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Acadlore takes over the publication of IJEPM from 2025 Vol. 10, No. 3. The preceding volumes were published under a CC BY 4.0 license by the previous owner, and displayed here as agreed between Acadlore and the previous owner. ✯ : This issue/volume is not published by Acadlore.

Open Access
Research article

The Behavior of Single-Shaft Combined Cycle Gas Turbine Units at Frequency Drop in the Connected Grid

viktor silbermann
Engineering consultant, Fichtner Consulting Company, Germany
International Journal of Energy Production and Management
|
Volume 3, Issue 3, 2018
|
Pages 237-243
Received: N/A,
Revised: N/A,
Accepted: N/A,
Available online: N/A
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Abstract:

In the last 15 years many companies have developed single-shaft combined cycle gas turbine (CCGT) units having one generator, which is coupled to common single shaft of gas turbine (GT) and steam turbine (ST) via a special elaborated synchro-self-shifting (SSS) clutch. This clutch connects automati- cally the drive of the ST at one end of the generator to complement the drive of the GT at the other end of the generator. Such a technical solution, in comparison to previous ones, allows economizing on one generator circuit breaker (GCB) as well as the use of a two-winding transformer instead of a three-winding transformer. This scheme of single-shaft CCGT units is taking place in many coun- tries, but cases of tripping of such units by surge protection of GT have been observed in any power plants (PP). All such trippings were accompanied by frequency drop in the high voltage (HV) grid, to which these units were connected, although these drops were within the permissible limits for the CCGT units. This paper reports the results of investigating one of these cases of tripping, discusses the possible cause of these incidents and elaborates on some measures to prevent such trippings in the future.

Keywords: CCGT unit, disturbances in the HV grid, frequency drop, SSS clutch, steam turbine acceleration, surge protection, water pumps’ drives


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Silbermann, V. (2018). The Behavior of Single-Shaft Combined Cycle Gas Turbine Units at Frequency Drop in the Connected Grid. Int. J. Energy Prod. Manag., 3(3), 237-243. https://doi.org/10.2495/EQ-V3-N3-237-243
V. Silbermann, "The Behavior of Single-Shaft Combined Cycle Gas Turbine Units at Frequency Drop in the Connected Grid," Int. J. Energy Prod. Manag., vol. 3, no. 3, pp. 237-243, 2018. https://doi.org/10.2495/EQ-V3-N3-237-243
@research-article{Silbermann2018TheBO,
title={The Behavior of Single-Shaft Combined Cycle Gas Turbine Units at Frequency Drop in the Connected Grid},
author={Viktor Silbermann},
journal={International Journal of Energy Production and Management},
year={2018},
page={237-243},
doi={https://doi.org/10.2495/EQ-V3-N3-237-243}
}
Viktor Silbermann, et al. "The Behavior of Single-Shaft Combined Cycle Gas Turbine Units at Frequency Drop in the Connected Grid." International Journal of Energy Production and Management, v 3, pp 237-243. doi: https://doi.org/10.2495/EQ-V3-N3-237-243
Viktor Silbermann. "The Behavior of Single-Shaft Combined Cycle Gas Turbine Units at Frequency Drop in the Connected Grid." International Journal of Energy Production and Management, 3, (2018): 237-243. doi: https://doi.org/10.2495/EQ-V3-N3-237-243
Silbermann V.. The Behavior of Single-Shaft Combined Cycle Gas Turbine Units at Frequency Drop in the Connected Grid[J]. International Journal of Energy Production and Management, 2018, 3(3): 237-243. https://doi.org/10.2495/EQ-V3-N3-237-243