A two-dimensional inviscid inverse method is developed, verified and applied in this paper. The method solves the Euler equation in absolute reference frame by a cell-centered finite volume method, and the hybrid Runge-Kutta method is used for time integration. Different from the direct method, the inverse method imposes a unique “transpiration” boundary condition on the blade surfaces. The inputs of inverse method are pressure loading and blade tangential thickness distribution along the blade chord. During the time marching process, the blade shape is periodically updated. When the solution is converged, the blade shape will be stabled. In the paper, the principle of the inverse method is described in detail. Then the developed inverse me...
The two-dimensional multiblock unsteady Euler and Navier-Stokes solver for turbomachinery blades has...
The development and application of a three-dimensional (3D) inverse methodology is presented for the...
The investigation objects are the straight lines of single-row blade cascade. The aim is to develop ...
AbstractA two-dimensional inviscid inverse method is developed, verified and applied in this paper. ...
An inverse blade design method, applicable to 2D and 3D flow in turbomachinery blading is developed ...
A two-dimensional viscous inverse method for the design of compressor and turbine blades is presente...
An aerodynamic inverse design method for turbomachinery cascades is presented and is implemented in ...
The fluid behavior in the profile cascade of turbomachinery is often studied using direct computatio...
An inverse method, which works for full 3D viscous applications in turbomachinery aerodynamic design...
The flow in turbomachine blade passages is three-dimensional (3D), viscous and unsteady. Each of the...
This dissertation summarizes a procedure to design blades with finite thickness in three dimensions....
This thesis describes the development of two inverse design methods, suitable for designing two- and...
An inviscid model for complete axial flow turbomachinery is adopted, which replaces the blades with ...
An inverse method for turbomachinery blade design is presented along with the three-dimensional turb...
A three-dimensional viscous inverse design method is improved and extended to multirow blades enviro...
The two-dimensional multiblock unsteady Euler and Navier-Stokes solver for turbomachinery blades has...
The development and application of a three-dimensional (3D) inverse methodology is presented for the...
The investigation objects are the straight lines of single-row blade cascade. The aim is to develop ...
AbstractA two-dimensional inviscid inverse method is developed, verified and applied in this paper. ...
An inverse blade design method, applicable to 2D and 3D flow in turbomachinery blading is developed ...
A two-dimensional viscous inverse method for the design of compressor and turbine blades is presente...
An aerodynamic inverse design method for turbomachinery cascades is presented and is implemented in ...
The fluid behavior in the profile cascade of turbomachinery is often studied using direct computatio...
An inverse method, which works for full 3D viscous applications in turbomachinery aerodynamic design...
The flow in turbomachine blade passages is three-dimensional (3D), viscous and unsteady. Each of the...
This dissertation summarizes a procedure to design blades with finite thickness in three dimensions....
This thesis describes the development of two inverse design methods, suitable for designing two- and...
An inviscid model for complete axial flow turbomachinery is adopted, which replaces the blades with ...
An inverse method for turbomachinery blade design is presented along with the three-dimensional turb...
A three-dimensional viscous inverse design method is improved and extended to multirow blades enviro...
The two-dimensional multiblock unsteady Euler and Navier-Stokes solver for turbomachinery blades has...
The development and application of a three-dimensional (3D) inverse methodology is presented for the...
The investigation objects are the straight lines of single-row blade cascade. The aim is to develop ...