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The cascading pebble divertor for the spherical tokamak power plant

机译:球形托卡马克发电厂的级联卵石分流器

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The design of a power plant based on the spherical tokamak (ST) is being developed in order to explore its potential advantages. The plasma is operated in a double null configuration, forming both an upper and lower divertor. In order to accommodate the high erosion rates and heat fluxes developed in the divertors, a system based on a cascading flow of silicon carbide pebbles is being developed. The pebbles flow into the upper divertor where they fall as a toroidal curtain, which intercepts the divertor particle flux. The pebbles then flow under gravity through ducts to the lower divertor where they form a similar curtain. The bulk temperature of the pebbles rises to about 1150℃ although the outer surface is transiently heated to about 1800℃. The pebbles pass out of the vacuum chamber into holding tanks and then into a fluidised bed heat exchanger. Here the pebbles are cooled down to about 340℃ and dust and damaged pebbles are removed. The pebbles are transferred to an upper tank by a pneumatic conveyor where the remaining gas is removed and the pebbles flow into the upper divertor again.
机译:为了探索其潜在优势,正在开发基于球形托卡马克(ST)的发电厂的设计。等离子体以双重零位配置运行,同时形成上部和下部分流器。为了适应在分流器中产生的高腐蚀速率和热通量,正在开发基于级联的碳化硅卵石流的系统。卵石流入上偏滤器,在那里它们以环形帘的形式落下,从而拦截了偏滤器的粒子通量。然后,卵石在重力作用下通过管道流到下偏滤器,在此处形成类似的帘幕。尽管外表面被暂时加热到约1800℃,但卵石的整体温度仍上升到约1150℃。卵石从真空腔室进入储罐,然后进入流化床热交换器。在这里,小卵石被冷却到大约340摄氏度,并且去除了灰尘和损坏的小卵石。卵石通过气动输送机转移到上层储罐,在那里剩余的气体被去除,卵石再次流入上分流器。

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