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Fiber-Based Multi-Resolution Imaging and Multidimensional X-ray Diagnostics for Ejecta Dynamics in Plume Surface InteractionsThe interaction of a rocket exhaust plume with a particulate-laden surface creates a complex, multiphase flow field that can destabilize the vehicle and damage nearby equipment. This study investigates two methods for capturing the particulate dynamics of plume-surface interaction (PSI): optical fiber-based multi-resolution Mie scattering and multi-dimensional X-ray radiography. Mie scattering was used to track PSI-interacted particles, trace their paths, and measure velocities. While effective for the jet periphery and early PSI stages, the technique becomes limited as the scattering cross-section increases over time due to particle displacement from the soil bed, causing the core to become optically dense and appear as a luminous, opaque region. To address this, X-ray radiography was explored as a complementary method for visualizing the optically dense core. PSI experiments were conducted with both reacting and non-reacting jets to evaluate these approaches across a range of optical and flow parameters. The results demonstrated the capability of the fiber-based multi-resolution imaging system to capture simultaneous fields of view at varying magnifications (1x, 2x, 4x), and the ability of X-ray imaging to penetrate the optically dense plume, revealing flow structures that would otherwise be obscured in scattering-based methods. Data were collected for various PSI parameters, including three different heights above the surface, to analyze the ejecta properties and the plume’s temporal evolution. These results provide the first imaging strategy capable of resolving flow structures over a wide spatial dynamic range while also offering the first visualization of the optically dense core.
Document ID
20240015200
Acquisition Source
Langley Research Center
Document Type
Conference Paper
Authors
Lucca M de Carvalho
(Purdue University West Lafayette West Lafayette, United States)
Kanan Karimli
(Purdue University West Lafayette West Lafayette, United States)
Rees P Verleur
(Purdue University West Lafayette West Lafayette, United States)
Amanda M Braun
(Purdue University West Lafayette West Lafayette, United States)
Venkat Athmanathan ORCID
(Purdue University West Lafayette West Lafayette, United States)
Mikhail N Slipehenko
(Purdue University West Lafayette West Lafayette, United States)
Terrence R Meyer
(Purdue University West Lafayette West Lafayette, United States)
Naibo Jiang
(Spectral Energies (United States) Dayton, Ohio, United States)
Paul Hsu
(Spectral Energies (United States) Dayton, Ohio, United States)
Sukesh Roy
(Spectral Energies (United States) Dayton, Ohio, United States)
Neil S Rodrigues
(Langley Research Center Hampton, United States)
Paul M Danehy
(Langley Research Center Hampton, United States)
Date Acquired
November 26, 2024
Subject Category
Instrumentation and Photography
Meeting Information
Meeting: AIAA SciTech Forum
Location: Orlando, FL
Country: US
Start Date: January 6, 2025
End Date: January 10, 2025
Sponsors: American Institute Aeronautics and Astronautics
Funding Number(s)
CONTRACT_GRANT: 80NSSC23PB580
Distribution Limits
Public
Copyright
Portions of document may include copyright protected material.
Technical Review
NASA Peer Committee
Keywords
Ejecta
PIV
X-Ray
Plume-Surface Interaction
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