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NSTX electrical power systems

机译:NSTX电力系统

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The National Spherical Torus Experiment (NSTX) has been designed and installed in the existing facilities at Princeton Plasma Physic Laboratory (PPPL). Most of the hardware, plant facilities, auxiliary sub-systems, and power systems originally used for the Tokamak Fusion Test Reactor (TFTR) have been used with suitable modifications to reflect NSTX needs. The design of the NSTX electrical power system was tailored to suit the available infrastructure and electrical equipment on site. Components were analyzed to verify their suitability for use in NSTX. The total number of circuits and the location of the NSTX device drove the major changes in the Power system hardware. The NSTX has eleven (11) circuits to be fed as compared to the basic three power loops for TFTR. This required changes in cabling to insure that each cable tray system has the positive and negative leg of cables in the same tray. Also additional power cabling had to be installed to the new location. The hardware had to be modified to address the need for eleven power loops. Power converters had to be reconnected and controlled in anti-parallel mode for the Ohmic heating and two of the Poloidal Field circuits. The circuit for the Coaxial Helical Injection (CHI) System had to be carefully developed to meet this special application. Additional Protection devices were designed and installed for the magnet coils and the CHI. The thrust was to making the changes in the most cost-effective manner without compromising technical requirements. This paper describes the changes and addition to the Electrical Power System components for the NSTX magnet systems.
机译:全国球形托丘实验(NSTX)设计并安装在普林斯顿等离子物理实验室(PPPL)的现有设施中。最初用于Tokamak Fusion Test Reactor(TFTR)的大多数硬件,植物设施,辅助子系统和电力系统已被用于反映NSTX需求的适当修改。 NSTX电力系统的设计量身定制,以适应现场的可用基础设施和电气设备。分析组件以验证它们在NSTX中使用的适用性。 NSTX设备的总电路数和NSTX设备的位置驱动了电源系统硬件的主要变化。与TFTR的基本三个电源环相比,NSTX具有11(11)个电路。这种需要的电缆变化,以确保每个电缆托盘系统在同一托盘中具有电缆的正负腿。还必须将额外的电力布线安装到新位置。必须修改硬件以解决对11个电源环的需求。电源转换器必须以欧姆加热的反平行模式和两个单极场电路中的两个。必须仔细开发同轴螺旋注射(CHI)系统以满足这种特殊应用。设计并安装了额外的保护装置,用于磁体线圈和CHI。推力是以最具成本效益的方式制造变化,而不会影响技术要求。本文介绍了NSTX磁体系统的电力系统组件的变化和补充。

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