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Modeling Heatshield Erosion Due to Dust Particle Impacts for a Martian Entry VehicleThe modeling assumptions and governing equations required to estimate the heatshield surface recession due to dust particle impacts are presented. The dust particle size distribution can be estimated using a modified gamma distribution. The vertical distribution of dust particles in the atmosphere in terms of the ratio of dust particle to atmospheric density can be related to measured or computed values of the dust opacity. The different approaches to coupling the particle and fluid dynamics are discussed. The equations and modeling assumptions presented in this paper are applied to computing the surface recession due to dust particle impacts on the ExoMars Schiaparelli capsule entering the Martian atmosphere during a representative dust storm. The dust surface recession at the stagnation point of about 1 millimeter is about 40 percent of the recession value due to charring ablation.
Document ID
20190031756
Acquisition Source
Ames Research Center
Document Type
Conference Paper
Authors
Palmer, G.
(Analytical Mechanics Associates, Inc. Moffett Field, CA, United States)
Ching, E.
(Stanford Univ. Stanford, CA, United States)
Ihme, M.
(Stanford Univ. Stanford, CA, United States)
Kerkhoff, D.
(Deutsches Zentrum fuer Luft- und Raumfahrt e.V. Cologne, Germany)
Gulhan, A.
(Deutsches Zentrum fuer Luft- und Raumfahrt e.V. Cologne, Germany)
Date Acquired
September 25, 2019
Publication Date
September 30, 2019
Subject Category
Fluid Mechanics And Thermodynamics
Lunar And Planetary Science And Exploration
Report/Patent Number
ARC-E-DAA-TN72719
Meeting Information
Meeting: International Conference on Flight Vehicles, Aerothermodynamics and Re-Entry Missions and Engineering (FAR 2019)
Location: Monopoli
Country: Italy
Start Date: September 30, 2019
End Date: October 3, 2019
Sponsors: European Space Agency. European Space Research and Technology Center, ESTEC
Funding Number(s)
CONTRACT_GRANT: SPEC5723T
CONTRACT_GRANT: NNX15AU58G
CONTRACT_GRANT: NNA15BB15C
CONTRACT_GRANT: SPEC5732
Distribution Limits
Public
Copyright
Public Use Permitted.
Technical Review
NASA Technical Management
Keywords
Thermal Protection Systems
Planetary Entry
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