Browsing by Author Fletcher, David

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Issue DateTitleAuthor(s)Citation
2006Alternate operating methods for improving the performance of continuous stirred tank reactorsFletcher, David; Aubin, J; Bertrand, J.; Kresta, S.M.; Xuereb, C; Chemical & Biomolecular EngineeringAlternate operating methods for improving the performance of continuous stirred tank reactors, Chemical Engineering Research & Design, vol.84,(A7),2006,pp 569-582
2005Analysis of shear-induced coagulation in an emulsion polymerisation reactor using computational fluid dynamicsElgebrandt, Rebecca; Fletcher, David; Gilbert, Robert; Gomes, Vincent; Romagnoli, Jose; Chemical & Biomolecular Engineering; Chemical & Biomolecular Engineering; Chemistry; Chemical & Biomolecular Engineering; Chemical & Biomolecular EngineeringAnalysis of shear-induced coagulation in an emulsion polymerisation reactor using computational fluid dynamics, Chemical Engineering Science, vol.60,(7),2005,pp 2005-2015
2005Analysis of the dynamic response of a reverse osmosis membrane to time-dependent transmembrane pressure variationFletcher, David; Alexiadis, A.; Bao, J.; Clements, D. J.; Wiley, D E; Chemical & Biomolecular EngineeringAnalysis of the dynamic response of a reverse osmosis membrane to time-dependent transmembrane pressure variation, Industrial & Engineering Chemistry Research, vol.44,(20),2005,pp 7823-7834
2015Application of proper orthogonal decomposition (POD) techniques and scale-resolving CFD simulations to study swirling flow in an axisymmetric sudden expansionAbbas, Ali; Fletcher, David; Howard, Clint Sean; Langrish, Timothy; Chemical & Biomolecular Engineering; Chemical & Biomolecular Engineering; Chemical & Biomolecular Engineering; Chemical & Biomolecular EngineeringApplication of proper orthogonal decomposition (POD) techniques and scale-resolving CFD simulations to study swirling flow in an axisymmetric sudden expansion, Proceedings of the Eleventh International Conference on CFD in the Minerals and Process Industries, vol.N/A, 2015, pp. 1-7
2008Assessment of an Eulerian CFD model for prediction of dilute dispersion in turbulent jetFletcher, David; Langrish, Timothy; Nijdam, Justin; Chemical & Biomolecular Engineering; Chemical & Biomolecular EngineeringAssessment of an Eulerian CFD model for prediction of dilute dispersion in turbulent jet, Applied Mathematical Modelling, vol.32, 12, 2008,pp 2686-2705
2011An assessment of different turbulence models for predicting flow in a baffled tank stirred with a Rushton turbineFletcher, David; Chemical & Biomolecular EngineeringAn assessment of different turbulence models for predicting flow in a baffled tank stirred with a Rushton turbine, Chemical Engineering Science, vol.N/A, N/A, 2011,pp N/A-N/A
2009Assessment of the SST and omega-based Reynolds stress models for the prediction of flow and heat transfer in a square-section U-bendFletcher, David; Geyer, Paul; Haynes, Brian; Chemical & Biomolecular Engineering; Chemical & Biomolecular Engineering; Chemical & Biomolecular EngineeringAssessment of the SST and omega-based Reynolds stress models for the prediction of flow and heat transfer in a square-section U-bend, Computational Thermal Sciences, vol.1, 4, 2009,pp 385-403
2002CDF analysis of spinning cone columns: perdiction of unsteady gas flow and pressure drop in a dry columnFletcher, David; Langrish, Timothy; Makarytchev, Serguei; Chemical & Biomolecular Engineering; Chemical & Biomolecular Engineering; Chemical & Biomolecular EngineeringCDF analysis of spinning cone columns: perdiction of unsteady gas flow and pressure drop in a dry column, Chemical Engineering Journal, vol.87,(3),2002,pp 301-311
2003CDF Analysis of Spinning Cone Columns: Prediction of Unsteady Gas Flow and Pressure Drop in a Dry ColumnFletcher, David; Langrish, Timothy; Makarytchev, Serguei; Chemical & Biomolecular Engineering; Chemical & Biomolecular Engineering; Chemical & Biomolecular EngineeringCDF Analysis of Spinning Cone Columns: Prediction of Unsteady Gas Flow and Pressure Drop in a Dry Column, Chemical Engineering Journal, vol.87,(3),2003,pp 301-311
