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UKAEA capabilities to address the challenges on the path to delivering fusion power

机译:UKAEA能力解决融合电力路径挑战

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Fusion power could be one of very few sustainable options to replace fossil fuels as the world's primary energy source. Fusion offers the potential of predictable, safe power with no carbon emissions and fuel sources lasting for millions of years. However, it is notoriously difficult to achieve in a controlled, steady-state fashion. The most promising path is via magnetic confinement in a device called a tokamak. A magnetic confinement fusion (MCF) power plant requires many different science, technology and engineering challenges to be met simultaneously. This requires an integrated approach from the outset; advances are needed in individual areas but these only bring fusion electricity closer if the other challenges are resolved in harmony. The UK Atomic Energy Authority (UKAEA) has developed a wide range of skills to address many of the challenges and hosts the JET device, presently the only MCF facility capable of operating with both the fusion fuels, deuterium and tritium. Recently, several major new UKAEA facilities have been funded and some have started operation, notably a new spherical tokamak (MAST Upgrade), a major robotics facility (RACE), and a materials research facility (MRF). Most recently, work has started on Hydrogen-3 Advanced Technology (H3AT) for tritium technology and a group of Fusion Technology Facilities.
机译:融合力量可能是替代化石燃料作为世界主要能源的最少可持续选择之一。融合提供了可预测,安全的力量的潜力,无碳排放和燃料来源持续数百万年。然而,以控制稳态的方式难以实现难以实现。最有希望的路径是通过称为Tokamak的设备中的磁监禁。磁监禁融合(MCF)发电厂需要同时满足许多不同的科学,技术和工程挑战。这需要从一开始就需要综合方法;在个别地区需要进步,但如果其他挑战在一起解决了其他挑战,这些只能将融合电更接近。英国原子能管理局(UKAEA)制定了广泛的技能,以解决许多挑战并主持喷气设备,目前唯一能够使用融合燃料,氘和氚运行的MCF设施。最近,新的一些新的Ukaea设施得到资助,有些已经开始运作,特别是新的球形托卡马克(MAST升级),主要的机器人工厂(比赛)和材料研究设施(MRF)。最近,工作已经开始探讨了Tritium Technology的Hydolu-3先进技术(H3AT)和一组融合技术设施。

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