HH70,首台高温超导托卡马克实现首次等离子体
HH70, the first high-temperature superconducting Tokamak achieves first plasma

原始链接: https://www.energysingularity.cn/en/hh70-the-worlds-first-high-temperature-superconducting-tokamak-achieves-first-plasma/

近日,中国奇点能源公司发布了全球首个“HH70”高温超导托卡马克装置,实现了初始等离子体的里程碑。 这台最先进的机器采用两种不同的预电离技术——电子枪和 ICRF(离子回旋加热)。 它拥有 0.6 特斯拉的强磁场和 0.75 米的有效等离子体半径,内部装有 26 个高温超导磁体。 这一突破性的创造完全由 Energy Singularity 开发,拥有完全的所有权和超过 96% 的国内制造。 这是验证高温超导磁力包容聚变实用性的世界开创性一步。 值得注意的是,它是世界上首个高温超导磁约束聚变装置、第一个高温超导托卡马克、第一个由商业实体设计的超导托卡马克,也是全球四个运行的托卡马克之一。 随着 HH70 等离子体的成功启动,Energy Singularity 成为国际上唯一能够建造和运行高温超导托卡马克的组织,同时也是唯一一家建造和运行完全超导托卡马克的工业参与者。 HH70 的后续进展包括开发下一代 HH170,旨在大幅提高氘-氚当量的能量产量 (Q > 10)。 核聚变是一种几乎无限的、环保且经济的能源,如果成功的话,可能会彻底改变我们的能源格局。 作为唯一被证实的磁控聚变技术,托卡马克仍然是全球正在进行的核聚变探索和创新的核心利益。 推进高温超导托卡马克技术可能会显着提高可承受性并加速聚变能源向主流市场的转变。 此外,Energy Singularity作为自2021年以来致力于推进高温超导托卡马克研究的本土开拓者,强调其目标是实现“人类能源自主”。 通过重视“不妥协的效率和不妥协”

尽管人们对太阳能和风能的兴趣日益浓厚,但人们仍然担心它们能否持续满足大规模电网的需求。 太阳能和风能的不一致需要备用计划,例如不断运行化石燃料或先进的储能系统,以确保可靠的电压和频率水平。 太阳能电池板使用需要稳定电网的并网逆变器,而风力涡轮机可能面临与电网频率机械同步的挑战。 目前并网逆变器和电池技术的进步提供了潜在的解决方案,但广泛实施仍不确定。 可再生能源并网虽然复杂,但具有提高电网灵活性、减少单点故障以及储能技术快速进步等优势。 最终,向可再生能源的过渡依赖于持续的技术创新和成本降低。
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原文

Recently, the world’s first fully high-temperature superconducting Tokamak device, developed and constructed by Energy Singularity, known as “HH70,” has successfully achieved first plasma. HH70 has conducted discharge experiments based on two types of pre-ionization methods: localized helical magnetic flux injection (electron gun) and ion cyclotron heating (ICRF), and has successfully obtained the first plasma.

The toroidal magnetic field (B0) of HH70 is 0.6 Tesla, with a plasma major radius of 0.75 meters. Its magnet system consists of 26 high-temperature superconducting magnets. Designed, developed, and constructed by Energy Singularity, HH70 has independent intellectual property rights, with a localization rate exceeding 96%. The completion and operation of HH70 have taken the lead in the world in completing the engineering feasibility verification of high-temperature superconducting Tokamak, marking that China has gained a first-mover advantage in the key field of high-temperature superconducting magnetic confinement fusion. At the same time, the research and construction of HH70 have also achieved a number of innovative results:

  • The world’s first high-temperature superconducting magnetic confinement fusion device.
  • The world’s first high-temperature superconducting Tokamak.
  • The world’s first superconducting Tokamak built by a commercial company.
  • One of the four superconducting Tokamaks in operation worldwide.

The successful discharge of HH70 signifies that Energy Singularity has become the first and currently the only team in the world to build and operate a fully high-temperature superconducting Tokamak, as well as the first and currently the only commercial company to build and operate a fully superconducting Tokamak. Starting from the completion and operation of HH70, and taking HH70 as a key experimental platform, we will invest in the development of the next generation of high-field high-temperature superconducting Tokamak devices—HH170, which aims to achieve a deuterium-tritium equivalent energy gain (Q) greater than 10.

Controlled nuclear fusion is expected to provide humanity with an almost infinite, clean, and cheap source of energy, and is considered the ultimate energy solution. As the only magnetic confinement fusion technology route that has completed scientific feasibility verification, the Tokamak has always been the focus of global controlled nuclear fusion research and development. High-temperature superconducting Tokamak combines robust physics with engineering innovation, which is expected to greatly improve the cost-effectiveness of the device and accelerate the commercialization of fusion energy, and has become the direction of fusion energy research and development that attracts the most market-oriented funding worldwide. As a domestic institution that took the lead in focusing on the research and development of high-temperature superconducting Tokamak, since its establishment in 2021, Energy Singularity has taken “accelerating the realization of human energy freedom” as its mission, adhering to the values of “extreme efficiency and seeking truth from facts”, and has established an integrated high-temperature superconducting magnet design, processing, and testing platform, and built the capabilities for research and development, design, construction, and operation of high-temperature superconducting Tokamak devices.

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