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Evaluation of Positional Stability in Active Magnetic Levitation Using Spherical HTS Bulk for Inertial Nuclear Fusion

机译:使用球形HTS块进行惯性核聚变的主动磁悬浮中的位置稳定性评估

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Fuel supply is a fundamental issue in application of inertial nuclear fusion. To address this issue, we propose the use of an HTS superconductor capsule containing nuclear fuel, which can levitate in a magnetic field. During magnetic levitation, positional stability is important because it affects levitation accuracy to the focal point of giant lasers. We have developed a numerical simulation program based on a 3-D hybrid finite element and boundary element method to evaluate positional stability during magnetic levitation. Moreover, we have optimally designed and constructed a multi-coil system wherein spherical HTS bulk of 5 mm diameter can levitate stably. Finally, we have conducted the experiments for the evaluation of magnetic levitation, and compared the results with our simulation.
机译:燃料供应是惯性核聚变应用中的一个基本问题。为了解决这个问题,我们建议使用包含核燃料的HTS超导胶囊,该核燃料会在磁场中悬浮。在磁悬浮过程中,位置稳定性很重要,因为它会影响到巨型激光器焦点的悬浮精度。我们开发了一种基于3-D混合有限元和边界元方法的数值模拟程序,以评估磁悬浮过程中的位置稳定性。此外,我们已经优化设计和构建了一种多线圈系统,其中直径为5 mm的球形HTS本体可以稳定悬浮。最后,我们进行了磁悬浮评估实验,并将结果与​​我们的仿真进行了比较。

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