• Title/Summary/Keyword: RRRV

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The Influence of Current Limit Reactor installed in 345kV power systems on Transient Recovery Voltage (345kV 포스코파워~서인천S/S간 한류리액터 설치에 따른 차단기 과도회복전압 검토)

  • Ryu, Hee-Young;Hur, Youn;Park, Soon-Kyu
    • Proceedings of the KIEE Conference
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    • 2011.07a
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    • pp.222-223
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    • 2011
  • 본 논문은 인천지역 345kV 계통고장전류 저감을 위한 한류리액터 설치에 따른 362kV 50kA 차단기의 과도회복 전압 정격 초과 여부를 EMTP을 활용하여 검토하였다. 과도회복전압(TRV : Transient Recovery Voltage)은 크게 두가지, 최대전압(Vp)과 초기과도회복전압상승율(RRRV:Rate of Rise of Recovery Voltage)로 구분하며, 리액턴스 성분이 증가하며 RRRV가 상승하여 차단기가 고장전류을 차단시 절연파괴(열파괴)로 이어질 수 있다. IEC 62271-100 규정에는 RRRV를 정격차단전류의 100% 크기(T100%) 차단시 2kV/us이내로 규정하고 있으며 이 보다 작은 전류의 T90, T75 차단시의 규정치는 계산식에 의해 정해진다.

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A Study on the Circuit Breaker Transient Recovery Voltages on Large Commercial Customer using EMTP-RV Program (EMTP-RV를 이용한 대용량 전기설비의 차단기 TRV에 관한 연구)

  • Cho, Kyeh-Sool;Choi, Hong-Kyoo
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.25 no.10
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    • pp.59-66
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    • 2011
  • In electric power system, the circuit breaker is not operated when the higher voltage then the rated TRV(transient Recovery Voltage) appeared in the circuit breaking, The TRV of a circuit breaker means the characteristics of reignition by the arc between two poles. and is decided by the value of connecting Impedance. In this paper we of carried out many kinds of experiments varying the types of bus, the types of installation, the length of installation between 22.9 [kV] level circuit breaker and MTR in general 154/22.9[kV] system, We also simulated the characteristics of TRV using EMTP-RV program. The suitability of TRV in assessed by Uc, RRRV(Rate of Rise of Recovery Voltage) which are defined by the international guide, IEC62271-100. The values of RRRV gained from the cable-made bus are 590[%] lesser than those from the NSPB-made bus respectively. So the triangled type is more rational in the aspect of TRV.

TRV Characteristics of 345 kV GIS Circuit Breaker (345 kV급 GIS 차단기의 고유과도회복전압 특성 검토)

  • Woo, Jung-Wook;Shim, Eung-Bo;Kang, Ji-Won;Kang, Youn-Wook
    • Proceedings of the KIEE Conference
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    • 1998.11c
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    • pp.962-965
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    • 1998
  • The circuit breakers had been withdrawn from 345 kV SIC substation. because these were made following the old IEC requirement(IEC 56; TRV rating) and insufficient current rating(2,000 A) for the system requirement(4,000 A). And, they are going to be reused at 345 kV UR substation and SJS switching section. This paper deals with the TRV(temporary recovery voltage) analysis results in order to reuse them. The analysis results are satisfied with the IEC requirements of RRRV(Rate of Rise of Recovery Voltage) and peak voltage($U_c$) from 2000 to 2010.

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Analysis of arc characteristics of EHV class GCB using hybrid arc model (하이브리드 아크모델을 이용한 초고압 가스차단기의 아크특성 해석)

  • Park, K.Y.;Song, K.D.;Shin, Y.J.;Chang, K.C.;Song, W.P.;Kwon, K.Y.
    • Proceedings of the KIEE Conference
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    • 1997.07a
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    • pp.94-96
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    • 1997
  • A mathematical model (hybrid arc model) for arc behaviour in an $SF_6$ puffer gas-blast circuit-breaker has been developed. It has adopted the advantages of integral method and differential method. The method has been applied to model puffer circuit breaker of Noeske et al and good agreement of critical RRRV(Ratio of Rise of Recovery Voltage) has been obtained. Axial or radial distributions of temperature, electric field and arc radius are also presented and analyzed.

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Effect of arcing time on the interruption Performance of EHV class GCB (아크시간이 초고압 가스차단기의 차단성능에 미치는 영향)

  • Park, K.Y.;Shin, Y.J.;Song, K.D.;Chong, J.K.;Song, W.P.;Kwon, K.Y.
    • Proceedings of the KIEE Conference
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    • 1998.07a
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    • pp.161-163
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    • 1998
  • The interruption performance of EHV class gas circuit breakers critically depends on the flow conditions inside interrupter and the external circuit conditions. In case of puffer type gas circuit breakers the flow conditons are significantly influenced by arcing time. In this paper the calculated results of RRRV and pressure rise at current zero with varying arcing time are presented and the effect of arcing time on the thermal interruption performance of EHV class gas circuit breakers is analyzed.

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Development of a 170kV 50kA Capacitorless Gas Circuit Breaker

  • Park, K. Y.;K. D. Song;Y. H. Oh;W. P. Song;J. H. Kang;Park, S. W.
    • KIEE International Transactions on Electrophysics and Applications
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    • v.3C no.3
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    • pp.73-76
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    • 2003
  • In modern EHV (Extra High Voltage) class GCBs (Gas Circuit Breakers), the interruption capability for SLF (Short Line Fault) is one of the most important aspects of performance required for GCBs. Up to now, the SLF interruption capability of EHV class GCBs was partially assisted by the adoption of capacitors able to decrease the dV/dt of the TRV (Transient Recovery Voltage), particularly the TRV on the line side. This paper describes the technique to increase the SLF interruption capability of EHV class GCBs as well as the procedure to develop capacitorless l70kV 50kA GCB.

Analysis of Thermal Recovery Characteristics for $SF^6$ Gas-Blast Arc within Laval Nozzle (Laval Nozzle에 대한 $SF^6$ 아크의 열적회복특성 해석)

  • Song, Gi-Dong;Lee, Byeong-Yun;Gyeong-Yeop;Park, Jeong-Hu
    • The Transactions of the Korean Institute of Electrical Engineers B
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    • v.51 no.9
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    • pp.522-529
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    • 2002
  • In this paper, computer simulations of the physical Phenomena occurring in the arc region before and after current zero were carried out to evaluate the thermal recovery characteristics of a Laval nozzle. A commercial CFD program "PHOENICS" is used for the simulation and the user-coded subroutines to consider the arcing phenomena were added to this program by the authors. The computed results were verified by the comparison with the test results presented by the research group of GE Co.(General Electric Company). In order to investigate the state of the arc region after current zero, the simulation was carried out with three steps. They are steady state arc simulation, transient arc simulation before current zero, and transient hot-gas flow simulation after current zero. The semi-experimental arc radiation model is adapted to consider the radiation energy transport and Prandtl's mixing length model is employed as the turbulence model. The electric field and the magnetic field were calculated with the same grid structure used for the simulation of the flow field. The post-arc current was calculated to evaluate the thermal recovery characteristics after current zero. Compared with the results obtained by GE Co., it has been found that the critical RRRV(ratio of rise of recovery voltage) will be determined previously by this study.his study.