PPT-Tritium Breeding Blanket

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Part II Coolant Properties Shielding and Tritium Breeding Ratio Nicholas Alfred NRE 4610A Intro to Fusion Dec 7 th 2015 500 Why Li17Pb83 High density 9015 kgm3

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Tritium Breeding Blanket: Transcript


Part II Coolant Properties Shielding and Tritium Breeding Ratio Nicholas Alfred NRE 4610A Intro to Fusion Dec 7 th 2015 500 Why Li17Pb83 High density 9015 kgm3 1 and therefore a high mass flow rate can be obtained at lower velocities. Blanket products do not contain organic binders Thermal Ceramic Blankets provide excellent resistance to chemical attack Exceptions include hydrofluoric acid phosphoric acid and strong alkalies ie Na O K O Thermal Ceramic blankets are unaffected by Neil B. . Morley, Adj. Professor. UCLA Fusion Science and . Technology. Research Needs Workshops. Fusion/Fission Hybrid. Gaithersburg, MD, Sep 30 – Oct 2, 2009. Summary of Preliminary Conclusions of the ReNeW Fusion/Fission Hybrid Blanket Panel. The development and simulation of fuel self- sufficiency capabilities of nuclear fusion reactors.. Bethany . Colling. b.colling@lancaster.ac.uk. B.Colling. Fusion Blanket Technology UNTF b.colling@lancaster.ac.uk. Blanket. Part I: Background, Choice of design, Choice of . breeder, Tritium permeation and separation. Matt Torrico. NRE 4610: Intro to Fusion. Dec. 7. th. , 2015. Introduction. The DD fuel cycle requires ion temperatures ~10x greater than. A. W. Going. B. D. McClain. S. D. Wilson. Goals. Protect magnets and vacuum vessel from radiation. Produce tritium. Convert neutron energy into removable heat. ITER First Wall panels on blanket.. 1. Tokamak. fusion reactors. T. . Onjun1), S. . . Sangaroon2), . J. . Prasongkit3), . A. . . Wisitsorasak4), R. . . Picha5), . J. . Promping5). 1. ) . Thammasat. University, . Pathumthani. , Thailand. Mission . and . Strategy . Summary . of previous workshops. 1. Conclusions Derived Primarily from Previous FNST Workshop, August 12-14, 2008 . A Breeding Blanket should be installed as the “BASE” Blanket on a FNSF from the beginning. and the Role of International Collaboration. Mohamed Abdou . Distinguished Professor of Engineering and Applied Science (UCLA) . Director, . Fusion Science and Technology Center (UCLA. ). Founding President. Blanket. Part I: Background, Choice of design, Choice of . breeder, Tritium permeation and separation. Matt Torrico. NRE 4610: Intro to Fusion. Dec. 7. th. , 2015. Introduction. The DD fuel cycle requires ion temperatures ~10x greater than. Nuclear Technology of the GT Fusion DEMO Reactor Andrew Rosenstrom, Nathan Morgenstern, Wes Crane, Stephen Johnston, Christian Maniscalco, Xianwei Wang Advisors : Dr . Stacey, Dr. Petrovic 1 Objectives FUSE System Design for FFHR Tanaka, S., Terai, T., Suzuki, A. (Univ. of Tokyo), Sagara, A., Motojima, O. Liquid tritium breeding materials have many advantages such as no irradiation damage, easy Brad J. Merrill, Masashi Shimada, Paul W. Humrickhouse, Chase N. Taylor, Thomas F. . Fuerst. and Robert J. . Pawelko. . INL Fusion Safety Program. Knoxville 2019 INFUSE Meeting. November 23. rd. , 2019. Cycle: Tritium . Breeding Blanket R&D . Paul . Humrickhouse. Town . Hall . Meeting: The Future of Fusion- Transitioning to Energy Production. 28. th. Symposium on Fusion on Fusion Engineering. June . Paul . Humrickhouse. (ORNL). Stephanie Lyons (PNNL). Sofia . Quaglioni. (LLNL). February 29, 2024. 2. Overview. Fusion reactors are anticipated to breed the tritium needed to fuel energy production. However, quantities of this isotope will be...

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