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动态离子分析在SF_6电气绝缘设备诊断中的应用 被引量:10
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作者 蔡巍 黄韬颖 李帆 《华北电力技术》 CAS 2006年第1期31-33,41,共4页
介绍动态离子分析技术的技术背景和原理。通过实验室测试和现场对G IS气室六氟化硫气体状况的检测,对这项技术在现场使用进行了初步的探索。
关键词 动态离子分析 六氟化硫 绝缘设备 诊断
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SF_6气体分析判断500kV TA故障 被引量:4
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作者 黄晓晖 《高电压技术》 EI CAS CSCD 北大核心 2007年第10期219-221,共3页
通过对广东增城500 kV 5063TA缺陷的诊断,介绍了动态离子这种新的检测方法。运用SF6动态离子分析方法及时发现了SF6TA内部因螺钉脱落造成的放电现象,避免了可能发生的爆炸事故并对可能造成缺陷的原因进行了探讨,对生产厂家提出了相关技... 通过对广东增城500 kV 5063TA缺陷的诊断,介绍了动态离子这种新的检测方法。运用SF6动态离子分析方法及时发现了SF6TA内部因螺钉脱落造成的放电现象,避免了可能发生的爆炸事故并对可能造成缺陷的原因进行了探讨,对生产厂家提出了相关技术要求,为今后SF6TA的技术监督和选型作了一定的技术铺垫。 展开更多
关键词 TA 500 KV 动态离子分析方法 SF6 缺陷 故障
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Nanopore-based sensing and analysis: beyond the resistive-pulse method
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作者 蒋亚楠 郭维 《Science Bulletin》 SCIE EI CAS CSCD 2015年第5期491-502,共12页
Solid-state nanopores are generally considered as an indispensable element in the research field of fundamental ion transport and molecular sensing. The im- provement in fabrication and chemical modification of the so... Solid-state nanopores are generally considered as an indispensable element in the research field of fundamental ion transport and molecular sensing. The im- provement in fabrication and chemical modification of the solid-state nanopores remains increasingly updated. During the last decades, numerous works have been reported on the nanopore-based sensing applications. More and more new analytical methods using nanopore-based devices are emerging. In this review, we highlight the recent progress on the analytical methods for the interdisciplinary and fast- growing area of nanopore research. According to the dif- ferent types of the electrical readout, whether it is steady- state ionic current or transient current fluctuation, the nanopore-based sensing and analysis can be generally di- vided into two categories. For the first type, the electrical readout shows a stable blockade or reopening of the nanopore conductance in the presence of target analytes, termed steady-state analysis, including the conductance change, electrochemical analysis, and two-dimensional scanning and imaging. The other type is based on the transient fluctuation in the transmembrane ionic current, termed transient-state analysis, including the noise analysis, transient ion transport, and transverse tunneling current. The investigation of solid-state nanopores for chemical sensing is just in its infancy. For further research work, not only new nanopore materials and chemical modifications are needed, but also other non-electric-based sensing techniques should be developed. We will focus our future research in the framework of bio-inspired, smart, multiscale interfacial materials and extend the spirit of binary cooperative complementary nanomaterials. 展开更多
关键词 Nanopore Steady state Transient Sensing Stimuli response signal
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