Impact of the May 2024 Gannon Storm on Low Earth Orbit Dosimetric Quantities: Comparisons of the NAIRAS Model -Real Time and Re-analysis- with ISS DataThe solar storm of May 2024, the Gannon storm, led to a display of aurora over the globe. One of the less known effects of that storm is on the radiation doses in low-Earth orbit: it first led to a Forbush decrease in dose rates and then to a Solar Energetic Particle (SEP) event that increased the total dose suffered near the international space station.
The Nowcast of Aerospace Ionizing RAdiation System (NAIRAS) model predicts dosimetric and radiative flux quantities for assessing human radiation exposure levels and radiation effects on flight electronic systems from the surface of the Earth to deep space. It runs in near-real-time at the CCMC, but also has a run-on-request that allows for a more precise computation thanks to carefully processed data. NAIRAS was able to compute the effects of the Gannon storm at the ISS in real-time and provide ideas of the doses encountered by the astronauts and the experiments in and outside of the station. In this work, we show the simulations of the doses encountered during the storm and compare them with several measurements at the ISS.
This work shows the capabilities of NAIRAS to address the problem of the SEP events at low Earth orbit and its real-time capabilities.
Document ID
20240015033
Acquisition Source
Langley Research Center
Document Type
Poster
Authors
Guillaume Gronoff (Science Systems & Applications, Inc. Hampton, VA, USA)
Christopher J Mertens (Langley Research Center Hampton, United States)
Daniel Phoenix (Analytical Mechanics Associates (United States) Hampton, Virginia, United States)
Yihua Zheng (Goddard Space Flight Center Greenbelt, United States)
Edward Semones (Johnson Space Center Houston, United States)
Stuart P George (Johnson Space Center Houston, United States)