Optimization of Francis Turbines for Variable Speed Operation Using Surrogate Modeling Approach

Author:

Iliev Igor1,Tengs Erik Os2,Trivedi Chirag3,Dahlhaug Ole Gunnar1

Affiliation:

1. Waterpower Laboratory, Norwegian University of Science and Technology (NTNU), Alfred Getz' Vei 4, Trondheim 7034, Norway

2. EDR & Medeso AS, Lysaker Torg 45, Lysaker 1366, Norway

3. Mem. ASME Rainpower Norge AS, Instituttveien 8, Kjeller 2027, Norway

Abstract

Abstract Previous studies suggested variable speed operation (VSO) of Francis turbines as a measure to improve the efficiency at off-design operating conditions. This is, however, strongly dependent on the hydraulic design and, for an existing turbine, improvements can be expected only with a proper redesign of the hydraulic surfaces. Therefore, an optimization algorithm is proposed and applied to the runner of a low specific speed Francis turbine, with an optimization strategy specifically constructed to improve the variable speed performance. In the constrained design space of the reference turbine, the geometry of the replacement runner is parametrically defined using 15 parameters. Box–Behnken method was used to populate the design space with 421 unique samples, needed to train fully quadratic response surface models of three characteristic efficiencies defined by the proposed objective function. Computational fluid dynamics (CFD) was used to calculate the responses for each sample. The parametric study showed that the anticipated variation of the shape of the hill chart, needed to improve the variable speed performance of the turbine, is limited within a narrow range. The presented method is general and can be applied to any specific speed in the Francis turbine range, for both synchronous speed and variable speed optimization tasks.

Publisher

ASME International

Subject

Mechanical Engineering

Reference40 articles.

1. Share of Renewables in Energy Consumption in the EU Reached 17.5% in 2017,2019

2. Grid Stability and Effect of Flexible Operation on Francis Runners,2016

3. Dynamic Loads in Francis Runners and Their Impact on Fatigue Life,2014

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