• Title/Summary/Keyword: Insulation degradation

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Surface Characterization of Silicone Rubber for Outdoor Insulation by Measurement of Surface Voltage Decay

  • Youn, Bok-Hee;Huh, Chang-Su;Cho, Han-Gu
    • KIEE International Transactions on Electrophysics and Applications
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    • v.12C no.4
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    • pp.214-219
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    • 2002
  • The influence of ultraviolet (UV) irradiation and corona on the surface degradation of high temperature vulcanized (HTV) silicone rubber used for outdoor insulation through measuring surface voltage decay after corona charging, surface resistivity, contact angle and X-ray photoelectron spectroscopy (XPS) analysis was studied. The surface resistivity calculated by the surface voltage decay was compared with a value directly obtained from the three electrode method having the guard ring electrode. A good agreement between the two methods for surface resistivity was obtained. UV treated specimens showed the slower decrease of surface voltage decay, while the corona exposed specimens showed a dramatically faster decrease. Although both artificial treatments cause the same oxidative products, which was confirmed with XPS, we could distinguish the difference between the reactions of the two treatments by monitoring the surface voltage decay on corona-charged specimen. In addition, we could derive the specific surface states of the silicone rubber treated by accelerated artificial aging factors and the degradation process.

Data-Base of Statistical Parameters from PD generated in Solid Insulation (고체절연재료에서 발생하는 부분방전 특성량의 Data-Base 구축)

  • Kang, S.H.;Lee, H.G.;Park, Y.G.;Kim, W.S.;Lee, Y.H.;Park, J.N.;Lim, K.J.
    • Proceedings of the KIEE Conference
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    • 2000.07c
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    • pp.1927-1929
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    • 2000
  • PD indicates the inception and progress of degradation of solid insulation system, so it has been used to determine degradation of insulation. PD provides means for detection and recognition of defects. However, there is still marked difficult to recognize defects by PD methods. In this paper, we investigated properties of PD in solid insulation by using statistical method with surface discharge, electrical tree and void discharge with source of discharge, we used statistical parameters of PD distributions specified such as $H_n(q)$, $H_{an}(\phi)$, $H_n(\phi)$, $H_a(\phi)$. The parameters induced from its specified distributions are average discharge, average repetition rate, Skewness, Kurtosis, asymmetry and correlation. From the parameters, we classified PD patterns and built up DB(data-base).

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Properties of PD and Classification of Defect Patterns in Solid Insulation (고체절연체의 내부결함에 따른 부분방전 특성과 패턴분류)

  • Kang, S.H.;Park, Y.G.;Lee, K.W.;KiM, W.S.;Lee, Y.H.;Lim, K.J.
    • Proceedings of the KIEE Conference
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    • 1999.07d
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    • pp.1624-1626
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    • 1999
  • PD in defect of solid insulation system is very harmful since It often leads to deterioration of insulation by the combined action of the discharge ions bombarding the surface and the action of chemical compounds that are formed by the discharge. PD can indicate incipient failure, so it has been used to determine degradation of insulation. In this paper. we investigated PD in defects of solid insulation by using statical method and classified PD patterns with surface discharge, electrical tree and void discharge by using Kohonen network. we used peak charge, average discharge power, average discharge current, repetition rate, skewness, kurtosis, QN of the max pulse height vs. repetition rate $H_q(n)$ for analysis and classification.

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Partial Discharge Phenomenon with $SF_6$ Gas Pressures in Insulation consisting of Insulation Paper and $SF_6$ Gas (SF_6 가스와 절연지의 절연계에서 가스압력에 따른 부분방전현상)

  • 선종호;김광화;박정후;조정수
    • The Transactions of the Korean Institute of Electrical Engineers C
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    • v.50 no.2
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    • pp.65-71
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    • 2001
  • This paper describes partial discharge phenomenon with SF6gas pressures in insulation consisting of insulation paper and SF6 gas. We made the specimens with SF6 gas gaps which exist between aramid papers and electrodes and calculated the electric field intensity in the these gaps. We measured the partial discharge inception voltages and the AC breakdown voltages with the test method of IEC 60060-2 and did the partial discharge degradation experiments with a constant voltage. According to gas pressures, the breakdown voltages in SF6gas gaps were calculated by Paschen's law. And these results showed the ability applying partial discharge inception voltages evaluation to Paschen's law and the relationship between the PD quantities occurring insulation breakdown and PD occurring area.

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A Study on Insulation Degradation Phenomena in 22kV CV Power Cable (22kV CV케이블에 있어서 절연열화현상의 고찰)

  • Kang, Moo-Seong;Kim, Dong-Shik;Jung, Seong-Yong;Park, Dae-Hee
    • Proceedings of the KIEE Conference
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    • 1996.07c
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    • pp.1797-1800
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    • 1996
  • In this study, the insulation selected in degra-dated-power cable has been observed and aging process about the insulation has been investigated. Most Insulation aging process initiates in the interface of semiconducting layer and the type of the process is the fractal form that was observed between the the semiconducting layer and insulation layer. It is possible to estimate degree of the degration of cable with breakdown test and obtained data have been used to get parameters in order to use Weibull distribution. With this method it is considered to be possible to estimate situation of degration and life prediction.

