Physics World 01月21日
SMART spherical tokamak produces its first plasma
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西班牙塞维利亚大学的SMART小型环形托卡马克装置首次成功产生了等离子体。该装置是首个可实现“负三角形”运行的紧凑型球形托卡马克,其研究成果对于设计基于球形托卡马克技术的紧凑型聚变电站具有重要意义。SMART装置由塞维利亚大学等离子体科学与聚变技术实验室建造,采用独特的负三角形结构,旨在抑制等离子体不稳定性,从而避免对托卡马克壁造成损害。该装置的成功运行标志着研究团队进入新的阶段,并为未来紧凑型聚变反应堆的开发带来了新的希望。

⚛️SMART是首个可实现“负三角形”运行的紧凑型球形托卡马克,其独特的结构设计旨在更好地抑制等离子体不稳定性,防止粒子和能量从等离子体中逸出,从而保护托卡马克壁。

📐 托卡马克中等离子体的形状通常类似于“D”字形。当“D”的直线部分朝向托卡马克中心时,称为正三角形;反之,当弯曲部分朝向中心时,则为负三角形。研究认为负三角形配置能更有效地抑制等离子体不稳定性。

🔬 该装置由塞维利亚大学等离子体科学与聚变技术实验室建造,其容器尺寸为1.6 × 1.6米,核心是一个直径30厘米的螺线管,周围环绕着12个环形场线圈,另有8个极向场线圈用于塑造等离子体形状。

🔥 在首次产生等离子体之前,研究人员成功地使用微波加热氩气,对托卡马克的内壁进行了预处理,为高压等离子体的产生奠定了基础。

🚀 SMART项目负责人表示,该装置的成功是团队的重要成就,标志着他们进入了运行阶段。SMART方法有望为未来的紧凑型聚变反应堆带来更具吸引力的聚变性能和功率处理能力。

A novel fusion device based at the University of Seville in Spain has achieved its first plasma. The SMall Aspect Ratio Tokamak (SMART) is a spherical tokamak that can operate with a “negative triangularity” – the first compact spherical tokamak to do so. Work performed on the machine could be useful when designing compact fusion power plants based on spherical tokamak technology.

SMART has been constructed by the University of Seville’s Plasma Science and Fusion Technology Laboratory. With a vessel dimension of 1.6 × 1.6 m, SMART has a 30 cm diameter solenoid wrapped around 12 toroidal field coils while eight poloidal field coils are used to shape the plasma.

Triangularity refers to the shape of the plasma relative to the tokamak. The cross section of the plasma in a tokamak is typically shaped like a “D”. When the straight part of the D faces the centre of the tokamak, it is said to have positive triangularity. When the curved part of the plasma faces the centre, however, the plasma has negative triangularity.

It is thought that negative triangularity configurations can better suppress plasma instabilities that expel particles and energy from the plasma, helping to prevent damage to the tokamak wall.

Last year, researchers at the University of Seville began to prepare the tokamak’s inner walls for a high pressure plasma by heating argon gas with microwaves. When those tests were successful, engineers then worked toward producing the first plasma.

“This is an important achievement for the entire team as we are now entering the operational phase,” notes SMART principal investigator Manuel García Muñoz. “The SMART approach is a potential game changer with attractive fusion performance and power handling for future compact fusion reactors. We have exciting times ahead.”

The post SMART spherical tokamak produces its first plasma appeared first on Physics World.

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SMART托卡马克 等离子体 负三角形 聚变能源 塞维利亚大学
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