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Published January 2024 | Published
Conference Paper Open

Sensitivity to added mass closure models on predictions of supersonic jet-induced cratering in a particle bed

  • 1. ROR icon California Institute of Technology

Abstract

A recent formulation of supersonic-plume impingement on a granular bed has been shown to have the desirable property of being hyperbolic, thus permitting the physical propagation of pressure waves. This property stemmed from the inclusion of a model for the added mass and a fluid-mediated particle pressure. The present study is devoted to exploring the sensitivity of the results to added-mass models that is pivotal to ensuring hyperbolicity of the equations. Several added-mass models are explored and first evaluated with available shock tube experimental data. The effect of added-mass models on the spatial multidimensional dynamics of supersonic jet-induced cratering in particle beds is then investigated. Particularly, cratering dynamics, ejecta formation and dispersion, and other aspects crucial to avoiding potential disasters during spacecraft controlled landing on planetary bodies are comparatively assessed to understand the range of predictions corresponding to the added mass models. Crucially, several aspects of the results are examined to identify experimental results that would discriminate among models for the purpose of only retaining the model encapsulating the correct physics.

Copyright and License

© 2024 by California Institute of Technology. Published by the American Institute of Aeronautics and Astronautics, Inc., with permission.

Acknowledgement

This study was conducted at the Jet Propulsion Laboratory (JPL) of the California Institute of Technology (Caltech) and was sponsored by the Particle-Surface Interaction, Grand Challenge program from the National Aeronautics and Space Administration (NASA). The computations were performed on the NASA Ames Supercomputer system. Prof. Wai Sun Don (Brown University) provided the parallelization framework.

Files

balakrishnan-bellan-2024-sensitivity-to-added-mass-closure-models-on-predictions-of-supersonic-jet-induced-cratering-in.pdf

Additional details

Created:
June 27, 2024
Modified:
June 27, 2024