Hidden Hydro Oscillating Power for Europe

HORIZON.2.5HORIZON-RIAID: 101084362
EC Contribution
€48,542
Consortium Size
14 orgs
Summary

The H-HOPE project addresses the development and demonstration of innovative and sustainable energy harvesting systems capable of recovering hidden hydro energy from existing piping systems, open streams and open channels. This new technology is based on both the use of piezoelectric materials attached to submerged bodies with deforming walls and of electromagnetic regulators absorbing the transverse motion of oscillating bodies inside flows. The power density of the proposed energy harvesters will be significantly improved thanks to the multi-physics design approach and to the innovative adaptive power take-off (PTO) allowing to tune the resonance frequency of the coupled fluid-structure-electrical system and thus increase the flow induced vibrations under lock-in conditions. Eight (8) different case studies representative of actual industrial water facilities and free-flowing streams located across Europe will be used to experimentally test and validate the effectiveness of the technology in adequate and real operating conditions reproduced in laboratories. In parallel, numerical models will be developed and included in a multi-physics design strategy so as to optimize their design whereas an adaptive PTO will be developed and customize on the energy harvesting system so as to maximize the performance even in variable operating conditions. The assessment of the environmental and socio-economic impacts will be used to demonstrate the value of the selected case studies and the sustainability of the proposed technology aimed also at increasing the resilience of the water facilities. In order to extend this knowledge and promote the applications of the H-HOPE technologies to potential prosumers, an open-access and open-source do-it-yourself platform will be set up. As a result, the H-HOPE platform will certainly contribute to reduce the negative effects of the climate change and to reduce the CO2 emissions while increasing the energy independence of the EU.

Consortium (14)

Project Results (24)

Source: CORDIS, the EU research results database.

Publications (8)
"Mapping the perceived potential of energy harvesters to increase the resilience of European water and energy infrastructure "
· 2025DOI
Ivana Stepanovic, Steven Frigerio, Bjarnhéðinn Guðlaugsson, David Finger
A Life cycle assessment of energy harvesters in existing European water networks for distributed network monitoring
· 2025DOI
Bethany Bronkema, David C. Finger, Bjarnhédinn Gudlaugsson, Dogan Gezer
Addressing the Water-Energy Nexus: Renewable Energy Harvesting for Enhanced Monitoring and Sustainability in Water Networks
· 2025DOI
Bethany Bronkema, Bjarnhedinn Gudlaugsson, David Bermejo, Xavier Escaler, David C. Finger
Assessing enablers and challenges for the deployment of energy harvesters in water networks through stakeholder interviews
· 2025DOI
Ivana Stepanovic, Glenda Garcia-Santos, Bjarnhéðinn Guðlaugsson, David Christian Finger
Multi-Dimensional Feasibility Assessment of the Deployment of Vortex-induced vibration Energy Harvester to utilize hidden hydro potential in European water and energy infrastructure
· 2025DOI
Bjarnhéðinn Guðlaugsson, Matej Secnik, Ivana Stepanovic, Bethany Bronkema, Marko Hocevar, David Finger
Unlocking Hidden Energy: Assessing Micro and Pico Solutions for Sustainable Power Generation in Water Infrastructure
· 2025DOI
Bjarnhéðinn Guðlaugsson, Bethany Marguerite Bronkema, Ivana Stepanovic, Matej Secnik, Marko Hočevar, David Christian Finger
Energies
A Systematic Review of Techno-Economic, Environmental and Socioeconomic Assessments for Vibration Induced Energy Harvesting· 2024DOI
Bjarnhedinn Gudlaugsson; Bethany Marguerite Bronkema; Ivana Stepanovic; David Christian Finger
Climate-Neutral Europe: the Role of Renewable Energies in the Arctic to decarbonize Europe and enhance energy independence
· 2023DOI
David C. Finger, Svend Hardenberg
Deliverables (15)
Other Results (1)
Periodic Reporting for period 2 - H-HOPE (Hidden Hydro Oscillating Power for Europe)