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Titlebook: Unsteady Aerodynamics, Aeroacoustics and Aeroelasticity of Turbomachines; Kenneth C. Hall,Robert E. Kielb,Jeffrey P. Thomas Conference pro

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Conference proceedings 2006and Aeroelasticity of Turbomachines held September 8-11, 2003 at Duke University in Durham, North Carolina. The papers represent the latest in state of the art research in the areas of aeroacoustics, aerothermodynamics, computational methods, experimental testing related to flow instabilities, flutt
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tion of technical papers that were presented at the 10.th. International Symposium on Unsteady Aerodynamics, Aeroacoustics, and Aeroelasticity of Turbomachines held September 8-11, 2003 at Duke University in Durham, North Carolina. The papers represent the latest in state of the art research in the
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COMPARISON OF MODELS TO PREDICT LOW ENGINE ORDER EXCITATION IN A HIGH PRESSURE TURBINE STAGEumber and pressure are computed with poor agreement to experiments. Future evaluations of the resulting rotor excitation pressure are needed to estimate the level of necessary agreement to give acceptable predictions of the low engine order forced response.
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STRUCTURE OF UNSTEADY VORTICAL WAKES BEHIND BLADES OF MUTUAL-MOVING ROWS OF AN AXIAL TURBOMACHINEssing waves of vorticity causes acoustic disturbances and additional aerodynamical losses owing to energy dissipation. As dissipative function depends on distribution of vorticity, for an estimation of the losses, caused a rotor-stator interaction, the description of vortical wakes structure at presence in them of free vortexes is necessary.
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he conventional power generating plant will make a significant contribution to sustainable power production. Wind and solar energy resources are the promising sources of renewable energy. They have huge potential that can satisfy the energy demand and can reduce the emission of harmful greenhouse ga
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