Abstract: This article deals with a three-dimensional unsteady numerical simulation of the unsteady rotor–stator interaction in a HP turbine stage.The numerical approach consists of a computational fluid dynamics (CFD) parallel code, based on an upwind total variation diminishing finite volume approach. The computation has been carried out using a sliding plane approach with hybrid unstructured meshes and a two-equation turbulent closure. The turbine rig under investigation is representative of the first stage of aeronautic gas turbine engines. A brief description of the cascade, the experimental setup, and the measuring technique is provided. Time accurate CFD computations of pressure fluctuations and Nusselt number are discussed against the experimental data
Three-dimensional unsteady investigation of HP turbine stages / P. ADAMI; F. MARTELLI. - In: PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS. PART A, JOURNAL OF POWER AND ENERGY. - ISSN 0957-6509. - STAMPA. - 220:(2006), pp. 155-167.
Three-dimensional unsteady investigation of HP turbine stages
ADAMI, PAOLO;MARTELLI, FRANCESCO
2006
Abstract
Abstract: This article deals with a three-dimensional unsteady numerical simulation of the unsteady rotor–stator interaction in a HP turbine stage.The numerical approach consists of a computational fluid dynamics (CFD) parallel code, based on an upwind total variation diminishing finite volume approach. The computation has been carried out using a sliding plane approach with hybrid unstructured meshes and a two-equation turbulent closure. The turbine rig under investigation is representative of the first stage of aeronautic gas turbine engines. A brief description of the cascade, the experimental setup, and the measuring technique is provided. Time accurate CFD computations of pressure fluctuations and Nusselt number are discussed against the experimental dataFile | Dimensione | Formato | |
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P_I_Journal Power Energy (Serie A) 2006.(Pg8-13).pdf
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P_I_Journal Power Energy (Serie A) 2006 (Pg1-7).pdf
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