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Advances in the definition of needs and specifications for a climate service tool aimed at small hydropower plants' operation and management

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Author
Contreras, Eva
Herrero, Javier
Chrochemore, Louise
Pechlivanidis, Ilias
Photiadou, Christiana
Aguilar, Cristina
Polo, María J.
Publisher
MDPI
Date
2020
Subject
Energy production
River flow
Seasonal forecast
Small hydropower plant
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Abstract
The operation feasibility of small hydropower plants in mountainous sites is subjected to the run-of-river flow, which is also dependent on a high variability in precipitation and snow cover. Moreover, the management of this kind of system has to be performed with some particular operation conditions of the plant (e.g., turbine minimum and maximum discharge) but also some environmental flow requirements. In this context, a technological climate service is conceived in a tight connection with end users, perfectly answering the needs of the management of small hydropower systems in a pilot area, and providing a forecast of the river streamflow together with other operation data. This paper presents an overview of the service but also a set of lessons learnt related to the features, requirements, and considerations to bear in mind from the point of view of climate service developers. In addition, the outcomes give insight into how this kind of service could change the traditional management (normally based on past experience), providing a probability range of the future river flow based on future weather scenarios according to the range of future weather possibilities. This highlights the utility of the co-generation process to implement climate services for water and energy fields but also that seasonal climate forecasting could improve the business as usual of this kind of facility.
URI
http://hdl.handle.net/10396/31567
Fuente
Contreras, E.; Herrero, J.; Crochemore, L.; Pechlivanidis, I.; Photiadou, C.; Aguilar, C.; Polo, M.J. Advances in the Definition of Needs and Specifications for a Climate Service Tool Aimed at Small Hydropower Plants’ Operation and Management. Energies 2020, 13, 1827. https://doi.org/10.3390/en13071827
Versión del Editor
https://doi.org/10.3390/en13071827
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