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Fusion-Driven Sub-Critical Dual-Cooled Waste Transmutation Blanket:Design and Analysis 被引量:1

Fusion-Driven Sub-Critical Dual-Cooled Waste Transmutation Blanket: Design and Analysis
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摘要 The Fusion-Driven Sub-critical System (FDS) is one of the Chinese programs to be further developed for fusion application. Its Dual-cooled Waste Transmutation Blanket (DWTB), as one the most important part of the FDS is cooled by helium and liquid metal, and have the features of safety, tritium self-sustaining, high efficiency and feasibility. Its conceptual design has been finished. This paper is mainly involved with the basic structure design and thermal-hydraulics analysis of DWTB. On the basis of a three-dimensional (3-D) model of radial-toroidal sections of the segment box, thermal temperature gradients and structure analysis made with a comprehensive finite element method (FEM) have been performed with the computer code ANSYS5.7 and computational fluid dynamic finite element codes. The analysis refers to the steady-state operating condition of an outboard blanket segment. Furthermore, the mechanical loads due to coolant pressure in normal operating conditions have been also taken into account. All the above loads have been combined as an input for a FEM stress analysis and the resulting stress distribution has been evaluated. Finally, the structure design and Pb-17Li flow velocity has been optimized according to the calculations and analysis. The Fusion-Driven Sub-critical System (FDS) is one of the Chinese programs to be further developed for fusion application. Its Dual-cooled Waste Transmutation Blanket (DWTB), as one the most important part of the FDS is cooled by helium and liquid metal, and have the features of safety, tritium self-sustaining, high efficiency and feasibility. Its conceptual design has been finished. This paper is mainly involved with the basic structure design and thermal-hydraulics analysis of DWTB. On the basis of a three-dimensional (3-D) model of radial-toroidal sections of the segment box, thermal temperature gradients and structure analysis made with a comprehensive finite element method (FEM) have been performed with the computer code ANSYS5.7 and computational fluid dynamic finite element codes. The analysis refers to the steady-state operating condition of an outboard blanket segment. Furthermore, the mechanical loads due to coolant pressure in normal operating conditions have been also taken into account. All the above loads have been combined as an input for a FEM stress analysis and the resulting stress distribution has been evaluated. Finally, the structure design and Pb-17Li flow velocity has been optimized according to the calculations and analysis.
出处 《Plasma Science and Technology》 SCIE EI CAS CSCD 2003年第6期2077-2084,共8页 等离子体科学和技术(英文版)
基金 Naional Nature Scienc Foundaion of China(No.10175067 and No.10175068)
关键词 dual-cooled transmutation blanket structure design THERMAL-HYDRAULICS dual-cooled transmutation blanket structure design thermal-hydraulics
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  • 1吴宜灿,柯严,郑善良,汪卫华,储德林,黄群英,刘晓平,许德政,王红艳,黄德所,朱晓翔,高纯静,李静惊,陈义学,吴斌,汪太平,柏云清,章毛连,刘松林,罗月童,刘萍,李春京,李强,童莉莉,翁晓毅,吴磊,王祥科,FDS课题组.聚变驱动次临界堆概念设计研究[J].核科学与工程,2004,24(1):72-80. 被引量:53
  • 2汪卫华,吴宜灿,王红艳,柯严,黄群英.聚变驱动次临界堆双冷嬗变包层热工水力学参数设计与分析[J].核科学与工程,2004,24(1):93-96. 被引量:21
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  • 5[7]Huang Q Y, et al. Overview on the development of low activation martensitic steel for Fusion engineering [J].Nuclear Science and Engineering,2003.
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  • 8王红艳,吴宜灿,何晓雄.Preliminary Analysis of Liquid Metal MHD Pressure Drop in the Blanket for the FDS[J].Plasma Science and Technology,2002,4(5):1497-1504. 被引量:1

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