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- W184480448 abstract "In recent years falling demand for print paper and ambitious targets for reduction ofenergy use have been major factors that has caused the pulp and paper industry todevelop state of the art technologies for reducing energy consumption drastically.A method for achieving the same is to develop and design energy efficient refiners byutilizing hydrodynamic cavitation technology. A parameter study of a venturi designwith a flow obstruction body is conducted in order to investigate the critical parametersfor inducing hydrodynamic cavitation. To reduce computational time and thereby thecosts, a second-level optimization algorithm using a Neural Network for a fixed set ofsamples is applied and investigated.To create a real-life application for the design of venturi, outlet pressure, obstruction sizeand its position are found to be critical for maximizing cavitational zone in the centreaxis of the flow field.This research work does not consider fibres in the flow through the venturi.The project has been conducted at AF Industry AB and is financed by Energimyndigheten,Stora Enso, Holmen, SCA and AF Industry AB" @default.
- W184480448 created "2016-06-24" @default.
- W184480448 creator A5007414196 @default.
- W184480448 date "2014-01-01" @default.
- W184480448 modified "2023-09-23" @default.
- W184480448 title "Optimization and Automated Parameter Study for Cavitating Multiphase Flows in Venturi - CFD Analysis" @default.
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- W184480448 hasPublicationYear "2014" @default.
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