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Compact reversed shear tokamak reactor with a superheated steam cycle

机译:具有过热蒸汽循环的紧凑型反向剪切托卡马克反应堆

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The compact reversed shear tokamak CREST is a cost competitive reactor concept based on a reversed shear high β plasma and water cooled ferritic steel components. The moderate aspect ratio A == 3.4 and the elongation K = 2.0 of CREST are very similar to the case of the ITER advanced mode plasma. Presentation of such a concept based on the ITER project should be worth while for formulating a fusion development strategy. The achievement of a competitive cost of electricity (COE) is the first priority for electric power industries. High β and high thermal efficiency are the most effective parameters for achieving a competitive COE. In order to achieve a high efficiency power plant, a superheated steam cycle has been adopted which permits a high thermal efficiency (η = 41%). Current profile control and high speed plasma rotation by neutral beam current drive stabilize the ideal NIHD activity up to the Troyon coefficient β_N = 5.5. A cost assessment has shown that CREST could generate about 1.16 GW(e) electric power at a competitive cost.
机译:紧凑型反向剪切托卡马克CREST是一种具有成本竞争力的反应堆概念,它基于反向剪切高β等离子体和水冷铁素体钢组件。 CREST的中等长宽比A == 3.4和伸长率K = 2.0与ITER高级模式等离子体的情况非常相似。在制定融合​​发展战略的同时,值得提出基于国际热核实验堆项目的这种概念。实现有竞争力的电力成本(COE)是电力行业的头等大事。高β和高热效率是获得具有竞争力的COE的最有效参数。为了实现高效率的发电厂,已经采用了允许高热效率(η= 41%)的过热蒸汽循环。通过中性束电流驱动进行的电流分布控制和高速等离子体旋转可将理想的NIHD活动稳定到Troyon系数β_N= 5.5。一项成本评估表明,CREST可以以具有竞争力的成本产生约1.16 GW(e)的电力。

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