Title of article
Axial flow, multi-stage turbine and compressor models
Author/Authors
Tournier، نويسنده , , Jean-Michel and El-Genk، نويسنده , , Mohamed S.، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2010
Pages
14
From page
16
To page
29
Abstract
Design models of multi-stage, axial-flow turbine and compressor are developed for high temperature nuclear reactor power plants with Closed Brayton Cycle for energy conversion. The models are based on a mean-line through-flow analysis for free-vortex flow, account for the profile, secondary, end wall, trailing edge and tip clearance losses in the cascades, and calculate the geometrical parameters of the blade cascades. The effects of the mean-stage work coefficient, flow coefficient and stage reaction on the design and performance of helium turbine and compressor are investigated. The results compare favorably with those reported for 6 stages helium turbine and 20 stages helium compressor. Also presented and discussed are the results of parametric analyses of a 530-MW helium turbine, and a 251-MW helium compressor.
Keywords
Gas turbo-machine , Helium , Axial-flow turbine and compressor design , Noble gas binary mixtures , Closed Brayton cycle
Journal title
Energy Conversion and Management
Serial Year
2010
Journal title
Energy Conversion and Management
Record number
2334966
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