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The Analysis of Ageing Characteristics of Insulation Cover Using in Distribution Line (배전용 절연카바류의 경년특성 분석)

  • Kim, D.M.;Song, I.K.;Han, J.H.;Lee, B.S.;Han, Y.H.;Lee, T.S.
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2001.05c
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    • pp.76-78
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    • 2001
  • In this paper insulation cover that being used in distribution line have been evaluated for aging characteristics. For evaluating its aging properties, we dismounted a variety of samples, like insulation covers for termination of deadend clamp, bushing, LA, COS and sleeve, in the fields. we performed mechanical properties test, electrical test, weathering test, etc. of these samples. And these samples are compared with virgin sample. Test results shows the bad mechanical strength in some part of samples. Especially, Insulation covers for the bushing terminations have cracks in the surface of samples.

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Thermal Conductivity Properties of Building Insulation Materials with Freezing and thawing Cycles (동결융해 반복에 따른 건축용 단열재의 열전도 특성)

  • Lee, Gun-Cheol;Choi, Jung-Gu;Lee, Gun-Young;Lim, Sun-Hyun
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2014.11a
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    • pp.190-191
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    • 2014
  • The building insulation materials shall keep their thermal conductivity constant even when the freezing and thawing repeats for over a long time. But, in this condition of repeated freezing and thawing, the organic building insulation material may suffer the degradation in the thermal performance as the gas put into the insulation materials gets out slowly over a long time. Accordingly, in this study, the change in the thermal performance has been tested and evaluated when the repeated freezing and thawing cycles happen.

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Classification of stator coil degradation of traction motor by PD signal distribution analysis (PD 분포 분석에 의한 견인전동기 고정자 코일의 열화도 분류에 관한 연구)

  • Park, Seong-Hee;Lim, Jong-Ho;Jang, Dong-Uk;Park, Hyun-June;Kang, Seong-Hwa;Lim, Kee-Joe
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2004.07b
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    • pp.1183-1186
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    • 2004
  • Degradation and insulation failure of traction motor depend on the continuous stress imposed on it. And knowing on insulation condition is important thing for safety operation of EMU(electric multiple unit). In this paper, PD(partial discharge) characteristics for degradation analysis of stator coil is studied. For PD data acquisition, two models are made; one is normal condition coil, the other is aged condition coil. And PD data for discrimination were acquired from PD detector. And these data making use of a computer-aided discharge analyser, statistical and other discharge parameters is calculated to discrimination between different discharge sources. And also these parameter is applied to classify PD sources by neural networks. Neural Networks has good recognition rate for degradation of stator coil.

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A Study on Insulation Degradation Diagnosis Using a Neural Network (신경회로망을 이용한 절연 열화진단에 관한 연구)

  • 박재준
    • The Journal of Information Technology
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    • v.2 no.2
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    • pp.13-22
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    • 1999
  • In this paper, we purpose automatic diagnosis in online, as the fundamental study to diagnose the partial discharge mechanism and to predict the lifetime by introduction a neural network. In the proposed method, we use AE(acoustic emission) sensing system and calculate a quantitative statistic parameter by pulse number and amplitude. Using statically parameters such as the center of gravity(G) and the gradient if the discharge distribute(C), we analyzed the early stage and the middle stage. the quantitative statistic parameters are learned by a neural network. The diagnosis of insulation degradation and a lifetime prediction by the early stage time are achieved. On the basis of revealed excellent diagnosis ability through the neural network learning for the patterns during degradation, it was proved that the neural network is appropriate for degradation diagnosis and lifetime prediction in partial discharge.

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Parametric Study on the Heat Loss of the Reactor Vessel in the Nuclear Power Plant (원자력 발전 원자로 용기의 열손실 설계인자에 관한 연구)

  • Jong-Ho Park;Seoug-Beom Kim
    • Journal of Advanced Marine Engineering and Technology
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    • v.28 no.5
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    • pp.827-836
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    • 2004
  • The design parameter of the heat loss for the pressurized water reactor has been studied. The heat loss from the reactor vessel through the air gap. insulation are analysed by using the computational fluid dynamics code, FLUENT. Parametric study has been performed on the air gap width between the reactor vessel wall and the inner surface of the insulation, and on the insulation thickness. Also evaluated is the performance degradation due to the chimney effect due to gaps left between the panels during the installation of the insulation system. From the analysis results, the optimal with of air gap and insulation thickness and the value of heat loss are obtained The results show how the heat loss varies with the air gap width and insulation thickness. The temperature and the velocity distributions are also presented. From the results of the evaluation. the optimal air gap width and the optimal insulation thickness are obtained. As the difference between the predicted heat loss and measured heat loss from the reactor vessel is construed Primarily as losses due to chimney effect. the contribution of the chimney effect to the total heat loss is quantitatively indicated.