NIF高能量密度存储电容器的研制

T. Scholz, P. Winsor, M. Hudis
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引用次数: 7

摘要

国家点火设施(NIF)的电容器要求在24 kV直流和30000安培峰值电流下运行85 kJ能量放电电容器,设计寿命为20000充放电循环。提交鉴定的金属化-卡夫(MK) OPP电容器(Aerovox型KM)已超过这些要求,但能量密度限制为0.77 J/cc。随着增加能量密度的电容器的发展,可以显著降低成本,然而,增加的能量密度是以生命为代价获得的。本文综述了高能量密度电容器工程开发迄今取得的成果。通过小型单截面电容器的制作和测试,对几种电极-介电结构进行了评价。从这些试验中,我们选择了一种采用粗金属化聚丙烯(MPP)介电系统的替代方法。这种粗糙的MPP介电电极系统的能量密度增加了约10%,与合格的KM类型相比,大大降低了成本。通过对1/6比例全电压(24 kV DC)电容器的全面测试,验证了NIF电容器的要求,接近满足要求的射击寿命。MK高能量密度电容器的工程开发正在进行中,可以产生相同的成本降低。
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Development of a high energy density storage capacitor for NIF
The capacitor requirement of the National Ignition Facility (NIF) calls for 85 kJ energy discharge capacitors to be operated at 24 kV DC and 30000 Amps peak current per discharge, with 20000 charge-discharge cycles as the design life. Metallized-Kraft (MK) OPP capacitors (Aerovox type KM) submitted for qualification have exceeded these requirements, but with energy density limited to 0.77 J/cc. Significant cost reductions can be had with the development of an increased energy density capacitor, however, increased energy density is obtained at the cost of life. Results to date for engineering development of a higher energy density capacitor is summarized in this paper. Several electrode-dielectric configurations were evaluated by fabrication and testing of miniature scale, single section, capacitors. From these trials, we selected an alternative approach employing a rough metallized polypropylene (MPP) dielectric system. This rough MPP dielectric-electrode system yields a >10% gain in energy density, which results in a substantial cost reduction over the qualification KM type. Validation of NIF capacitor requirements by comprehensive testing of 1/6-scale full voltage (24 kV DC) capacitors came close to meeting the required shot life. Engineering development is proceeding on a MK high energy density capacitor that can yield the same cost reduction.
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