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Ground-based experimental facility for orbital aerodynamics research: design, construction and characterisation

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Oiko, Vitor
Roberts, Peter C.E
Macario Rojas, Alejandro
García-Almiñana, DanielMés informacióMés informacióMés informació
García Berenguer, MarinaMés informacióMés informació
Rodríguez Donaire, SilviaMés informacióMés informacióMés informació
Sureda Anfres, MiquelMés informacióMés informacióMés informació
Document typeConference lecture
Defense date2020
PublisherInternational Astronautical Federation
Rights accessRestricted access - publisher's policy
All rights reserved. This work is protected by the corresponding intellectual and industrial property rights. Without prejudice to any existing legal exemptions, reproduction, distribution, public communication or transformation of this work are prohibited without permission of the copyright holder
ProjectDISCOVERER - DISCOVERER – DISruptive teChnOlogies for VERy low Earth oRbit platforms (EC-H2020-737183)
Abstract
In very low Earth orbits (VLEO), below 450 km altitude, the aerodynamic properties of satellites are primarily determined by the flow regime, free molecular flow, and the interaction of atomic oxygen with the surfacesof the spacecraft. The Rarefied Orbital Aerodynamics Research (ROAR) facility is a novel experimental facility designed to simulate these conditions in a controlled environment to characterise the aerodynamic properties of materials. It is built as part of DISCOVERER, a Horizon 2020 project developing the different technologies required to enable the sustainable operation of satellites in VLEO. Because ROAR isn’t intended to perform erosion studies, it differs quite significantly from other atomic oxygen exposure experiments and its characteristics are discussed in this work. ROAR consists of an ultrahigh vacuum system, responsible for generating the free molecular flow conditions, a source of hyperthermal oxygen atoms at orbital velocities, and mass spectrometers; the latter used to characterise the gas-surface interactions, and therefore the material’s aerodynamic performance. This paperincludesa description of ROAR’s main components, together with the experimental methodology for materials testing and early results. Among the main parameters to be considered are atomic oxygen flux, beam shape and energy spread, mass resolution, and signal-to-noise ratio.
CitationOiko, V. [et al.]. Ground-based experimental facility for orbital aerodynamics research: design, construction and characterisation. A: International Astronautical Congress. "Proceedings of the International Astronautical Congress". International Astronautical Federation, 2020, p. 1-6. ISBN 00741795. 
URIhttp://hdl.handle.net/2117/330173
ISBN00741795
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  • Departament de Física - Ponències/Comunicacions de congressos [622]
  • Departament d'Enginyeria de Projectes i de la Construcció - Ponències/Comunicacions de congressos [140]
  • Doctorat en Enginyeria Mecànica, Fluids i Aeronàutica - Ponències/Comunicacions de congressos [48]
  • L'AIRE - Laboratori Aeronàutic i Industrial de Recerca i Estudis - Ponències/Comunicacions de congressos [51]
  • TUAREG - Turbulence and Aerodynamics in Mechanical and Aerospace Engineering Research Group - Ponències/Comunicacions de congressos [60]
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