Computed solutions of the time-dependent, Reynolds-averaged Navier-Stokes equations for three dimensional flows having thin shear layers are analyzed using topological concepts. Specific examples include the transonic flow over a body of revolution with conical afterbody at moderate angles of incidence to the free stream. Experimental flow-visualization techniques are simulated graphically to visualize the computed flow. Scalar and vector fluid dynamics properties such as pressure, shear stress, and vorticity on the body surface are presented as topological maps, and their relationship to one another in terms of orientation and singular points is discussed. The extrapolation from these surface topologies toward the understanding of external...
Vector fields, especially flow, and their analysis are of paramount importance to a wide variety of ...
Transonic flow fields about wing geometries are computed using an Euler/Navier-Stokes approach in wh...
A numerical scheme has been developed to solve the incompressible, 3-D Navier-Stokes equations using...
Based on the hypothesis that patterns of skin-friction lines and external streamlines reflect the pr...
The structures of three dimensional separated flow about some chosen aerodynamic components at angle...
One of the main themes in fluid dynamics at present and in the future is going to be computational f...
Fluid Mechanics is an example of a complex dynamical system with uncountable applications in industr...
Classification of fluid flows is an essential part of Fluid Dynamics. Flows are typically characteri...
Classification of fluid flows is an essential part of Fluid Dynamics. Flows are typically characteri...
A 3-D Navier-Stokes code has been developed for analysis of turbomachinery blade rows and other inte...
The characterization of organized structures is discussed with emphasis on changes of the flows topo...
The solution of the three dimensional flow field for a flow through nacelle was studied. Both invisc...
The visualization of numerical fluid flow datasets is essential to the engineering processes that mo...
Topological methods are used to establish global and to extract local structure properties of vector...
Topological methods are used to establish global and to extract local structure properties of vector...
Vector fields, especially flow, and their analysis are of paramount importance to a wide variety of ...
Transonic flow fields about wing geometries are computed using an Euler/Navier-Stokes approach in wh...
A numerical scheme has been developed to solve the incompressible, 3-D Navier-Stokes equations using...
Based on the hypothesis that patterns of skin-friction lines and external streamlines reflect the pr...
The structures of three dimensional separated flow about some chosen aerodynamic components at angle...
One of the main themes in fluid dynamics at present and in the future is going to be computational f...
Fluid Mechanics is an example of a complex dynamical system with uncountable applications in industr...
Classification of fluid flows is an essential part of Fluid Dynamics. Flows are typically characteri...
Classification of fluid flows is an essential part of Fluid Dynamics. Flows are typically characteri...
A 3-D Navier-Stokes code has been developed for analysis of turbomachinery blade rows and other inte...
The characterization of organized structures is discussed with emphasis on changes of the flows topo...
The solution of the three dimensional flow field for a flow through nacelle was studied. Both invisc...
The visualization of numerical fluid flow datasets is essential to the engineering processes that mo...
Topological methods are used to establish global and to extract local structure properties of vector...
Topological methods are used to establish global and to extract local structure properties of vector...
Vector fields, especially flow, and their analysis are of paramount importance to a wide variety of ...
Transonic flow fields about wing geometries are computed using an Euler/Navier-Stokes approach in wh...
A numerical scheme has been developed to solve the incompressible, 3-D Navier-Stokes equations using...