白羊座- iv套壳毯设计

C. Wong, K. Redler, E. Reis, R. Will, E. Cheng, C.M. Hasan, S. Sharafat
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引用次数: 2

摘要

ARIES-IV套壳包层(NSB)设计是ARIES-IV低活化氦冷却反应堆设计的替代包层概念。参考设计的冷却剂在极向方向路由,进口和出口全气阀位于顶部和底部的环面。在NSB设计中,高速冷却剂沿环形方向输送,整流板位于包层后面。这是有意义的,因为所选择的结构材料是sic复合材料。NSB的设计具有关键的高性能部件,其特征尺寸不大于2米。这些组件可以钎焊形成包层模块。在导流器的设计上,我们依靠气体导流器概念的成功开发,消除了W作为导流器涂层材料的使用。两种包层概念的中子力学和热工性能是相似的。所选择的包层和导流器配置也可以满足所有预计的结构、中子和热工水力设计限制和要求。在选择毯层和导流器材料的情况下,该设计的安全保证率为1 (LSA-1),表明该设计具有固有的安全性。
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ARIES-IV Nested Shell Blanket design
The ARIES-IV Nested Shell Blanket (NSB) design is an alternate blanket concept of the ARIES-IV low activation helium-cooled reactor design. The reference design has the coolant routed in the poloidal direction and the inlet and outlet plena are located at the top and bottom of the torus. The NSB design has the high velocity coolant routed in the toroidal direction and the plena are located behind the blanket. This is of significance since the selected structural material is SiC-composite. The NSB is designed to have key high performance components with characteristic dimensions of no larger than 2 m. These components can be brazed to form the blanket module. For the divertor design, we eliminated the use of W as the divertor coating material by relying on the successful development of the gaseous divertor concept. The neutronics and thermal-hydraulic performance of both blanket concepts are similar. The selected blanket and divertor configurations can also meet all the projected structural, neutronics and thermal-hydraulics design limits and requirements. With the selected blanket and divertor materials, the design has a level of safety assurance rate of 1 (LSA-1), which indicates an inherently safe design.
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