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On the size of tokamak fusion power plants

机译:关于托卡马克聚变电站的规模

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摘要

Figures of merit for future tokamak fusion power plants (FPPs) are presented. It is argued that extrapolation from present-day experiments to proposed FPPs must follow a consistent development path, demonstrating the largest required leaps in intermediate devices to allow safe extrapolation to an FPP. This concerns both plasma physics and technology. At constant plasma parameters, the figures of merit depend on both major radius R and magnetic field B. We propose to use the term ‘size’ for a combination of R and B to avoid ambiguities in scaling arguments. Two routes to FPPs are discussed: the more conventional one increasing R, based on the assumption that B is limited by present technology; and an alternative approach assuming the availability of new technology for superconducting coils, allowing higher B. It is shown that the latter will lead to more compact devices, and, assuming a criterion based on divertor impurity concentration, is in addition more favourable concerning the exhaust problem. However, in order to obtain attractive steady-state tokamak FPPs, the required plasma parameters still require considerable progress with respect to present experiments. A credible strategy to arrive at these must hence be shown for both paths. In addition, the high-field path needs a demonstration of the critical technology items early on.This article is part of a discussion meeting issue ‘Fusion energy using tokamaks: can development be accelerated?’.
机译:给出了未来托卡马克聚变电站的优点。有人认为,从目前的实验向拟议的FPP进行外推必须遵循一致的发展路径,这表明中间设备所需的最大飞跃是允许对FPP进行安全的外推。这涉及等离子体物理和技术。在恒定的等离子体参数下,品质因数取决于大半径R和磁场B。我们建议对R和B的组合使用“尺寸”一词,以避免在定标时产生歧义。讨论了两种通往FPP的途径:一种更为传统的方法,即在假设B受现有技术限制的情况下增加R。以及采用另一种方法假设超导线圈采用了新技术,从而允许更高的B。结果表明,后者将导致装置更紧凑,并且基于偏滤器杂质浓度的判据,在废气排放方面更为有利问题。然而,为了获得有吸引力的稳态托卡马克FPP,相对于当前的实验,所需的血浆参数仍然需要相当大的进步。因此,必须为这两种途径显示出可靠的策略来达到这些目标。此外,高场道路需要尽早演示关键技术项目。本文是讨论会议议题“使用托卡马克的融合能源:能否加速发展?”的一部分。

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