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The safety designs for the TITAN reversed-field pinch reactor study

C.P.C. Wong, S.P. Grotz, J. Blanchard, E.T. Cheng, K.R. Schultz1989年Fusion Engineering and DesignIF 1.7出版社

AbstractTITAN is a study to investigate the potential of the reversed-field pinch concept as a compact, high-power density energy system. Two reactor concepts were developed, a self-cooled lithium design with vanadium structure and an aqueous solution loop-in-pool design, both operating at 18 MW/m2. The key safety features of the TITAN-I lithium-vanadium blanket design are in material selection, fusion power core configuration selection, lithium piping connections, and passive lithium drain tank system. Based on these safety features and results from accident evaluation, TITAN-I can at least be rated at a level 3 of safety assurance. For the TITAN-II aqueous loop-in-pool design, the key passive feature is the complete submersion of the fusion power core and the corresponding primary coolant loop system into a pool of low temperature water. Based on this key safety design feature, the TITAN-II design can be rated at a level 2 of safety assurance.

日本語訳

TITANは、逆転磁場ピンチ概念をコンパクトで高電力密度のエネルギーシステムとしての可能性を調査する研究である。2つの炉概念が開発された。バナジウム構造を備えた自己冷却リチウム設計と、水溶液ループ・イン・プール設計であり、いずれも18 MW/m²で運転する。TITAN-Iリチウム・バナジウムブランケット設計の主要な安全特性は、材料選定、核融合動力炉心の構成選定、リチウム配管接続、および受動式リチウムドレインタンクシステムにある。これらの安全特性と事故評価の結果に基づき、TITAN-Iは少なくとも安全保証レベル3に評価できる。TITAN-II水溶液ループ・イン・プール設計では、主要な受動的安全特性は、核融合動力炉心と対応する一次冷却ループシステムを低温水プールに完全に浸漬することである。この主要な安全設計特性に基づき、TITAN-II設計は安全保証レベル2に評価できる。

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Reversed field pinch
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