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Titel:

Scaling and Transition Effects on Hollow-Cylinder/Flare Shock/Boundary-Layer Interactions in Wind Tunnel Environments

Dokumenttyp:
Zeitschriftenaufsatz
Autor(en):
Threadgill, James; Hader, Christoph; Singh, Ashish; Tsakagiannis, Vasilis; Fasel, Hermann F.; Little, Jesse C.; Lugrin, Mathieu; Bur, Reynald; Chiapparino, Giuseppe; Stemmer, Christian
Abstract:
A comprehensive investigation into the flow over a hollow-cylinder and ⩉ =15° flare has been conducted at Mach 5 with transitional Reynolds numbers. Experiments of two similar models have been conducted in LT5 at the University of Arizona and R2Ch at ONERA. Considerable differences in reattachment behavior were observed from infrared thermography measurements indicating that the reattachment in LT5 was approximately twice as far from the flare base as observed in R2Ch. Supporting simulations hav...     »
Stichworte:
Wind Tunnel Tests, Stagnation Temperature, Separated Flows, Shockwave Boundary Layer Interaction, Boundary Layer Transition, Computational Fluid Dynamics, Free Stream Turbulence, Supersonic Aerodynamics, Hypersonic Aerodynamics
Dewey Dezimalklassifikation:
620 Ingenieurwissenschaften
Zeitschriftentitel:
AIAA Journal
Jahr:
2024
Seitenangaben Beitrag:
1-14
Sprache:
en
Volltext / DOI:
doi:10.2514/1.j064261
Verlag / Institution:
American Institute of Aeronautics and Astronautics (AIAA)
E-ISSN:
0001-14521533-385X
Hinweise:
Acknowledgments The University of Arizona authors would like to thank the US Navy’s Office of Naval Research (ONR) and program manager Dr. Eric Marineau for providing funding for this work (N00014-20-1-2267 and N00014-23-1-2645). In addition, the authors would like to recognize the contribution of Sathyan Padmanabhan, Alejandro Roskelley Garcia, and Sam Bevier for their assistance when operating the test facility. The authors would also like to express their gratitude to Prof. Alex Craig for...     »
Eingereicht (bei Zeitschrift):
03.04.2024
Angenommen (von Zeitschrift):
04.11.2024
Publikationsdatum:
28.12.2024
TUM Einrichtung:
Lehrstuhl für Aerodynamik und Strömungsmechanik
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