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Feasibility and Performance Analysis of Magnetohydrodynamics Control for Aerocapture at NeptuneNASA’s most recent Decadal Survey posed a mission to one of the Ice Giants as the top priority for flagship missions in the organization’s future. However, current technologies limit the amount of scientific payload available for future Uranian and Neptunian missions due to the need for fuel for orbit insertion maneuvers. Thus, to maximize the scientific potential of future missions, atmospheric aerocapture has been heavily researched. While atmospheric aerocapture simulations have proven enabling for capturing around Neptune, its deep atmospheric pass requires an aeroshell with thermal protection systems(TPS). Magnetohydrodynamically-controlled aerocapture serves as a potential solution to both fully-propulsive orbit insertion and atmospheric aerocapture. Through NASA Langley’s high-fidelity flight dynamics simulation, the Program to Optimize Simulated Trajectories II, both the atmospheric and magnetohydrodynamic aerocapture methods were simulated and compared for identical missions to Neptune. After applying a guidance algorithm for both methods, the results showed that magnetohydrodynamics has not only the control authority to successfully capture around Neptune, but also the unique advantage of a shallower atmospheric pass which decreases the maximum heat load and the required TPS mass.
Document ID
20220011569
Acquisition Source
Langley Research Center
Document Type
Presentation
Authors
Danny Nguyen
(University of Colorado Boulder Boulder, Colorado, United States)
Soumyo Dutta
(Langley Research Center Hampton, Virginia, United States)
Robert W. Moses
(Independent Contractor Hampton, Virginia, United States)
Hisham K. Ali
(University of Colorado Boulder Boulder, Colorado, United States)
Brian C. Gunter
(Georgia Institute of Technology Atlanta, Georgia, United States)
Date Acquired
July 30, 2022
Subject Category
Astrodynamics
Physics (General)
Meeting Information
Meeting: AAS/AIAA Astrodynamics Specialist Conference
Location: Charlotte, NC
Country: US
Start Date: August 7, 2022
End Date: August 11, 2022
Sponsors: American Astronautical Society
Funding Number(s)
WBS: 981698.01.03.23.03.04
CONTRACT_GRANT: NNH16ZCQ001-CDISS
CONTRACT_GRANT: NNX13AJ46A
Distribution Limits
Public
Copyright
Use by or on behalf of the US Gov. Permitted.
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