Flexibilization of Gas Turbine Combined Cycle via Heat Pump: development of control logics via Software-in-the-loop application

Flexibilization of Gas Turbine Combined Cycle (GTCC) is a key for plant operations in the present as well as in the near future. The increasing of non-dispatchable sources in the energy production environment causes strong fluctuations in energy price and energy production profiles. The opportunity...

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Main Authors: Rossi Iacopo, Reveillere Adrien, Traverso Alberto
Format: Article
Language:English
Published: EDP Sciences 2019-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/39/e3sconf_supehr18_01004.pdf
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spelling doaj-ff19ad5e27b14f18a4767057afbdea6d2021-03-02T10:20:07ZengEDP SciencesE3S Web of Conferences2267-12422019-01-011130100410.1051/e3sconf/201911301004e3sconf_supehr18_01004Flexibilization of Gas Turbine Combined Cycle via Heat Pump: development of control logics via Software-in-the-loop applicationRossi Iacopo0Reveillere Adrien1Traverso Alberto2University of GenoaSiemens PLMUniversity of GenoaFlexibilization of Gas Turbine Combined Cycle (GTCC) is a key for plant operations in the present as well as in the near future. The increasing of non-dispatchable sources in the energy production environment causes strong fluctuations in energy price and energy production profiles. The opportunity to enhance flexibility of traditional GTCC is consequenlty welcomed. This work focuses on integration of a Heat Pump in a GTCC devoted to cogenerative purpose with the goal to integrate energy production, assist the power plant in normal operations and enriches the transient capability of the whole compound. This approach can be developed to be retro-fitted to existing power plant. In particular, a software-in-the-loop (SiL) application is here presented to test the developed control logics governing such power plant. The power plant model is developed and runs under Siemens AMESIM environemnt, whilst the control system is developed and integrated in Matlab/Simulink environment. The two systems are intefraced and exchange information with the goal to verify reliability of the control logics before going into the real field..https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/39/e3sconf_supehr18_01004.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Rossi Iacopo
Reveillere Adrien
Traverso Alberto
spellingShingle Rossi Iacopo
Reveillere Adrien
Traverso Alberto
Flexibilization of Gas Turbine Combined Cycle via Heat Pump: development of control logics via Software-in-the-loop application
E3S Web of Conferences
author_facet Rossi Iacopo
Reveillere Adrien
Traverso Alberto
author_sort Rossi Iacopo
title Flexibilization of Gas Turbine Combined Cycle via Heat Pump: development of control logics via Software-in-the-loop application
title_short Flexibilization of Gas Turbine Combined Cycle via Heat Pump: development of control logics via Software-in-the-loop application
title_full Flexibilization of Gas Turbine Combined Cycle via Heat Pump: development of control logics via Software-in-the-loop application
title_fullStr Flexibilization of Gas Turbine Combined Cycle via Heat Pump: development of control logics via Software-in-the-loop application
title_full_unstemmed Flexibilization of Gas Turbine Combined Cycle via Heat Pump: development of control logics via Software-in-the-loop application
title_sort flexibilization of gas turbine combined cycle via heat pump: development of control logics via software-in-the-loop application
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2019-01-01
description Flexibilization of Gas Turbine Combined Cycle (GTCC) is a key for plant operations in the present as well as in the near future. The increasing of non-dispatchable sources in the energy production environment causes strong fluctuations in energy price and energy production profiles. The opportunity to enhance flexibility of traditional GTCC is consequenlty welcomed. This work focuses on integration of a Heat Pump in a GTCC devoted to cogenerative purpose with the goal to integrate energy production, assist the power plant in normal operations and enriches the transient capability of the whole compound. This approach can be developed to be retro-fitted to existing power plant. In particular, a software-in-the-loop (SiL) application is here presented to test the developed control logics governing such power plant. The power plant model is developed and runs under Siemens AMESIM environemnt, whilst the control system is developed and integrated in Matlab/Simulink environment. The two systems are intefraced and exchange information with the goal to verify reliability of the control logics before going into the real field..
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/39/e3sconf_supehr18_01004.pdf
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AT reveillereadrien flexibilizationofgasturbinecombinedcycleviaheatpumpdevelopmentofcontrollogicsviasoftwareintheloopapplication
AT traversoalberto flexibilizationofgasturbinecombinedcycleviaheatpumpdevelopmentofcontrollogicsviasoftwareintheloopapplication
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