Title of article :
Molten salt self-cooled solid first wall and blanket design based on advanced ferritic steel
Author/Authors :
Wong، نويسنده , , C.P.C and Malang، نويسنده , , Abdul-Razzaq S. and Sawan، نويسنده , , M. and Sviatoslavsky، نويسنده , , I. and Mogahed، نويسنده , , E. and Smolentsev، نويسنده , , S. and Majumdar، نويسنده , , Robert S. and Merrill، نويسنده , , B. and Mattas، نويسنده , , R. and Friend، نويسنده , , M. and Bolin، نويسنده , , Timothy J. and Sharafat، نويسنده , , S.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2004
Pages :
31
From page :
245
To page :
275
Abstract :
As an element in the U.S. Advanced Power Extraction (APEX) program, the solid first wall and blanket design team assessed innovative design configurations with the use of advanced nano-composite ferritic steel (AFS) as the structural material and FLiBe as the tritium breeder and coolant. The goal for the assessment is to search for designs that can have high volumetric power density and surface heat-flux handling capability, with assurance of fuel self-sufficiency, high thermal efficiency and passive safety for a tokamak power reactor. We selected the re-circulating flow configuration as our reference design. Based on the recommended material properties of AFS we found that the reference design can handle a maximum surface heat flux of 1 MW/m2, and a maximum neutron wall loading of 5.4 MW/m2, with a gross thermal efficiency of 47%, while meeting all the tritium breeding, structural design and passive safety requirements. This paper will cover the results of the following areas of assessment: material design properties, FW/blanket design configuration, materials compatibility, components fabrication, neutronics analysis, thermal-hydraulics analysis including MHD effects, structural analysis; molten salt and helium closed cycle power conversion system; and safety and waste disposal of the re-circulating coolant first wall and blanket design.
Keywords :
First wall , Blanket , Flibe , Re-circulation coolant , Systems study , Liquid metal MHD , gas turbine , Fusion , Advanced ferritic steel
Journal title :
Fusion Engineering and Design
Serial Year :
2004
Journal title :
Fusion Engineering and Design
Record number :
2351920
Link To Document :
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