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Designs and technologies for plasma-facing wall protection in EU DEMO

机译:欧盟DEMO中面向等离子墙面保护的设计和技术

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The EU DEMO plasma is almost completely enveloped by large breeding blanket segments for tritium breeding and power extraction. Shaping of the blanket plasma-facing wall in 3D may prove to be essential, but this strategy alone is not sufficient to protect against anticipated transient plasma events. The high heat flux wall-limiter approach used in ITER is not thought to be viable in a tritium self-sufficient power reactor, and so in EU DEMO wall protection using discrete limiters is pursued. Two types of discrete limiter are described in this paper. One is an equatorial port limiter designed to handle the power during the plasma start-up phase, making use of water-cooled tungsten/CuCrZr monoblock technology. The second is the upper limiter, featuring a plasma-facing component designed specifically for extreme transient loading due to a vertical displacement event. The heat flux channelling and thermal barrier features of this design are shown to considerably reduce CuCrZr pipe temperature, and so reduce the likelihood of catastrophic failure. A preliminary neutronic calculation has shown that the impact of these discrete limiters on overall tritium breeding ratio is relatively low.
机译:EU DEMO等离子体几乎完全被用于breed繁殖和功率提取的大型育种毯片段所包裹。以3D形式覆盖面向等离子体的壁的形状可能被证明是必不可少的,但是仅此策略不足以防止预期的瞬态等离子体事件发生。在ITER中使用的高热通量壁限制器方法在in自足式电力反应堆中不可行,因此在EU DEMO中,人们寻求使用分立的限制器进行壁保护。本文描述了两种类型的离散限幅器。一种是赤道端口限制器,其设计为利用水冷钨/ CuCrZr整体技术在等离子启动阶段处理功率。第二个是上限器,具有面向等离子体的组件,该组件专门设计用于由于垂直位移事件而导致的极端瞬态载荷。该设计的热通量通道和隔热层功能可显着降低CuCrZr管道温度,从而减少灾难性故障的可能性。初步的中子计算表明,这些离散限幅器对overall总繁殖率的影响相对较低。

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