No AccessParameter Estimation for a Turbulent Buoyant Jet using Approximate Bayesian ComputationJason Christopher, Caelan Lapointe, Nicholas Wimer, Torrey Hayden, Ian Grooms, Gregory B. Rieker and Peter E. HamlingtonJason ChristopherUniversity of Colorado, BoulderSearch for more papers by this author, Caelan LapointeUniversity of Colorado, BoulderSearch for more papers by this author, Nicholas WimerUniversity of Colorado, BoulderSearch for more papers by this author, Torrey HaydenUniversity of Colorado, BoulderSearch for more papers by this author, Ian GroomsUniversity of Colorado, BoulderSearch for more papers by this author, Gregory B. RiekerUniversity of Colorado, BoulderSearch for more papers by this author and Peter E. HamlingtonUniversity of Colorado, BoulderSearch for more papers by this authorAIAA 2017-0531Session: Modeling and Optimization MethodsPublished Online:5 Jan 2017https://doi.org/10.2514/6.2017-0531SectionsRead Now ToolsAdd to favoritesDownload citationTrack citations ShareShare onFacebookXLinked InRedditEmail About Previous chapter Next chapter FiguresReferencesRelatedDetailsSee PDF for referencesCited byFlow parameter estimation using laser absorption spectroscopy and approximate Bayesian computation4 February 2021 | Experiments in Fluids, Vol. 62, No. 2Autonomic Closure for Turbulent Flows Using Approximate Bayesian ComputationOlga Doronina, Jason, Christopher, Colin A. Z. Towery, Peter Hamlington and Werner J. A. Dahm7 January 2018Parameter Estimation for a Turbulent Buoyant Jet with Rotating Cylinder Using Approximate Bayesian ComputationJason D. Christopher, Caelan Lapointe, Nicholas T. Wimer, Torrey R. Hayden, Ian Grooms, Gregory B. Rieker and Peter E. Hamlington2 June 2017 What's Popular 55th AIAA Aerospace Sciences Meeting 9 - 13 January 2017Grapevine, Texashttps://doi.org/10.2514/6.2017-0531 CrossmarkInformationCopyright © 2017 by the American Institute of Aeronautics and Astronautics, Inc. All rights reserved. TopicsComputational Fluid DynamicsConservation of Momentum EquationsEnergyEnergy ConversionEnergy Forms, Production and ConversionEquations of Fluid DynamicsFlow RegimesFluid DynamicsFluid Flow PropertiesFluid MechanicsHeat EnginesInternal Combustion EnginesNumerical AnalysisThermodynamic PropertiesThermodynamicsThermophysics and Heat Transfer KeywordsComputational Fluid Dynamics SoftwareProbability Distribution FunctionsNonlinear SystemsFluid DynamicsInlet TemperatureNavier Stokes SimulationFluid MechanicsThermodynamic PropertiesCompressible FlowInternal Combustion EnginesDigital Submission Topic Fluid Dynamics