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Nuclear fusion as a massive, clean, and inexhaustible energy source for the second half of the century: brief history, status, and perspective

机译:核聚变是本世纪下半叶的大规模,清洁且取之不尽用之不竭的能源:历史沿革,现状和展望

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AbstractFusion energy, based on the use of broadly available inexhaustible resources as lithium and deuterium and with minimal impact to the environment, aims at a change in the energy supply paradigm: instead of its current dependence on natural resources and environmental impact, energy would become a technology-dependent resource with unlimited adaptive availability and whose unit cost should decrease as technology progresses. This article intends to give a picture of where fusion research stands today and the perspectives: the achievements, the difficulties, the current status, marked by the construction of the ITER experiment which will demonstrate the scientific feasibility of fusion power, and the perspectives toward the first demonstration power plant, DEMO, which, according to the European Roadmap, could start the construction shortly after the full power experiments in ITER (2030) and be in full operation, generating net electricity into the grid, by 2050.
机译:摘要融合能源基于广泛使用的取之不尽的用之不竭的资源,如锂和氘,并且对环境的影响最小,旨在改变能源供应的范式:能源将不再是目前对自然资源和环境影响的依赖,而是一种技术依赖性资源,具有无限的自适应可用性,其单位成本应随着技术的进步而降低。本文旨在概述核聚变研究的现状和前景:以ITER实验的建设为标志的成就,困难,当前状况,这些实验将证明聚变能力的科学可行性,以及对聚变研究的展望。根据欧洲路线图,第一个示范发电厂DEMO可以在ITER(<2030年)进行全面电力试验后不久开始建设,并处于全面运行状态,到2050年为电网提供净电力。

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