Wall-Jet Evolution During Plume-Surface Interaction Using PLIF ImagingPlanar laser-induced fluorescence (PLIF) flow visualization was used to examine the spatial evolution for the wall-jet formed by an impinging supersonic jet in a large-scale vacuum environment. This canonical configuration is representative of the plume-surface interaction induced by a rocket exhaust plume impinging on the planetary surface at lunar-relevant and Martian-relevant environments. PLIF flow visualization of the very low-density environment (as low as ~0.006% of standard atmospheric density) was performed using seeded nitric oxide in a nitrogen flow at three test conditions. Two conditions are representative of the lunar environment, and one is representative of the Martian environment. The combined images from two simultaneous PLIF views were used to construct a 2D slice of the flowfield spanning approximately 150 mm in height (determined by the laser sheet) and 500 mm in width (determined by the camera views). The three test conditions showed different behavior for the wall-jet, largely due to the different levels of lifting above the surface and the appearance of a physical process similar to a Kelvin–Helmholtz instability for the Martian-relevant case, which appeared to create a dramatic expansion of the wall-jet height with increased radial distance.
Document ID
20240014951
Acquisition Source
Langley Research Center
Document Type
Conference Paper
Authors
Neil S Rodrigues (Langley Research Center Hampton, United States)
Ross A Burns (ViGYAN (United States) Hampton, Virginia, United States)
Olivia K Tyrrell (Langley Research Center Hampton, United States)
Paul M Danehy (Langley Research Center Hampton, United States)
Date Acquired
November 22, 2024
Subject Category
Instrumentation and Photography
Meeting Information
Meeting: AIAA SciTech Forum and Exposition
Location: Orlando, FL
Country: US
Start Date: January 6, 2025
End Date: January 10, 2025
Sponsors: American Institute of Aeronautics and Astronautics