This project has received funding from the European Union’s Horizon 2020 research and innovation programme under grant agreement No 955923
MARIE SKŁODOWSKA-CURIE ACTIONS Innovative Training Networks (ITN) Call: H2020-MSCA-ITN-2020
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ESR1
Stefano Colombo
UPM
Adaptive high order methods for 3D turbulent flows
ESR2
Himpu Marbona
UPM
Flow control of 3D turbulent flows
ESR3
NA
CIMNE
Development of efficient time integration schemes and space-time adaptive strategies for the finite element solution of compressible flows
ESR4
Kaloyan Kirilov
IMPERIAL
Adjoint-based mesh refinement for high-order flow simulations
ESR5
Henrik Wusterberg
IMPERIAL
Aeroacoustic Sensitivity Analysis of Compressible Flows
ESR6
Javier Lorente Macias
UCAM
Adjoint sensitivity analysis and 3D shape optimization in complex internal compressible thermo-viscous flows
ESR7
Matthias Plath
ONERA
High-order simulation and control of the interaction of shock waves with compliant walls
ESR8
Konstantinos Sarras
ONERA
Effect of low frequency flow oscillations on the structural vibrations of airfoils near stall angle of attack
ESR9
Biagio Ambrosino
DLR
Stability and sensitivity methods for improved design and assessment of hybrid laminar flow control concepts
ESR10
Emilio Lopez Figueiras
VKI
Passive control of cross-flow by means of small discrete roughness element
ESR11
Andrew O’Sullivan
NUMECA
High fidelity simulations of a transitional flow over a tri-dimensional wing by means of high order schemes
ESR12
Alexandra-Ioanna Liosi
McLAREN
High fidelity simulations of open wheel geometries using high order methods
ESR13
Parv Khurana
McLAREN
Wall modelling for high order LES simulations, application to the transitional flow around a Formula 1 front wing
ESR14
Solmaz Khoshavaz
KULEUVEN
Experimental and numerical analysis of buffeting phenomena and its influence on far field noise radiation
ESR15
Mohammad Moniri Piri
KTH
Receptivity and sensitivity analysis and control of three-dimensional boundary layer Flows
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