2005CFD analysis of scale effects in spinning cone columnsFletcher, David; Langrish, Timothy; Makarytchev, Serguei; Chemical & Biomolecular Engineering; Chemical & Biomolecular Engineering; Chemical & Biomolecular EngineeringCFD analysis of scale effects in spinning cone columns, Chemical Engineering Research and Design, vol.83,(8A),2005,pp 951-958
2011CFD approaches for the simulation of hydrodynamics and heat transfer in Taylor flowFletcher, David; Gupta, Raghvendra; Haynes, Brian; Chemical & Biomolecular Engineering; Chemical & Biomolecular Engineering; Chemical & Biomolecular EngineeringCFD approaches for the simulation of hydrodynamics and heat transfer in Taylor flow, Chemical Engineering Science, vol.66, 22, 2011,pp 5575-5584
2010CFD Modelling of Heat Transfer in the Taylor Flow RegimeFletcher, David; Gupta, Raghvendra; Haynes, Brian; Chemical & Biomolecular Engineering; Chemical & Biomolecular Engineering; Chemical & Biomolecular EngineeringCFD Modelling of Heat Transfer in the Taylor Flow Regime, Chemical Engineering Science, vol.65, 6,pp 2094-2107
2007CFD modelling of reverse osmosis membrane flow and validation with experimental resultsFletcher, David; Alexiadis, A.; Bao, J.; Lee, R.H.K.; Vishnoi, A.; Wiley, D. E.; Chemical & Biomolecular EngineeringCFD modelling of reverse osmosis membrane flow and validation with experimental results, Desalination, vol.217,(N/A),2007,pp 242-250
2005CFD prediction of odour dispersion and plume visibility for alumina refinery calciner stacksFletcher, David; Brown, G. J.; Chemical & Biomolecular EngineeringCFD prediction of odour dispersion and plume visibility for alumina refinery calciner stacks, Process Safety and Environmental Protection, vol.83,(3),2005,pp 231-241
2003CFD prediction of odour dispersion and plume visibility for alumina refinery calciner stacksFletcher, David; Brown, G J; Chemical & Biomolecular EngineeringCFD prediction of odour dispersion and plume visibility for alumina refinery calciner stacks, Proceedings of the 3rd Annual Computational Fluid Dynamics In The Minerals And Process Industries:, vol.1,(),2003,pp 111-120
2015CFD simulation of industrial bubble columns: numerical and modelling challenges and successesBarton, Geoffrey; Fletcher, David; Kavanagh, John; McClure, Dale; Chemical & Biomolecular Engineering; Chemical & Biomolecular Engineering; Chemical & Biomolecular Engineering; Chemical & Biomolecular EngineeringCFD simulation of industrial bubble columns: numerical and modelling challenges and successes, Proceedings of the Eleventh International Conference on CFD in the Minerals and Process Industries, vol.N/A, 2015, pp. 1-6
2017CFD simulation of industrial bubble columns: Numerical challenges and model validation successesBarton, Geoffrey; Fletcher, David; Kavanagh, John; McClure, Dale; Chemical & Biomolecular Engineering; Chemical & Biomolecular Engineering; Chemical & Biomolecular Engineering; Chemical & Biomolecular EngineeringCFD simulation of industrial bubble columns: Numerical challenges and model validation successes, Applied Mathematical Modelling, vol.44, N/A, 2017,pp 25-42
2002CFD simulation of precession in sudden pipe expansion flows with low inlet swirlFletcher, David; Guo, Baoyu; Langrish, Timothy; Chemical & Biomolecular Engineering; Chemical & Biomolecular Engineering; Chemical & Biomolecular EngineeringCFD simulation of precession in sudden pipe expansion flows with low inlet swirl, Applied Mathematical Modelling, vol.26,(1),2002,pp 1-15
2012CFD Simulations of the New University of Sydney Boundary Layer Closed Circuit Wind TunnelCochard, Steve; Fletcher, David; Bertholds, A; Civil Engineering; Chemical & Biomolecular EngineeringCFD Simulations of the New University of Sydney Boundary Layer Closed Circuit Wind Tunnel, Proceedings of the 15th Australasian Wind Engineering Society Workshop, vol.N/A, 2012, pp. 61-64
2002A CFD study of unsteady flow in narrow spacer-filled channels for spiral-wound membrane modulesFletcher, David; Schwinge, J; Wiley, D E; Chemical & Biomolecular EngineeringA CFD study of unsteady flow in narrow spacer-filled channels for spiral-wound membrane modules, Desalination, vol.146,(1-3),2002,pp 195-201