This paper is an extension of a previous work where a diagonally implicit harmonic balance method was developed and applied to simulate oscillatory motions of pitching airfoil and wing. A more detailed study on the accuracy, convergence, and the efficiency of the method is carried out in the current paperby varying the number of harmonics in the solution approximation. As the main advantage of the method is itsusage for the design optimization of the unsteady problems, its application to more practical case of rotor flow analysis during forward flight is carried out and compared with flight test data and time-accurate computation results
Several horizontal axis wind turbine unsteady flows, such as that associated with the yawed wind regi...
This paper presents the numerical models underlying the im-plementation of a novel harmonic balance ...
This paper presents the numerical models underlying the implementation of a novel harmonic balance c...
Computational fluid dynamics (CFD) based on the Navier–Stokes equations is by far the most useful pr...
Traditionally, the models of the unsteady aerodynamic loads needed for aircraft flight simulations h...
In the framework of unsteady aerodynamics, forced-harmonic-motion simulations can be used to compute...
The present paper investigates a time-domain harmonic balance method as an alternative to classical ...
To predict blade aerodynamic damping during the design phase, unsteady linearized CFD methods are c...
This paper presents an assessment of the harmonic balance method for rotor blade performance predict...
An harmonic balance method for modeling unsteady nonlin-ear periodic flows in turbomachinery is pres...
Abstract: A computational analysis is performed of the unsteady aerodynamics associated with the bla...
A harmonic balance technique for modeling unsteady nonlinear ows in turbomachinery is presented. The...
The analysis of whole engine rotor-dynamic models is an important element in the design of aerojet e...
A formulation is developed to compute the flow around a helicopter rotor in the frequency domain com...
International audienceA two-step approximate factorization technique for implementing a computationa...
Several horizontal axis wind turbine unsteady flows, such as that associated with the yawed wind regi...
This paper presents the numerical models underlying the im-plementation of a novel harmonic balance ...
This paper presents the numerical models underlying the implementation of a novel harmonic balance c...
Computational fluid dynamics (CFD) based on the Navier–Stokes equations is by far the most useful pr...
Traditionally, the models of the unsteady aerodynamic loads needed for aircraft flight simulations h...
In the framework of unsteady aerodynamics, forced-harmonic-motion simulations can be used to compute...
The present paper investigates a time-domain harmonic balance method as an alternative to classical ...
To predict blade aerodynamic damping during the design phase, unsteady linearized CFD methods are c...
This paper presents an assessment of the harmonic balance method for rotor blade performance predict...
An harmonic balance method for modeling unsteady nonlin-ear periodic flows in turbomachinery is pres...
Abstract: A computational analysis is performed of the unsteady aerodynamics associated with the bla...
A harmonic balance technique for modeling unsteady nonlinear ows in turbomachinery is presented. The...
The analysis of whole engine rotor-dynamic models is an important element in the design of aerojet e...
A formulation is developed to compute the flow around a helicopter rotor in the frequency domain com...
International audienceA two-step approximate factorization technique for implementing a computationa...
Several horizontal axis wind turbine unsteady flows, such as that associated with the yawed wind regi...
This paper presents the numerical models underlying the im-plementation of a novel harmonic balance ...
This paper presents the numerical models underlying the implementation of a novel harmonic balance c...