This paper considers the nonlinear optimal control of transition in a boundary layer flow subjected to a pair of free stream vortical perturbations using a receding horizon approach. The optimal control problem is solved using the Lagrange variational technique that results in a set of linearized adjoint equations, which are used to obtain the optimal wall actuation (blowing and suction from a control slot located in the transition region). The receding horizon approach enables the application of control action over a longer time period, and this allows the extraction of time-averaged statistics as well as investigation of the control effect downstream of the control slot. The results show that the controlled flow energy is initially reduce...
Transition to turbulence and flow control are studied by means of numerical simulations for differen...
Results are presented from a numerical simulation of transition control in plane channel and boundar...
Abstract A framework for active control of spatially developing flows is developed and it is applied...
The central aim of the paper is to apply and assess a nonlinear optimal control strategy to suppress...
In this thesis a nonlinear optimal control algorithm is designed to suppress bypass transition in a ...
We formulate a mathematical framework for the optimal control of compressible boundary layers to sup...
We derive and test an optimal control algorithm in the context of compressible boundary layers, in a...
High-amplitude free-stream turbulence and large surface roughness elements can excite a laminar boun...
The control of stream-wise vortices in high Reynolds number boundary layer flows often aims at reduc...
Linear and nonlinear optimal control have been investigated in transitional channel and boundary lay...
High-amplitude freestream disturbances, as well as surface roughness elements, trigger streamwise or...
AbstractThe present work describes an optimal control strategy, based on the full Navier-Stokes equa...
High-amplitude freestream disturbances, as well as surface roughness elements, trigger streamwise or...
Linear optimal gains $G_opt(\omega)$ are computed for the separated boundary-layer flow past a two-d...
Boundary perturbations are considered as flow control forcing and their distributions are optimised ...
Transition to turbulence and flow control are studied by means of numerical simulations for differen...
Results are presented from a numerical simulation of transition control in plane channel and boundar...
Abstract A framework for active control of spatially developing flows is developed and it is applied...
The central aim of the paper is to apply and assess a nonlinear optimal control strategy to suppress...
In this thesis a nonlinear optimal control algorithm is designed to suppress bypass transition in a ...
We formulate a mathematical framework for the optimal control of compressible boundary layers to sup...
We derive and test an optimal control algorithm in the context of compressible boundary layers, in a...
High-amplitude free-stream turbulence and large surface roughness elements can excite a laminar boun...
The control of stream-wise vortices in high Reynolds number boundary layer flows often aims at reduc...
Linear and nonlinear optimal control have been investigated in transitional channel and boundary lay...
High-amplitude freestream disturbances, as well as surface roughness elements, trigger streamwise or...
AbstractThe present work describes an optimal control strategy, based on the full Navier-Stokes equa...
High-amplitude freestream disturbances, as well as surface roughness elements, trigger streamwise or...
Linear optimal gains $G_opt(\omega)$ are computed for the separated boundary-layer flow past a two-d...
Boundary perturbations are considered as flow control forcing and their distributions are optimised ...
Transition to turbulence and flow control are studied by means of numerical simulations for differen...
Results are presented from a numerical simulation of transition control in plane channel and boundar...
Abstract A framework for active control of spatially developing flows is developed and it is applied...