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个人简介
As Chief of the Computational Aerosciences Branch, Cetin Kiris serves as both technical and managerial lead. He is responsible for orchestrating all aspects of branch operations, including overseeing projects, providing technical direction, coordinating activities and resources, and laying strategic groundwork to support branch objectives. Kiris also led computational fluid dynamics (CFD) support for development of the Ares V Cargo Launch Vehicle, coordinating this effort with multiple teams across NASA.
Kiris's field of expertise is CFD for aerospace applications. He initiated and orchestrated the development of LAVA, a computational framework for Launch, Ascent, and Vehicle Aerodynamics. Some of his most notable work includes: aerodynamic database generation for launch vehicle development; analysis of accident scenarios and launch pad ignition conditions for ground operations; turbopump flow simulations; numerical models of human circulatory systems under altered gravity; and application of CFD to analysis and design of artificial heart devices. He has published over 100 technical papers, and co-authored a book on numerical simulations of incompressible flows.
Kiris's field of expertise is CFD for aerospace applications. He initiated and orchestrated the development of LAVA, a computational framework for Launch, Ascent, and Vehicle Aerodynamics. Some of his most notable work includes: aerodynamic database generation for launch vehicle development; analysis of accident scenarios and launch pad ignition conditions for ground operations; turbopump flow simulations; numerical models of human circulatory systems under altered gravity; and application of CFD to analysis and design of artificial heart devices. He has published over 100 technical papers, and co-authored a book on numerical simulations of incompressible flows.
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AIAA SCITECH 2023 Forum (2023)
AIAA SCITECH 2023 Forum (2023)
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AIAA SCITECH 2023 Forum (2023)
AIAA SCITECH 2023 Forum (2023)
AIAA SCITECH 2023 Forum (2023)
AIAA JOURNALno. 4 (2023): 1639-1658
JOURNAL OF AIRCRAFTno. 4 (2023): 1118-1140
28th AIAA/CEAS Aeroacoustics 2022 Conference (2022)
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