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Combining the 'Kinetic Tandem' and the 'Kinetic Stabilizer' Concepts

机译:结合“运动串联”和“运动稳定器”的概念

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A novel means of MHD stabilizing axially symmetric mirror systems was proposed by Ryutov and demonstrated in the Gas Dynamic Trap at Novosibirsk. It relies on the strongly stabilizing effect exerted by low density plasma on the expanding field lines outside the mirrors. The "Kinetic Stabilizer Tandem Mirror" implements Ryutov's technique by injecting axially directed ion beams into the expander. The ions, stagnated, and reflected by the converging magnetic field, form the stabilizing plasma. MHD stability code calculations show stabilization at beta values of 40%, with stabilizer beam powers that are small compared to the T-M fusion power output. Implicit in the calculations is the assumption that adequate "communication" exists between the plug plasmas and the stabilizer plasmas. This paper examines one means for enhancing communication: Utilize the stabilizer plasma to create a potential peak that, together with the plug potential, forms a potential well that traps and contains a "bridging" plasma.
机译:Ryutov提出了一种新颖的MHD稳定轴对称反射镜系统的方法,并在新西伯利亚的Gas Dynamic Trap中得到了证明。它依赖于低密度等离子体对反射镜外部扩展场线施加的强烈稳定作用。 “运动稳定器串联镜”通过将轴向定向的离子束注入扩展器来实现Ryutov的技术。被会聚的磁场停滞并反射的离子形成稳定的等离子体。 MHD稳定性代码计算显示出在40%的beta值处具有稳定度,而稳定器光束功率比T-M融合功率输出小。在计算中隐含的假设是在塞子等离子体和稳定剂等离子体之间存在足够的“连通”。本文研究了一种增强交流的方法:利用稳定剂等离子体产生一个电势峰,该电势峰与塞子电势一起形成一个势阱,捕获并包含“桥接”等离子体。

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