| Title | A Redesign Strategy to Improve the Efficiency of a 17-Stage Steam Turbine |
| Publication Type | Journal Article |
| Year of Publication | 2011 |
| Authors | Rubechini F, Schneider A, Arnone A, Cecchi S, Malavasi F |
| Journal | ASME Journal of Turbomachinery |
| Volume | 134 |
| Issue | 3 |
| Pagination | 031021 |
| Date Published | 07/2011 |
| ISSN Number | 0889-504X |
| Accession Number | WOS:000292775700021 |
| Other Numbers | Scopus 2-s2.0-79960322212 |
| Keywords | Artificial Neural Networks, Optimization, Steam Turbine |
| Abstract | A three-dimensional Reynolds averaged Navier–Stokes solver was applied to the aerodynamic redesigning of a 17-stage steam turbine. The redesign procedure was divided into three steps. In the first one, a single embedded stage was considered, and an optimization of stator lean and rotor twist was carried out by applying suitable repeating inlet/outlet boundary conditions. In the second step, a proper geometrical transformation between the original reference stage and the optimized one was identified and then applied to all other turbine stages, thus leading to a first approximation of the redesigned turbine. Finally, a neural-network-based refinement of the stator and rotor twist of each stage was performed to account for its actual position and operating conditions within the meridional channel. In this work, a detailed description of the redesign procedure is provided, and the aerodynamic characteristics of the optimized geometry are discussed and compared with the original ones. |
| URL | http://turbomachinery.asmedigitalcollection.asme.org/article.aspx?articleid=1468843 |
| DOI | 10.1115/1.4003082 |