F207 A Hybrid Computational Method of Quasi and Fully Three-Dimensional Fluid Dynamics for Multi-Stage Steam Turbines(Steam Turbine-3)
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概要
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A hybrid computational method using fluid dynamics has been proposed and developed for the blade design of steam turbines. It is composed of three main block: the quasi 3-dimensional through-flow calculation block, the fully 3-dimensional flow calculation block, and the mixing plane block. The hybrid computational method was applied to a 4-stage low-pressure steam turbine, where the rotating blade of the second stage was simulated in a fully 3-dimensional shape. The error in the steam mass flow rate across the mixing plane was confirmed to be sufficiently small, less than 0.5%. Primary design parameters such as the degree of reaction, Mach number and wetness mass fraction distributions were confirmed to be in good agreement with parameters for the fully 3-dimensional calculation of single turbine stage. In addition, the calculation time for four turbine stages was reduced by 40% as compared to the fully 3-dimensional calculation for single turbine stage. The developed hybrid method was judged as useful in the blade design of steam turbines.
- 一般社団法人日本機械学会の論文
- 2009-11-16
著者
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Feng Yixiang
Hitachi Ltd. Mechanical Engineering Research Laboratory
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Shikano Yoshio
Hitachi Ltd. Energy And Environmental Systems Laboratory
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SENOO Shigeki
Hitachi, Ltd., Energy and Environmental Systems Laboratory
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Senoo Shigeki
Hitachi Ltd. Energy And Environmental Systems Laboratory