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Tritium breeding capability of water cooled ceramic breeder blanket with different container designs

Fusion engineering and design, 2019
Water cooled ceramic breeder (WCCB) blankets have been regarded as a primary concept in Japan. We investigated the tritium breeding capability of a WCCB blanket with a cylindrical structure, an advantageous shape for withstanding high coolant pressure ...
H. Gwon   +5 more
semanticscholar   +1 more source

Innovative Liquid Breeder Blanket Design Activities in Japan

Fusion Science and Technology, 2005
In order to clarify key engineering issues and to enhance key R&D activities for D-T fusion blankets, many design activities on innovative liquid blanket systems are on going as collaboration studi...
Sagara, A   +6 more
openaire   +2 more sources

Ceramic sphere-pac breeder design for fusion blankets

Fusion Engineering and Design, 1991
Abstract Randomly packed beds of ceramic spheres are a practical approach to surrounding fusion plasmas with tritium-breeding material. This paper examines the general properties of sphere-pac beds for application in fusion breeder blankets. The design considerations and models are reviewed for packing, tritium breeding and recovery, thermal ...
P.J. Gierszewski, J.D. Sullivan
openaire   +1 more source

Test Requirements for Solid Breeder Blanket Thermal Behavior

Fusion Technology, 1985
Testing of solid breeder blanket issues may be constrained by available test device parameters such as heat source and pulse length.
K. Taghavi, P. Gierszewski
openaire   +1 more source

Electromagnetic force evaluation on the water cooled ceramic breeder blanket for CFETR

Fusion engineering and design, 2018
The Water Cooled Ceramic Breeder (WCCB) blanket is one of the blanket candidates for Chinese Fusion Engineering Test Reactor (CFETR). To investigate the electromagnetic (EM) force (magnetization force and Lorentz force) on the WCCB blanket, EM analyses ...
Xuebin Ma, Min Li, Songlin Liu
semanticscholar   +1 more source

Water-Cooled Solid-Breeder Blanket Concept for ITER

Fusion Technology, 1989
A water cooled solid-breeder blanket concept was developed for ITER. The main function of this blanket is to produce the necessary tritium for the ITER operation. Several design features are incorporated in this blanket concept to increase its attractiveness. The main features are the following: (a) a multilayer concept which reduces fabrication cost; (
Y. Gohar   +13 more
openaire   +1 more source

Solid breeder test blanket module design and analysis

Fusion Engineering and Design, 2006
This paper presents the design and analysis for the US ITER solid breeder blanket test articles. Objectives of solid breeder blanket testing during the first phase of the ITER operation focus on exploration of fusion break-in phenomena and configuration scoping.
A. Ying   +10 more
openaire   +1 more source

Trends in liquid metal breeder blanket development

Fusion Engineering and Design, 1991
Abstract The papers presented in the session “Blanket Technology II” at the Second International Symposium on Fusion Nuclear Technology are introduced, most of which are related to liquid metal blanket technologies. Based on these papers, the recent trends in liquid metal breeder blanket development are explained, and the needs for further ...
openaire   +1 more source

Denaturing Generated Pu in Fast Breeder Reactor Blanket

Journal of Nuclear Science and Technology, 2010
Protected Pu production (P3) is a recently developed concept to enhance the proliferation resistance properties of Pu by increasing the fraction of even-mass-number Pu isotopes thus leading to the denaturing of Pu. The present paper deals with the possibility of denaturing Pu by consideration of Pu and minor actinides (MAs) multicycling in medium-size ...
Yoshitalia MEILIZA   +2 more
openaire   +1 more source

ITER R & D on breeder blanket materials

Journal of Nuclear Materials, 1991
The International Thermonuclear Experimental Reactor (ITER) activity includes specific RD viz., European Community, Japan, Soviet Union and the United States. The current effort includes several subtasks in each of the following four task areas: 1. (1) ceramic breeder materials, 2. (2) lead-lithium breeder, 3. (3) aqueous salt solutions,
D.L. Smith   +3 more
openaire   +1 more source

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