RIVER-POWER | Water flow kinetics energy exploitation for mini/micro hydropower plants.

Summary
RIVER-POWER is a disruptive technology able to efficiently convert the water flow kinetics energy in electricity thanks to a turbine innovative design derived from the wind power technology. The new technology enlarges the hydropower potentialities, being able to exploit the zero-head water flows with mini-micro applications (nominal power < 1 MW) and thus allowing the exploitation of new electricity production sources.

RIVER-POWER initiative objectives are:
• producing the zero-head kinetics energy driven hydroelectric turbines with the following technical targets: production = 4200 kWh/kW; efficiency = 45%; electricity production cost < 7 c€/kWh; investment < 2.000 €/kW; trigger speed < 1 m/s; minimization of the environmental impact reducing the civil works; easy and cheap installation.
• Fabricating and testing a integrated prototype (nominal power = 50 kW), to be proved in operational environment, in order to reach the TRL 9 at the end of the testing phase.
• Industrializing the RIVER-POWER plant, protecting the intellectual right and launching the technology industrial production and commercialization.

During the feasibility study, the Proposer EOL Power will assess in detail the technical, economical and financial viability of the initiative, quantifying the production costs and the market price, involving suppliers and potential end-users, developing a market strategy and a 5-years financial projections.
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More information & hyperlinks
Web resources: https://cordis.europa.eu/project/id/772867
Start date: 01-06-2017
End date: 31-10-2017
Total budget - Public funding: 71 429,00 Euro - 50 000,00 Euro
Cordis data

Original description

RIVER-POWER is a disruptive technology able to efficiently convert the water flow kinetics energy in electricity thanks to a turbine innovative design derived from the wind power technology. The new technology enlarges the hydropower potentialities, being able to exploit the zero-head water flows with mini-micro applications (nominal power < 1 MW) and thus allowing the exploitation of new electricity production sources.

RIVER-POWER initiative objectives are:
• producing the zero-head kinetics energy driven hydroelectric turbines with the following technical targets: production = 4200 kWh/kW; efficiency = 45%; electricity production cost < 7 c€/kWh; investment < 2.000 €/kW; trigger speed < 1 m/s; minimization of the environmental impact reducing the civil works; easy and cheap installation.
• Fabricating and testing a integrated prototype (nominal power = 50 kW), to be proved in operational environment, in order to reach the TRL 9 at the end of the testing phase.
• Industrializing the RIVER-POWER plant, protecting the intellectual right and launching the technology industrial production and commercialization.

During the feasibility study, the Proposer EOL Power will assess in detail the technical, economical and financial viability of the initiative, quantifying the production costs and the market price, involving suppliers and potential end-users, developing a market strategy and a 5-years financial projections.

Status

CLOSED

Call topic

SMEInst-09-2016-2017

Update Date

27-10-2022
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Horizon 2020
H2020-EU.2. INDUSTRIAL LEADERSHIP
H2020-EU.2.1. INDUSTRIAL LEADERSHIP - Leadership in enabling and industrial technologies
H2020-EU.2.1.1. INDUSTRIAL LEADERSHIP - Leadership in enabling and industrial technologies - Information and Communication Technologies (ICT)
H2020-EU.2.1.1.0. INDUSTRIAL LEADERSHIP - ICT - Cross-cutting calls
H2020-SMEINST-1-2016-2017
SMEInst-09-2016-2017 Stimulating the innovation potential of SMEs for a low carbon and efficient energy system
H2020-SMEINST-2-2016-2017
SMEInst-09-2016-2017 Stimulating the innovation potential of SMEs for a low carbon and efficient energy system
H2020-EU.2.3. INDUSTRIAL LEADERSHIP - Innovation In SMEs
H2020-EU.2.3.1. Mainstreaming SME support, especially through a dedicated instrument
H2020-SMEINST-1-2016-2017
SMEInst-09-2016-2017 Stimulating the innovation potential of SMEs for a low carbon and efficient energy system
H2020-SMEINST-2-2016-2017
SMEInst-09-2016-2017 Stimulating the innovation potential of SMEs for a low carbon and efficient energy system
H2020-EU.3. SOCIETAL CHALLENGES
H2020-EU.3.3. SOCIETAL CHALLENGES - Secure, clean and efficient energy
H2020-EU.3.3.0. Cross-cutting call topics
H2020-SMEINST-1-2016-2017
SMEInst-09-2016-2017 Stimulating the innovation potential of SMEs for a low carbon and efficient energy system
H2020-SMEINST-2-2016-2017
SMEInst-09-2016-2017 Stimulating the innovation potential of SMEs for a low carbon and efficient energy system