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A power market-based operation support model for sub-daily hydropower regulation practices

Torabi Haghighi, A. (författare)
Water, Energy and Environmental Engineering Research Unit, University of Oulu, PO Box 4300, 90014, Finland
Ashraf, F. B. (författare)
Water, Energy and Environmental Engineering Research Unit, University of Oulu, PO Box 4300, 90014, Finland
Riml, Joakim, 1979- (författare)
KTH,Resurser, energi och infrastruktur
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Koskela, J. (författare)
Finnish Environment Institute (SYKE), Latokartanonkaari 11, Helsinki 00790, Finland
Kløve, B. (författare)
Water, Energy and Environmental Engineering Research Unit, University of Oulu, PO Box 4300, 90014, Finland
Marttila, H. (författare)
Water, Energy and Environmental Engineering Research Unit, University of Oulu, PO Box 4300, 90014, Finland
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 (creator_code:org_t)
Elsevier Ltd, 2019
2019
Engelska.
Ingår i: Applied Energy. - : Elsevier Ltd. - 0306-2619 .- 1872-9118. ; 255
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
Stäng  
  • With increasing power production from renewable energy sources, sub-daily variations in energy demand need to be balanced. Today, hydropower is commonly used as balancing power. In this study, we quantified the impact of capacity constraints, in terms of reservoir volume and hydropower capacity, on the potential to comply with instant energy demand. To evaluate the impact, we developed two new metrics, power market impact and system efficiency ratio, which are based on two threshold flow regimes derived from natural flow as lower threshold release and regulated flow (based on hourly energy prices) as upper threshold release. The operation support model comprises 96 different regulation scenarios based on varying combinations of hydropower and reservoir capacities. For each scenario, an hourly water balance was simulated, to obtain the highest complying with upper threshold release based on actual energy demand. We tested the framework on the Kemijoki river with defined thresholds based on the natural flow regime (tributary river Ounasjoki) and the hourly energy price in Finland in 2017, and estimated the impact of regulation on hourly flow regime at the Taivalkoski hydropower station. The annual flow regime impact in 2013, 2014 and 2015 was estimated to be 74%, 84% and 61%, respectively, while the monthly impact varied from 27% to 100%. Our framework for evaluating interactions between the power market and sub-daily regulation practices is a useful novel tool for sustainable river management and can be easily applied to different rivers and regions and evaluated for different timescales.

Ämnesord

TEKNIK OCH TEKNOLOGIER  -- Samhällsbyggnadsteknik -- Vattenteknik (hsv//swe)
ENGINEERING AND TECHNOLOGY  -- Civil Engineering -- Water Engineering (hsv//eng)
TEKNIK OCH TEKNOLOGIER  -- Samhällsbyggnadsteknik -- Infrastrukturteknik (hsv//swe)
ENGINEERING AND TECHNOLOGY  -- Civil Engineering -- Infrastructure Engineering (hsv//eng)
TEKNIK OCH TEKNOLOGIER  -- Naturresursteknik -- Energisystem (hsv//swe)
ENGINEERING AND TECHNOLOGY  -- Environmental Engineering -- Energy Systems (hsv//eng)

Nyckelord

Flow regime alteration
Hydropeaking
Power market
Renewable energy
River regulation
Sub-daily variation
Commerce
Energy management
Hydroelectric power
Reservoirs (water)
Rivers
Daily variations
Flow regimes
Renewable energies
Power markets
alternative energy
demand analysis
energy market
flow regulation
hydrological regime
power generation
regulatory framework
river management
threshold
water budget
Finland
Kemijoki River
Lappi [Finland]
Land and Water Resources Engineering
Mark- och vattenteknik

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