Academic Journal

Seismic Observations of the OSIRIS-REx Sample Return Capsule Reentry: Deployment, Signal Characteristics, and Wavefield Phenomenology.

Λεπτομέρειες βιβλιογραφικής εγγραφής
Τίτλος: Seismic Observations of the OSIRIS-REx Sample Return Capsule Reentry: Deployment, Signal Characteristics, and Wavefield Phenomenology.
Συγγραφείς: Scamfer, Logan T.1 (AUTHOR), Silber, Elizabeth A.1 (AUTHOR) esilbe@sandia.gov, Ronac Gianonne, Miro1 (AUTHOR), Bowman, Daniel C.1 (AUTHOR), Wynn, Nora R.1 (AUTHOR), Fleigle, Michael1 (AUTHOR), LaPierre, Justin1 (AUTHOR)
Πηγή: Atmosphere. Jun2026, Vol. 17 Issue 6, p553. 20p.
Θεματικοί όροι: *Seismic waves, *Array processing, *Space vehicles, *Seismic surveys, *Aeroacoustics, *Hypersonics, *Seismology measurements
Περίληψη: Controlled spacecraft reentries from interplanetary trajectories provide rare, well-characterized hypersonic sources for advancing seismoacoustic observation techniques. Here we present seismic observations of the OSIRIS-REx sample return capsule (SRC) reentry on 24 September 2023, recorded by 16 three-component nodal seismometers deployed near Eureka, Nevada, at ground distances of 7–20 km from the capsule trajectory. Air-to-ground coupled signals are detected at all stations, exhibiting impulsive onsets consistent with ballistic shock arrivals from the descending Mach cone. We characterize the seismic wavefield through signal amplitude, period, waveform cross-correlation, and array processing. Signal periods decrease systematically with increasing distance from the trajectory within the airport array, indicating that higher-frequency content becomes more prominent at greater offsets, opposite to expectations from geometric spreading and atmospheric absorption. Seismic array processing identifies frequency-dependent back-azimuth variations whose origin remains unresolved; possible contributing factors include source geometry, scattering by fine-scale layered structure in the stratosphere, and near-surface effects. These observations document a spatially complex seismic wavefield from a well-characterized hypersonic line source and provide constraints for future modeling of atmospheric propagation and air-to-ground coupling. [ABSTRACT FROM AUTHOR]
Βάση Δεδομένων: Academic Search Index
Περιγραφή
ISSN:20734433
DOI:10.3390/atmos17060553