Computational fluid dynamics (CFD) analysis using Reynolds-averaged Navier-Stokes (RANS) formulation for turbomachinery-related flows has enabled improved engine component designs. RANS methodology has limitations that are related to its inability to accurately describe the spectrum of flow phenomena encountered in engines. Examples of flows that are difficult to compute accurately with RANS include phenomena such as laminar/turbulent transition, turbulent mixing due to mixing of streams, and separated flows. Large eddy simulation (LES) can improve accuracy but at a considerably higher cost. In recent years, hybrid schemes that take advantage of both unsteady RANS and LES have been proposed. This study investigated an alternative scheme, th...
A three-dimensional Navier-Stokes analysis tool has been developed in order to study the effect of f...
This viewgraph presentation summarizes some CFD experience at GE Aircraft Engines for flows in the p...
Film cooling is a technique used in gas turbine engines, and blades and rocket nozzles to protect cr...
Computational fluid dynamics (CFD) analysis using Reynolds-averaged Navier-Stokes (RANS) formulation...
An experiment investigating flow and heat transfer of long (length to diameter ratio of 18) cylindri...
Large eddy simulation (LES) is carried out to predict the thermal performance, unsteady flow pattern...
NASA Glenn Research Center s General Multi-Block Navier-Stokes Convective Heat Transfer Code (Glenn-...
The aim of this research project is to make use of NASA Glenn on-site computational facilities in or...
For the last several years, Glenn-HT, a three-dimensional (3D) Computational Fluid Dynamics (CFD) co...
Gas-turbine engines use film cooling to actively cool turbine components and keep thermal loads on t...
Modern gas turbines require an active cooling system with fluid taken from the compres- sor to with...
This thesis describes the numerical predictions of turbine film cooling interactions using Large Edd...
AbstractFilm cooling of turbine blades is an effective way to cool the blade and ensure the long lif...
This thesis describes the numerical predictions of turbine film cooling interactions using Large Edd...
Accurate prediction of film cooling flow is a necessity in the design of high-pressure turbine compo...
A three-dimensional Navier-Stokes analysis tool has been developed in order to study the effect of f...
This viewgraph presentation summarizes some CFD experience at GE Aircraft Engines for flows in the p...
Film cooling is a technique used in gas turbine engines, and blades and rocket nozzles to protect cr...
Computational fluid dynamics (CFD) analysis using Reynolds-averaged Navier-Stokes (RANS) formulation...
An experiment investigating flow and heat transfer of long (length to diameter ratio of 18) cylindri...
Large eddy simulation (LES) is carried out to predict the thermal performance, unsteady flow pattern...
NASA Glenn Research Center s General Multi-Block Navier-Stokes Convective Heat Transfer Code (Glenn-...
The aim of this research project is to make use of NASA Glenn on-site computational facilities in or...
For the last several years, Glenn-HT, a three-dimensional (3D) Computational Fluid Dynamics (CFD) co...
Gas-turbine engines use film cooling to actively cool turbine components and keep thermal loads on t...
Modern gas turbines require an active cooling system with fluid taken from the compres- sor to with...
This thesis describes the numerical predictions of turbine film cooling interactions using Large Edd...
AbstractFilm cooling of turbine blades is an effective way to cool the blade and ensure the long lif...
This thesis describes the numerical predictions of turbine film cooling interactions using Large Edd...
Accurate prediction of film cooling flow is a necessity in the design of high-pressure turbine compo...
A three-dimensional Navier-Stokes analysis tool has been developed in order to study the effect of f...
This viewgraph presentation summarizes some CFD experience at GE Aircraft Engines for flows in the p...
Film cooling is a technique used in gas turbine engines, and blades and rocket nozzles to protect cr...