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Tim Flint
Tim Flint
PHD Candidate, Stanford University
stanford.edu의 이메일 확인됨 - 홈페이지
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Computational study of a pitching bio-inspired corrugated airfoil
TJ Flint, MC Jermy, TH New, WH Ho
International Journal of Heat and Fluid Flow 65, 328-341, 2017
422017
Investigations of quantum algorithms for direct numerical simulation of the Navier-Stokes equations
KP Griffin, SS Jain, TJ Flint, WHR Chan
Center for Turbulence Research Annual Research Briefs 347, 2019
152019
A computational framework for stability analysis of high-speed flows in complex geometries
T Flint, MJP Hack
Annual Research Briefs, 221-235, 2018
62018
Validated unsteady computational fluid dynamic analysis of an oscillating bio-inspired airfoil
T Flint, WH Ho, TH New, M Jermy
Applied Mechanics and Materials 799, 698-706, 2015
52015
A case study of empty nose syndrome by nasal airflow simulation
T Flint, A Thamboo, N Velasquez, JV Nayak, M Sellier, ...
Center for Turbulence Research Annual Research Briefs, 329-339, 2016
22016
Global stability analysis of supersonic jets
M Karp, T Flint, P Hack
AIAA Scitech 2020 Forum, 1248, 2020
12020
Computational investigation of empty nose syndrome
T Flint, M Esmaily-Moghadam, A Thamboo, N Velasquez, P Moin
Center for Turbulence Research Annual Research Briefs, 251-260, 2015
12015
Linear disturbance transport and amplification on a hypersonic cone to assess tunnel noise contamination effects on transition
T Flint, P Moin
APS Division of Fluid Dynamics Meeting Abstracts, X31. 006, 2024
2024
Free-stream disturbance receptivity and amplification at hypersonic speeds by adjoint Green’s function
T Flint, P Moin
Bulletin of the American Physical Society, 2023
2023
Global linear analysis of Stetson's Mach 8 blunt cone experiment
T Flint, MJ Hack, P Moin
Bulletin of the American Physical Society 67, 2022
2022
Prediction of boundary-layer instability in supersonic flow with roughness and shock using machine learning
O Marxen, A Margaritis, T Flint, P Schmid, G Iaccarino
Bulletin of the American Physical Society 67, 2022
2022
Suppression of acoustic instabilities in boundary layer flows by heating/cooling of the wall and wall impedance
L De Broeck, S Goertz, T Flint, C Gonzalez, M Oberlack, S Lele
Bulletin of the American Physical Society 67, 2022
2022
The linear acoustic equations solved as a finite domain boundary value problem by eigenfunction expansion
T Flint
Center for Turbulence Research Annual Research Briefs, 231-242, 2022
2022
Temporal stability analysis of high Mach number boundary layers over cooled impedance walls
L De Broeck, S Görtz, T Flint, C Gonzalez, M Oberlack, S Lele
Center for Turbulence Research Proceedings of the Summer Program, 391-400, 2022
2022
Investigation and prediction of a roughness-induced, high-speed boundary-layer transition using machine learning
O Marxen, AT Margaritis, PJ Schmid, TJ Flint, G Iaccarino
Center for Turbulence Research Proceedings of the Summer Program, 35-44, 2022
2022
Nonlinear Optimal Disturbances in Compressible Shear Flows
Z Huang, T Flint, MJP Hack
IUTAM Laminar-Turbulent Transition: 9th IUTAM Symposium, London, UK …, 2022
2022
Global receptivity of instability waves in the boundary layer on a high-speed blunt cone
T Flint, P Moin, MJ Hack
APS Division of Fluid Dynamics Meeting Abstracts, T03. 001, 2021
2021
Global direct and adjoint modes of a hypersonic flow over a cone
TJ Flint, MJP Hack
Center for Turbulence Research Annual Research Briefs, 233-240, 2020
2020
Global eigenfunctions of a hypersonic blunt cone
T Flint, P Moin, MJ Hack
APS Division of Fluid Dynamics Meeting Abstracts, H05. 002, 2020
2020
Linear stability analysis of supersonic jet screech
M Karp, T Flint, MJ Hack
APS Division of Fluid Dynamics Meeting Abstracts, G06. 006, 2019
2019
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학술자료 1–20