arXiv · 2609.25073
Reactive Trace Species Modeling with the Simulation Tool PICLas
Abstract
A species-specific weighting scheme for the Natural-Sample-Size collision model within the Direct Simulation Monte Carlo method is developed and implemented in the open-source gas and plasma solver PICLas. The implemented weighting scheme places particular emphasis on chemical reactions and ionization processes of trace species in order to guarantee physically accurate and low-noise simulations of atmospheric entry processes. The successful implementation and the conservation of momentum and energy during relaxation processes and chemical reactions are verified through a reservoir simulation of a reacting air mixture. As a more sophisticated validation case, atmospheric entry simulations of a cylinder at an altitude of 108 km are investigated. In a final step, the developed weighting scheme is employed to investigate ionization processes in the shock layer surrounding the RAM-C II reentry probe during atmospheric entry. The simulations showed very good agreement with experimental flight data and reduced noise in the rarefied regions for the charged species.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Simone Lauterbach, Kim-Sophie Ellenberger, Stefanos Fasoulas, Marcel Pfeiffer. 2026-09-18. Reactive Trace Species Modeling with the Simulation Tool PICLas. https://arxiv.org/abs/2609.25073
Cite the original work for its findings. Save a collection to share your selection of sources.