Skip to main content

CETP Selected Projects

Together for the Energy Transition

Discover how CETPartnership-funded projects are transforming research and innovation into real-world clean energy solutions. The partnership currently supports 163 active projects funded through the 2022, 2023 and 2024 Joint Calls.

These projects help accelerate the development, demonstration and deployment of clean energy technologies and solutions across Europe.

All Projects

WindSCORE

Sustainable Criteria and Overall Renewable Evaluation for Offshore Wind Energy

The main objective of WindSCORE is to develop a scientific toolbox for the 360° evaluation of offshore wind farm projects.

  • Joint Call 2024
  • TRI 2: Enhanced zero emission Power Technologies

FLEXI

Human-centered AI and digital twin powered energy system integration for flexibility markets

FLEXI is an interdisciplinary project that supports the clean energy transition (CET). Through the use of modern generative artificial intelligence (AI), it aims to engage citizens in the CET by building a federated digital twin (FDT) on the demand side to integrate various energy resources and technologies. The project also seeks to establish a novel Flexibility-as-a-Service business model that will incentivise resource owners to deposit their energy flexibility.

  • Joint Call 2024
  • TRI 1: Integrated Net-zero-emissions Energy System

LaTESt-CUT

Latent heat Thermal Energy Storage systems based on CMC at Ultra High Temperature

  • TRI 2: Enhanced zero emission Power Technologies

BREAD

High-temperature Heat Pump with Integrated Storage – reversed BRayton cycle for combined hEAt and colD

The main objective of LaTESt-CUT is to increase the operating temperature, and consequently, the efficiency of Thermal Energy Storage (TES) systems.

  • Joint Call 2024
  • TRI 6: Integrated industrial energy systems

TARIP

ThermoAcoustic heat pump for Renewable Industrial Process heating

TARIP will validate the technical feasibility of a robust and flexible industrial thermoacoustic heat pump (TAHP) technology capable of operating with supply temperatures between 150 to 250°C and temperature lifts of up to 100K.

  • Joint Call 2024
  • TRI 4: Efficient zero emission heating and cooling solutions

DREAM-PV

Design and REliAbility of Modules for PhotoVoltaic technologies with newly developed solar cells

The project is expected to deliver new knowledge and practical solutions for improving the reliability and durability of photovoltaic modules based on next-generation solar cell technologies. By developing optimized module designs, compatible material combinations, and improved integration processes, the project will enable more stable and long-lasting PV modules.

  • Joint Call 2024
  • TRI 2: Enhanced zero emission Power Technologies