International Journal of Gas Turbine, Propulsion and Power Systems
Online ISSN : 1882-5079
Development of an Unsteady Multi-Species Numerical Method for Internal Compressible Flows in the Turbine
Zhong-Nan WangZhi-Rong LinXin Yuan
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2013 Volume 5 Issue 1 Pages 23-29

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Abstract
Flexible Fuel is used for land-based power generation gas turbine to meet the environmental requirements, which bring high temperature gases with variable composition to the turbine downstream. in this paper, a high-order and high-resolution in-house CFD code (named START) was developed to capture more features of the real multi-species flow in the turbine. The code was validated with four samples, ranging from subsonic to transonic and supersonic flows. The validation showed that the code had high accuracy and fidelity to simulate the flows, which included both shock wave and species diffusion. Then the solver was used to simulate the unsteady multi-species flow in a 1.5-stage turbine, which included CO2 coolant injection at the 1st stator trailing edge. The cooling effect on the rotor downstream and associated losses were studied in terms of the coolant-to-free stream velocity ratio.
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