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NCSX Construction Progress and Research Plans

机译:NCSX施工进度和研究计划

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Stellarators use 3D plasma and magnetic field shaping to produce a steady-state disruption-free magnetic confinement configuration. Compact stellarators have additional attractive properties-quasi-symmetric magnetic fields and low aspect ratio. The National Compact Stellarator Experiment (NCSX) is being constructed at the Princeton Plasma Physics Laboratory (PPPL) in partnership with the Oak Ridge National Laboratory (ORNL) to test the physics of a high-beta compact stellarator with a low-ripple, tokamak-like magnetic configuration. The engineering challenges of NCSX stem from its complex geometry requirements. These issues are addressed in the construction project through manufacturing R&D and system engineering. As a result, the fabrication of the coil winding forms and vacuum vessel are proceeding in industry without significant technical issues, and preparations for winding the coils at PPPL are in place. Design integration, analysis, and dimensional control are functions provided by system engineering to ensure that the finished product will satisfy the physics requirements, especially accurate realization of the specified coil geometries. After completion of construction in 2009, a research program to test the expected physics benefits will start
机译:恒星器使用3D等离子体和磁场整形来产生稳态无干扰的磁场限制配置。紧凑型恒星具有其他吸引人的特性-准对称磁场和低长宽比。普林斯顿等离子体物理实验室(PPPL)与橡树岭国家实验室(ORNL)合作,正在建造国家紧凑型恒星实验机(NCSX),以测试具有低波纹,托卡马克-的高β紧凑型恒星机的物理性能。像磁性配置。 NCSX的工程挑战源于其复杂的几何要求。通过制造研发和系统工程,在建设项目中解决了这些问题。结果,在工业上正在进行线圈绕组模板和真空容器的制造,而没有重大技术问题,并且已经准备好在PPPL上缠绕线圈。设计集成,分析和尺寸控制是系统工程提供的功能,以确保最终产品满足物理要求,尤其是精确实现指定的线圈几何形状。在2009年完成建设后,将启动一项测试计划,以测试预期的物理优势

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