磁约束聚变

  • 网络magnetic confinement fusion;MCF
磁约束聚变磁约束聚变
  1. 磁约束聚变的进展与球形环磁约束聚变点火装置中聚变中子测量

    Progress on MCF and Spherical Torus An Investigation on Detection and Measurement of Fusion Neutron Spectrum and Radiation Flux in Large Tokamak

  2. HT-7超导托卡马克是我国正在运行中的中型准稳态磁约束聚变实验研究装置,运行时产生一个复杂的瞬发混合辐射场。

    HT-7 Tokamak is a middle sized magnetic confinement fusion device in operation . It produces a complicated mixed prompt radiation field when working .

  3. 磁约束聚变堆及ITER实验包层模块设计研究进展

    Status of Development and Design of Magnetic Confinement Fusion Reactors and ITER Test Blanket Modules

  4. 然而,磁约束聚变堆包层运行环境苛刻,液态金属LiPb在包层和堆外辅助系统中流动会带来很多具有挑战性的技术问题。

    However , owning to the harsh environment in which the magnetic confinement fusion reactor blanket and the exterior auxiliary system of fusion reactor works , the flow of liquid metal LiPb will bring a lot of challenging technical problems .

  5. 激光聚变是磁约束聚变的一个小分支。

    Laser fusion is the poor cousin of magnetic-confinement fusion .

  6. 有关惯性约束聚变和磁约束聚变在技术上所遇到的难点的几点补充

    Further discussion on technical difficulty for inertial confinement fusion and magnetic confinement fusion

  7. 磁约束聚变的方法就是利用磁场,将大量氢的同位素维持在环形容器(为托卡马克)。

    That technique uses a magnetic field to hold large volumes of the same isotopes of hydrogen inside a doughnut-shaped vessel , called a tokamak .

  8. 总的来说,我们的计算结果说明在磁约束聚变等离子体中,磁场和入射快离子显著地影响器壁附近的鞘层特性。

    Furthermore , our results indicate that the magnetic field and injected ion beam have significant effects on sheath properties at the wall in the magnetically confined fusion plasmas .

  9. 磁场重联作为一个基本过程,被用来解释自然界中的能量的突然释放现象,例如在空间物理和磁约束聚变中。

    Magnetic reconnection , as a fundamental process , has been used to explain many natural phenomena of the sudden release of energy in space physics and magnetic confinement fusion .

  10. 辐照损伤与强磁场影响,既是磁约束聚变反应堆内的基本环境,也广泛存在于其他的科研和工程实践中。

    The irradiation damage and the strong magnetic field influence are not only two of the main environmental factors in magnetic confinement fusion reactors , but also widespread in other researches and engineering projects .

  11. 此外,在磁约束核聚变装置中,实现等离子体加热的方法主要是中性束加热,而当前中性束系统中所应用的离子源就是ICP源。

    In addition , in the neutral beam injection system , which is the mainly method for plasma heating in the magnetic confinement fusion , the ICP source is also chosen as the ion source .

  12. ITER是由欧盟、中国、日本等七方共同参与建造的磁约束核聚变实验装置。

    ITER is an experimental fusion reactor based on magnetic confinement fusion , with the cooperation of seven countries including EU , China , Japan , et al .

  13. 对我国磁约束核聚变的研究发展历程做了简要的回顾。

    Finally , the research and development course of magnetic confinement fusion in China are presented .

  14. 受控热核聚变是未来能源的希望,实现它的一条重要途径是被称作托克马克装置的磁约束核聚变途径。

    The controlled thermonuclear fusion is promising energy in the future , one promising and key path to realize it is through a magnetically confined device-Tokamak .

  15. 磁场重联是等离子体物理研究的基本现象之一,它是许多重要空间物理现象和磁约束核聚变问题的重要理论基础。

    Magnetic reconnection is a fundamental phenomenon in plasma physics . It provides a theoretical basis for many phenomena in space astrophysical and magnetic confinement fusion plasmas .

  16. 磁场重联在空间和实验室等离子体研究过程中扮演着重要角色。它是许多重要空间物理现象和磁约束核聚变问题的重要物理过程。

    Magnetic reconnection plays important roles in space and laboratory plasma researches , as it is the key event for many phenomena in space and magnetic confinement fusion plasmas .