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Fusion physics progress on JET

机译:JET上的融合物理学进展

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Twenty years ago, the construction of Joint European Torus (JET) began and 5 years later, the first plasma pulses were obtained. A highly successful series of high temperature plasma experiments which addressed all important issues of fusion physics, such as energy confinement, plasma heating and plasma-wall interaction, laid the foundation for a Preliminary Tritium Experiment in 1991, a three stage programme of progressively more closed divertors from 1992 to 1999, and an extended experimental campaign in deuterium-tritium (D-T) in autumn 1997. The key physics results froin JET are presented, emphasising the synergy between progress in physics and engineering, and the impact of the results on improving physics understanding and predictive capability. The physics discussion concentrates on confinement and performance issues in the H-mode and optimised shear regimes, the development of closed, highly radiating divertors, and results from the recent broad-based series of D-T experiments. The latter include records in fusion performance, the first clear demonstration of alpha particle heating, the testing of ion cyclotron resonance frequency heating scenarios in D-T and the characterisation of the ELMy H-mode in D-T, allowing more accurate predictions for the performance of the international Thermonuclear Experimental Reactor or any other Next Step device.
机译:20年前,开始建造欧洲联合圆环(JET),5年后,获得了第一批等离子体脉冲。一系列成功的高温等离子体实验解决了聚变物理学的所有重要问题,例如能量限制,等离子体加热和等离子体-壁相互作用,为1991年的Tri实验(一个逐步封闭的三阶段计划)奠定了基础从1992年到1999年分流,并在1997年秋季扩展了氘-实验。提出了JET的关键物理结果,强调了物理学和工程学进步之间的协同作用,以及结果对改进物理学的影响理解和预测能力。物理讨论的重点是H模式和优化的剪切模式下的限制和性能问题,封闭的,高度辐射的偏滤器的发展,以及最近基于广泛D-T实验的结果。后者包括聚变性能记录,第一个清晰的α粒子加热演示,DT中离子回旋共振频率加热场景的测试以及DT中ELMy H模式的表征,从而可以更准确地预测国际性能热核实验反应器或任何其他“下一步”设备。

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