flow in three different pipe bend configurations.
Keywords:Flow rate measurement  Installation effects  Thermal anemometry grid sensor
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