No AccessConceptual Sizing and Feasibility Study for a Magnetic Plane ConceptKenneth Decker, Jeff Chin, Andi Peng, Colin Summers, Golda Nguyen, Andrew Oberlander, Gazi Sakib, Nariman Sharifrazi, Christopher Heath, Justin S. Gray and Robert D. FalckKenneth DeckerGeorgia Institute of TechnologySearch for more papers by this author, Jeff ChinNASA Glenn Research CenterSearch for more papers by this author, Andi PengYale UniversitySearch for more papers by this author, Colin SummersUniversity of Washington, SeattleSearch for more papers by this author, Golda NguyenGeorgia Institute of TechnologySearch for more papers by this author, Andrew OberlanderBrown UniversitySearch for more papers by this author, Gazi SakibStony Brook UniversitySearch for more papers by this author, Nariman SharifraziUniversity of California, IrvineSearch for more papers by this author, Christopher HeathNASA Glenn Research CenterSearch for more papers by this author, Justin S. GrayNASA Glenn Research CenterSearch for more papers by this author and Robert D. FalckNASA Glenn Research CenterSearch for more papers by this authorAIAA 2017-0221Session: Hyperloop and Future High-Speed Transportation ConceptsPublished Online:5 Jan 2017https://doi.org/10.2514/6.2017-0221SectionsRead Now ToolsAdd to favoritesDownload citationTrack citations ShareShare onFacebookTwitterLinked InRedditEmail About Previous chapter FiguresReferencesRelatedDetailsSee PDF for referencesCited byA Rapid Solver for the Prediction of Flow-Field of High-Speed Vehicle Moving in a Tube22 August 2022 | Energies, Vol. 15, No. 16Energy and emissions analysis of the hyperloop transportation system21 May 2022 | Environment, Development and Sustainability, Vol. 32The Hyperloop System and Stakeholders: A Review and Future Directions28 July 2021 | Sustainability, Vol. 13, No. 15Hyperloop Academic Research: A Systematic Review and a Taxonomy of Issues26 June 2021 | Applied Sciences, Vol. 11, No. 13Drag-based aerodynamic braking system for the Hyperloop: a numerical studyTransactions of the Canadian Society for Mechanical Engineering, Vol. 45, No. 1How to Connect Hyperloop Technology with the Smart City Transportation Concept23 April 2021Computational fluid dynamics simulation of Hyperloop pod predicting laminar–turbulent transition17 February 2020 | Railway Engineering Science, Vol. 28, No. 1Aerodynamic Design of the Hyperloop ConceptMax M. J. Opgenoord and Philip C. Caplan31 July 2018 | AIAA Journal, Vol. 56, No. 11Analysis and modelling of performances of the HL (Hyperloop) transport system3 September 2018 | European Transport Research Review, Vol. 10, No. 2On the Aerodynamic Design of the Hyperloop ConceptMax M. Opgenoord and Philip Caplan2 June 2017 What's Popular 55th AIAA Aerospace Sciences Meeting 9 - 13 January 2017Grapevine, Texashttps://doi.org/10.2514/6.2017-0221 CrossmarkInformationThis material is declared a work of the U.S. Government and is not subject to copyright protection in the United States. TopicsAerodynamicsAeronautical EngineeringAeronauticsAir Traffic ControlAir Traffic ManagementAirspaceAirspeedAviationBoundary LayersFlow RegimesFluid DynamicsFluid Flow PropertiesVortex Dynamics KeywordsEnergy ConsumptionDepartment of TransportationManufacturing CostAeronauticsAerospace EngineeringAircraft TechnologyFreestream ConditionsBoundary Layer ThicknessElectromagnetic PropulsionMagnetic LevitationPDF Topics Multidisciplinary Design Optimization