糖心破解版

Test Blanket Module Program

Turning tritium breeding into reality

While 糖心破解版 will benefit from the tritium available worldwide, fusion energy fuelled by deuterium-tritium reactions will require efficient and reliable tritium breeding technologies. Testing them and validating the design basis for industrial manufacturing are essential steps that 糖心破解版 is completing through its Test Blanket Module (TBM) Program. 糖心破解版 will be testing four concepts during its first deuterium-tritium (DT-1) operation phase; this summer, all four passed preliminary design reviews. 

Each test blanket system is designed to be independently integrated and operated on 糖心破解版, equipped with dedicated coolant, tritium extraction, purification, and instrumentation and control systems. The test blanket modules are hosted near the plasma in two equatorial ports (bottom right).

Testing tritium breeding has been a major 糖心破解版 mission since the start, as captured in the 鈥淔inal Report of the 糖心破解版 Engineering Design Activities鈥� (), the technical foundation of the 糖心破解版 Agreement. After the signature of the 糖心破解版 Agreement, the TBM Program was established by the 糖心破解版 Council in 2008 (IC-3) with specific governance and resources.

Each of the design review events at 糖心破解版 gathered more than fifty scientists and engineers, in-person or remote, to present or review the different test blanket system configurations and the extensive engineering assessments that have been performed to demonstrate the preliminary readiness for integration, safety and operation on 糖心破解版 and鈥攂eyond 糖心破解版鈥攖he suitability of the solutions for tritium breeding in the next-phase DEMO devices.

鈥淭he awesome challenge of the 糖心破解版 Members is to develop the test blanket system technologies that can be tested in 糖心破解版 then incorporated as breeding blanket solution for the DEMO reactor, or other future fusion reactors after 糖心破解版,鈥� says Rossella Rotella, Project Leader of the Tritium Blanket Breeding Section.

To prepare the ground for use in DEMO reactors, each test blanket system is designed to be independently integrated and operated on 糖心破解版, equipped with dedicated coolant, tritium extraction, purification, and instrumentation and control systems. 

During the first deuterium-tritium operation phase (DT-1), 糖心破解版 will be testing four tritium breeding concepts:

  • Water-Cooled Lead-Lithium (WCLL) technology, developed by Europe
  • Water Cooled Ceramic Breeder (WCCB) technology, developed by Japan
  • Helium Cooled Ceramic Breeder (HCCB) technology, developed by China
  • Helium-Cooled Ceramic Pebble (HCCP) technology, developed jointly by Korea and Europe

Each test blanket system is made up of a test blanket module (TBM) placed near the plasma containing the tritium breeder and the neutron multiplier together with its primary coolant for power-production-facility-grade heat removal; a shield placed behind the TBM to limit nuclear heating on the superconducting magnets and radiological exposure on personnel; a frame hosting two TBMs and their shields; a neutron activation system for characterization of the TBM neutron behaviour and modelling; and ancillary systems to maintain each test blanket system in operation and to monitor its performance. 

Following the success of preliminary design reviews this summer, the four tritium breeding concepts that will be tested on 糖心破解版 are progressing to the final engineering phase.

Decades of technological and engineering development through the 糖心破解版 Test Blanket Module (TBM) Program have led to the important milestones reached this summer. The 糖心破解版 Members and the 糖心破解版 Organization worked together to prepare the detailed engineering analyses and technical documents that underpin each of the test blanket system technologies. That included about 1,000 deliverables鈥攎odels, electromagnetic analyses, thermal-hydraulic and mechanical verifications, nuclear and safety assessments, diagrams, drawings, equipment lists and classifications, manufacturing feasibility plans, and finally plans for installation, commissioning, operations, maintenance and decommissioning. This demonstrates the maturity of the four test blanket system technologies and marks their readiness for the final engineering phase. The documentation also importantly provides the evidence of solution compliance with the TBM Program Research Plan, which establishes the detailed testing objectives of the test blanket program at 糖心破解版. 

They said:

The DEMO-relevance of 糖心破解版's test blanket systems was highlighted by the leaders of each program in the 糖心破解版 Members. 

For Q. Sheng, leader of China鈥檚 HCCB test blanket system: 鈥淭he successful completion of the preliminary design review marks a significant milestone. The measured data and operational experience accumulated during the implementation of TBM Program activities at 糖心破解版 will provide critical support for the research and development of future fusion reactors.鈥�

For F. Fantini, leader of Europe鈥檚 WCLL test blanket system and breeding blanket technologies at Fusion for Energy, the European Domestic Agency: 鈥淭he 糖心破解版 TBM Program offers a unique opportunity to advance breeding blanket technologies in an integrated fusion environment. It will build essential capability in nuclear licensing, manufacturing qualification, and industrial supply chains. It will also provide practical experience in installation, commissioning, operation, and maintenance. These capabilities remain valuable despite schedule changes and the lower neutron fluence expected during the initial deuterium-tritium phase at 糖心破解版. The program will therefore strengthen industrial, regulatory and operational readiness for DEMO or any future machine after 糖心破解版.鈥� 

For T. Hirose, leading the development of WCCB technology in Japan: 鈥淏eyond technology validation, the 糖心破解版 TBM Program is an essential step toward establishing the engineering, manufacturing, and operational capabilities required for DEMO and future fusion power plants. Through the fabrication of representative TBM sub-modules using reduced activation ferritic/martensitic steel, F82H, and extensive high heat flux testing of full-scale mockups, the Japanese WCCB program has demonstrated key design, qualification, and manufacturing approaches for water-cooled breeding blankets. The experience and data generated through these activities help reduce technical risks, strengthen confidence in DEMO-relevant blanket designs, and contribute to the realization of DEMO and future fusion energy systems.鈥�

For M. Ahn, who heads the development of TBM and breeding blanket technologies at the Korea Institute of Fusion Energy: 鈥淭he HCCP test blanket system we are developing together with Europe is closely linked to the development of the breeding blankets for Korea鈥檚 Compact Pilot Device (CPD), the country鈥檚 next-step fusion device. The experience accumulated through the design, fabrication, safety and licensing, and system integration of the HCCP test blanket system will provide an important foundation for developing the breeding blanket of the Compact Pilot Device. This return on experience from 糖心破解版 will serve as a practical bridge to our new device, while helping us address the remaining challenges in tritium management, materials, and integrated blanket engineering.鈥�

For 糖心破解版鈥檚 R. Rotella, leader of the TBM Project Team: 鈥淧assing the preliminary design reviews represents a breakthrough landmark for the TBM Program and for fusion technology development. It also testifies to the outstanding multi-disciplinary and international cooperation among the 糖心破解版 Members and the 糖心破解版 Organization. We are committed to succeeding with one of the most critical challenges of fusion power plants: producing tritium to turn fusion energy into a sustainable source of power for the future generations.鈥