The technical principle of the all-tungsten divertor superconducting tokamak device is mainly based on plasma physics and magnetic confinement technology. Its core is to create a strong magnetic field to confine high-temperature plasma to achieve nuclear fusion reactions.
In the device, the magnetic field generated by the toroidal field coil and the poloidal field coil, combined with the magnetic field generated by the plasma current, together form a magnetic ring with closed spiral magnetic field lines. This magnetic ring can effectively confine the plasma and keep it stable inside the device.
As a key component of the device, the all-tungsten divertor’s main function is to remove impurities in the plasma and withstand the bombardment of the particle flow. The divertor is designed so that the majority of the particle flow is directed towards the outer areas of the device, thus protecting the inner core area from damage.
The application of superconducting technology is mainly reflected in the generation and maintenance of magnetic fields. Superconducting coils are capable of generating powerful magnetic fields with low energy loss, which is critical for confining high-temperature plasmas.
In summary, the all-tungsten divertor superconducting tokamak device achieves effective confinement of high-temperature plasma through clever magnetic field design and material selection, creating conditions for the occurrence of nuclear fusion reactions. The research and application of this kind of device is of great significance in promoting the development of nuclear fusion energy and is expected to provide clean, efficient and sustainable energy solutions for mankind.
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