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Results and Experiences from the Execution of the GeoFlow Experiments on the ISS

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Abstract

This paper introduces the GeoFlow missions that were performed under microgravity conditions on board the Columbus Laboratory in the International Space Station (ISS) from the scientific operations standpoint. A brief introduction to the three GeoFlow experiments: GeoFlow, GeoFlow-2 and GeoFlow-2b is given, being their main purpose to capture some essential features of the Earth mantle convection. The major scientific requirements of each of the experiments are presented as an introduction for the scientific operations preparation and concept development description. Then, the activities performed in order to execute each of the experiments are presented in detail, focusing on the resolution of the several issues encountered during the mission. The outcomes and lessons learned from such long and complex missions close this paper.

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Abbreviations

B.USOC:

Belgium USOC

BIOLAB:

Biology Laboratory

Col-CC:

Columbus Control Centre

E-USOC:

Spanish USOC

EC:

Experiment Container

EDR:

European Drawer Rack

EPM:

European Physiology Module

ESA:

European Space Agency

FSL:

Fluid Science Laboratory

IPV:

ISS Procedure Viewer

ISPR:

International Standard Payload Rack

ISS:

International Space Station

MARS:

Italian USOC

MMA:

Microgravity Measurement Assembly

MSL:

Material Science Laboratory

MVIS:

Microgravity Vibration Isolation System

PD:

Payload Developer

PI:

Principal Investigator

SAMS:

Space Acceleration Measurement System

SHA:

Secure Hash Algorithm

TM:

Telemetry

UHB:

User Home Base

USOC:

User Support and Operations Centre

WSI:

Wollaston Shearing Interferometry

References

  • Albanese, C., Carotenuto, L, Ceriello, A, Dechiara, G., Dell ’Aversana, P., Fortezza, R, Lappa, M., Peluso, F., Pezzuti, F., Piccolo, C., Tempesta, S., Verzino, G., Bonnat, G., Pensavalle, E., Marangoni, R., Rina, L, Trinchero, G.: Fluid Science Laboratory: Ready to fly! Lessons learned on preparatory activities, operations and performances. In: 58th Congress of the International Astronautical Federation 2007, IAC, vol. 1, pp. 564–570 (2007)

  • Dupont, O., Dewandre, T., Dewandel, J.L., Joannes, L., Claessens, D.: The optical diagnostics of the Fluid Science Laboratory. In: 5th International Conference on Space Optics 2004, ICSO, pp. 463–470 (2004)

  • Enz, T., Steinbach, S., Simicic, D., Kasperovich, G., Ratke, L.: First experiments using the Materials Science Laboratory on Board the International Space Station. Microgravity Sci. Technol. 23, 345–353 (2011)

    Article  Google Scholar 

  • Ezquerro, J.M., Rodríguez, J.: GEOFLOW-2 Mission Operations Implementation Concept, EUSOC-MOIC-GEOII, Issue 3, Rev. 1, 23/03/11 (2011)

  • Ezquerro, J.M., Fernández, J.J., Rodríguez, J., Laverón-Simavilla, A.: GEOFLOW-2: results and experiences from a long term mission on the ISS. In: 63th International Astronautical Congress 2012, IAC, pp. 1–7 (2012)

  • Feudel, F., Bergemann, K., Tuckerman, L., Egbers, Ch., Futterer, B., Gellert, M., Hollerbach, R.: Convection pattern in a spherical fluid shell. Phys. Rev. E 83, 046304–1–046304-8 (2011)

    Article  Google Scholar 

  • Feudel, F., Seehafer, N., Tuckerman, L.S., Gellert, M.: Multistability in rotating spherical shell convection. Phys. Rev. E 87, 023021 (2013)

    Article  Google Scholar 

  • Fortezza, R., Monti, R., Savino, R.: Residual-g orientation. Microgravity Sci. Technol. XI, 119–128 (1999)

    Google Scholar 

  • Frutos, A., Rodríguez, J.: E-USOC and the GeoFlow experiment operations. In: 59th International Astronautical Congress 2008, IAC, pp. 677–682 (2008)

  • Futterer, B., Dahley, N., Koch, S., Scurtu, N., Egbers, C.: From isoviscous convective experiment ‘GeoFlow I’ to temperature-dependent viscosity in ‘GeoFlow II’—fluid physics experiments on-board ISS for the capture of convection phenomena in Earth’s outer core and mantle. Acta Astronaut. 71, 11–19 (2012)

    Article  Google Scholar 

  • Futterer, B., Krebs, A., Plesa, A.-C., Zaussinger, F., Hollerbach, R., Breuer, D., Egbers, C.: Sheet-like and plume-like thermal flow in a spherical convection experiment performed under microgravity. J. Fluid Mech. (2013). doi:10.1017/jfm.2013.507

    MATH  Google Scholar 

  • Labib, M., Piontek, D., Valsecchi, N., Griffith, B., Dejmek, M., Jean, I., Mailloux, M., Palardy, R., Michels, J., Michalyna, C., de Carufel, J.: The fluid science laboratory’s microgravity vibration isolation subsystem overview and commissioning update. SpaceOps 1–10 (2010)

  • Mazzoni, S: GeoFlow II Experiment Scientific Requirements, SCI-ESA-HSF-ESR-GEOFLOW II, Issue 4, Rev 0, 23/04/2012 (2012)

  • Monti, R., Savino, R.: G-sensitivity of microgravity experimentation: fundamentals of disturbance response. Microgravity Sci. Technol. XI, 1–6 (1998)

    Google Scholar 

  • Pacros, A.: GeoFlow Experiment Scientific Requirements, ESA-HME-ESR-GEOFLOW, Issue 1, Rev 0, 16/08/2007 (2007)

Download references

Acknowledgments

The authors would like to thank the Centro para el Desarrollo Tecnológico Industrial (CDTI) (The Centre for the Development of Industrial Technology) for the opportunity to work in projects such as the one described in this paper. We would also like to thank ESA, the Italian USOC (MARS), the Columbus Control Center (Col-CC), the European Planning Team, the European Astronauts Center, the Payload Developer (Astrium GmbH) and the GeoFlow Science Team for their active work during the experiment preparation and execution.

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Correspondence to V. Lapuerta.

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Ezquerro Navarro, J.M., Fernández, J.J., Rodríguez, J. et al. Results and Experiences from the Execution of the GeoFlow Experiments on the ISS. Microgravity Sci. Technol. 27, 61–74 (2015). https://doi.org/10.1007/s12217-015-9413-5

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  • DOI: https://doi.org/10.1007/s12217-015-9413-5

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