Please use this identifier to cite or link to this item: http://elar.urfu.ru/handle/10995/57070
Title: 3D shape optimisation of a low-pressure turbine stage
Authors: Witanowski, L.
Klonowicz, P.
Lampart, P.
Issue Date: 2018
Publisher: Ural Federal University
WIT Press
Уральский федеральный университет
Citation: Witanowski L. 3D shape optimisation of a low-pressure turbine stage / L. Witanowski, P. Klonowicz, P. Lampart // International Journal of Energy Production and Management. — 2018. — Vol. 3. Iss. 1. — P. 10-21.
Abstract: The possibility of reducing the flow losses in low-pressure turbine stage has been investigated in an iterative process using a novel hybrid optimisation algorithm. Values of the maximised objective function that is isentropic efficiency are found from 3D RANS computation of the flowpath geometry, which was being changed during the optimisation process. To secure the global flow conditions, the constraints have been imposed on the mass flow rate and reaction. Among the optimised parameters are stator and rotor twist angles, stator sweep and lean, both straight and compound. Blade profiles remained unchanged during the optimisation. A new hybrid stochastic-deterministic algorithm was used for the optimisation of the flowpath. In the proposed algorithm, the bat algorithm was combined with the direct search method of Nelder-Mead in order to refine the best obtained solution from the standard bat algorithm. The method was tested on a wide variety of well-known test functions. Also, the results of the optimisation of the other stochastic and deterministic methods were compared and discussed. The optimisation gives new 3D-stage designs with increased efficiency comparing to the original design.
Keywords: CFD
EFFICIENCY
HYBRID METHOD
LOW PRESSURE STEAM TURBINE
OPTIMISATION
SWARM INTELLIGENCE
URI: http://elar.urfu.ru/handle/10995/57070
RSCI ID: https://elibrary.ru/item.asp?id=32521115
ISSN: 2056-3272 (paper format)
2056-3280 (online)
DOI: 10.2495/EQ-V3-N1-10-21
Sponsorship: This work was supported by The National Science Centre, Grant No. 2015/17/N/ST8/01782.
Origin: International Journal of Energy Production and Management. 2018. Vol. 3. Iss. 1
Appears in Collections:International Journal of Energy Production and Management

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