Techno-Economic Analysis of Common Work of Wind and Combined Cycle Gas Turbine Power Plant by Offering Continuous Level of Power to Electricity Market

Wind power varies over time and variations occur on all time scales, mainly under the influence of meteorological fluctuations. Understanding these variations and their predictability is of key importance for integration and optimal utilisation of wind in the power system. There are two major attrib...

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Main Authors: Željko Tomšić, Ivan Rajšl, Matea Filipović
Format: Article
Language:English
Published: SDEWES Centre 2018-06-01
Series:Journal of Sustainable Development of Energy, Water and Environment Systems
Subjects:
Online Access: http://www.sdewes.org/jsdewes/pid5.0186
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author Željko Tomšić
Ivan Rajšl
Matea Filipović
author_facet Željko Tomšić
Ivan Rajšl
Matea Filipović
author_sort Željko Tomšić
collection DOAJ
description Wind power varies over time and variations occur on all time scales, mainly under the influence of meteorological fluctuations. Understanding these variations and their predictability is of key importance for integration and optimal utilisation of wind in the power system. There are two major attributes of variable renewable generation that notably impact the participation on power exchanges: variability and uncertainty. Due to variability and uncertainty, wind plants cannot participate in the electricity market, especially on the power exchanges. This paper will present a techno-economic analysis of work of wind plants together with a combined cycle gas turbine power plant as support for offering continuous power to the electricity market. This work presents a model of electricity production from wind farms and a combined cycle gas turbine power plant developed in the programming tool called PLEXOS. Real hourly input data and all characteristics of combined cycle gas turbine power plant were used in the model. A detailed analysis of techno-economic characteristics of ramp rates and different types of starts and stops of the plant was made. The main motivation for this analysis is to investigate both technical and economical possibilities for an investor to participate in the power exchanges by offering continuous guaranteed power from wind plants by backing them up with a combined cycle gas turbine power plant.
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spelling doaj.art-cf8722cf82d74440997de729b86d5eb12022-12-22T01:31:29ZengSDEWES CentreJournal of Sustainable Development of Energy, Water and Environment Systems1848-92572018-06-016227629010.13044/j.sdewes.d5.018600186Techno-Economic Analysis of Common Work of Wind and Combined Cycle Gas Turbine Power Plant by Offering Continuous Level of Power to Electricity MarketŽeljko Tomšić0Ivan Rajšl1Matea Filipović2 Department of Energy and Power Systems, Faculty of Electrical Engineering and Computing, University of Zagreb, Unska 3, 10000 Zagreb, Croatia Department of Energy and Power Systems, Faculty of Electrical Engineering and Computing, University of Zagreb, Unska 3, 10000 Zagreb, Croatia Department of Energy and Power Systems, Faculty of Electrical Engineering and Computing, University of Zagreb, Unska 3, 10000 Zagreb, Croatia Wind power varies over time and variations occur on all time scales, mainly under the influence of meteorological fluctuations. Understanding these variations and their predictability is of key importance for integration and optimal utilisation of wind in the power system. There are two major attributes of variable renewable generation that notably impact the participation on power exchanges: variability and uncertainty. Due to variability and uncertainty, wind plants cannot participate in the electricity market, especially on the power exchanges. This paper will present a techno-economic analysis of work of wind plants together with a combined cycle gas turbine power plant as support for offering continuous power to the electricity market. This work presents a model of electricity production from wind farms and a combined cycle gas turbine power plant developed in the programming tool called PLEXOS. Real hourly input data and all characteristics of combined cycle gas turbine power plant were used in the model. A detailed analysis of techno-economic characteristics of ramp rates and different types of starts and stops of the plant was made. The main motivation for this analysis is to investigate both technical and economical possibilities for an investor to participate in the power exchanges by offering continuous guaranteed power from wind plants by backing them up with a combined cycle gas turbine power plant. http://www.sdewes.org/jsdewes/pid5.0186 Combined cycle gas turbine plantWind plantWind power balancingPLEXOS modelPower plant ramp ratePower plant start-up regimeOptimisation time resolution.
spellingShingle Željko Tomšić
Ivan Rajšl
Matea Filipović
Techno-Economic Analysis of Common Work of Wind and Combined Cycle Gas Turbine Power Plant by Offering Continuous Level of Power to Electricity Market
Journal of Sustainable Development of Energy, Water and Environment Systems
Combined cycle gas turbine plant
Wind plant
Wind power balancing
PLEXOS model
Power plant ramp rate
Power plant start-up regime
Optimisation time resolution.
title Techno-Economic Analysis of Common Work of Wind and Combined Cycle Gas Turbine Power Plant by Offering Continuous Level of Power to Electricity Market
title_full Techno-Economic Analysis of Common Work of Wind and Combined Cycle Gas Turbine Power Plant by Offering Continuous Level of Power to Electricity Market
title_fullStr Techno-Economic Analysis of Common Work of Wind and Combined Cycle Gas Turbine Power Plant by Offering Continuous Level of Power to Electricity Market
title_full_unstemmed Techno-Economic Analysis of Common Work of Wind and Combined Cycle Gas Turbine Power Plant by Offering Continuous Level of Power to Electricity Market
title_short Techno-Economic Analysis of Common Work of Wind and Combined Cycle Gas Turbine Power Plant by Offering Continuous Level of Power to Electricity Market
title_sort techno economic analysis of common work of wind and combined cycle gas turbine power plant by offering continuous level of power to electricity market
topic Combined cycle gas turbine plant
Wind plant
Wind power balancing
PLEXOS model
Power plant ramp rate
Power plant start-up regime
Optimisation time resolution.
url http://www.sdewes.org/jsdewes/pid5.0186
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AT mateafilipovic technoeconomicanalysisofcommonworkofwindandcombinedcyclegasturbinepowerplantbyofferingcontinuouslevelofpowertoelectricitymarket