• Title/Summary/Keyword: Underground cables

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Application of Protecting Methods for Single Point Bonding on Underground Transmission Cable (지중 송전 케이블의 편단접지 시스템에서의 계통 보호 방안)

  • Ha, C.W.;Kim, J.N.;Lee, I.H.;Kim, J.C.;Lee, K.Y.
    • Proceedings of the KIEE Conference
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    • 2005.07a
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    • pp.15-17
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    • 2005
  • The protection of underground cables against transient overvoltages resulting from lightning and other causes is important in cable-line which is connected with overhead line and underground cable. This paper investigates the failure of SVL(Sheath Voltage Limiter) and presents the application of protection methods for single point bonding on underground transmission cable system. EMTP(Electromagnetic Transient Program) is used in order to study the overvoltages and modeling of components of the system such as, underground cables, SVLs and towers.

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Mathematical Modeling and Analysis for Water_Tree of Underground Cables (지중 케이블의 수트리에 대한 수학적 모델링 및 분석)

  • Lee, Jung-Woo;Oh, Yong-Taek
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.21 no.5
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    • pp.516-522
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    • 2020
  • Water trees can cause considerable damage to the performance of underground cables. Theymay formwithin the dielectric used in buried or water-immersed high voltage cables. They grow in a bush-like or tree-like form, often taking decades before causing damage to a cable's performance. They are usually found on very old underground cables, often in an inaccessible place. It is costly and time-consuming to detect watertrees in underground cables. Tree detection technology, including mathematical modeling,can reduce the maintenance cost and time necessary for detecting these trees.To simulate detection of water trees in this study, a mathematical model ofan XLPE cable and a water tree were developed. The complex water tree structure was simplified, based on two identified patterns of aventedtree. A Matlab simulation was performed to calculate and analyze the capacitance and resistance of a cable insulation layer,based on growth of a watertree. Capacitance size increased about 0.025×10-13[Farads/mm] compared to normal when the tree area of the cable was advanced to 95% of the insulation layer. The resistance value decreased by about 0.5×1016[ohm/m]. These changesand changesshowninaBurkes paper physical modeling simulation are similar.The value of mathematical modeling for detecting water trees and damage to underground cables has been demonstrated.

The Cause of CCPU's failure and Improved Configuration Method in Combined Transmission Lines (실 계통의 혼합송전선로에서 CCPU파괴 원인과 그 대책)

  • Ha, C.W.;Kim, J.N.;Lee, S.K.;Heo, H.D.
    • Proceedings of the KIEE Conference
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    • 2001.11b
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    • pp.210-212
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    • 2001
  • The protection of underground cables against transient overvoltages resulting from lightning and other causes is important in cable-tine which is connected with overhead line and underground cable. This paper investigates the failure of CCPU(Cable covering Protection Unit) and presents improved configuration method of CCPU in underground cable system EMTP(Electromagnetic Transient Program) is used in order to study the overvoltages and modeling of components of the system such as overhead lines, underground cables, CCPUs and towers in presented.

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The first installation of long-distance underground transmission line with 345kV XLPE Cable in Korea (장거리 345kV XLPE 케이블 지중송전선로의 준공)

  • Shin, H.D.;Park, K.R.
    • Proceedings of the KIEE Conference
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    • 2003.11a
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    • pp.376-378
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    • 2003
  • Since the first underground transmission line of Korea was installed between Danginri and Yongsan substations in 1974, the two types of underground transmission power cables, oil-filled and XLPE, have been applied for underground transmission lines. As the manufacturing technologies of XLPE cable have been improved and the simplicity of installation and maintenance has been focused on, the installations of XLPE cables have been largely increased since the mid 1990's. For the first time, in Korea, the 345kV XLPE cable was installed between Youngseo and Youngdeungpo substations in 2003, June. So, this paper introduces the project profile, the design of cable and its accessory, the cable system design, installation and site test.

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The first installation of underground transmission line with 345kV XLPE cable in Korea (345kV XLPE 케이블 선로의 준공)

  • Shin, H.D.;Kim, H.J.;Kim, H.J.;Park, K.R.;Song, J.H.
    • Proceedings of the KIEE Conference
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    • 2003.07c
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    • pp.1815-1817
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    • 2003
  • Since the first underground transmission line in Korea was installed in 1974, the two types of underground transmission power cables, oil-filled and XLPE, have been applied for underground transmission lines. As the manufacturing technologies of XLPE cable have been improved and the simplicity of installation and maintenance has been focused on, the installations of XLPE cables have been largely increased since the mid 1990's. For the first time, in Korea, the 345kV XLPE cable was installed at Pyungtaek thermal power plant in 2003, February. So, this paper introduces the project profile, the design of cable and its accessory, the cable system design, installation and site test.

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Review of the Conceptual Design for the Use of HTS Power Transmission Cable for a Metropolitan Area

  • Park, Sang-Bong
    • KIEE International Transactions on Power Engineering
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    • v.3A no.2
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    • pp.63-69
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    • 2003
  • The necessity of compact high temperature superconducting cables is more keenly felt in densely populated metropolitan areas. Because the compact high-temperature superconducting cables can be installed in ducts and tunnels, thereby reducing construction costs and making the use of underground space more effective, the effect of introducing it to the power system will be huge. Seoul, Korea, is selected as a review model for this paper. The loads are estimated by scenario based on a survey and analysis of 345kV and 154kV power supply networks in this area. Based on this, the following elements for an urban transmission system are examined. (1) A method of constructing a model system to introduce high-temperature superconducting cables to metropolitan areas is presented. (2) A case study is conducted through the analysis of power demand scenarios, and the amount of high-temperature superconducting cable to be introduced by scenario is examined. (3) The economy involved in expanding existing cables and introducing high-temperature superconducting cables(ducts or tunnels) following load increase in urban areas is examined and compared., and standards for current cable ducts are calculated. (4) The voltage level that can be accommodated by existing ducts is examined.

Lightning protection in an 154kV GIS connected by oil-filled cables (O.F. Cable에 연결된 154kV GIS의 뇌보호)

  • 정태호
    • 전기의세계
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    • v.29 no.5
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    • pp.315-320
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    • 1980
  • It has been appeared and widely used today SF6 Gas Insulated Substation(Hereafter called GIS) for the power supply to the densely populated area due to the superior insulation withstand ability of SF6 Gas. And to maximize the compact effect of this substation, it is normal practice to connect underground cables. If it is possible to elieminate the redundant lightning arresters using the physical characterestics of travelling waves in underground cables, economical advantages can be obtained together with easy maintenances. It is presented in this paper the possiblity of eliminating the transformer protection lightning arresters under some conditions for the 154kV GIS's (BIL:750kV) which Korea Electric Co. plans to construct using the general purpose digital computer program.

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A Study on the Thermal Circuit of Underground Tunnel Installed Power Cables (전력구 부설에 대한 지중 전력 케이블의 허용전류 계산 열 회로에 관한 연구)

  • Jeong, S.H.;Kim, D.K.;Choi, S.B.;Bae, J.H.;Ha, T.H.;Lee, H.G.;Gwag, B.M.;Yoon, H.H.;Kang, J.W.
    • Proceedings of the KIEE Conference
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    • 2000.11a
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    • pp.159-161
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    • 2000
  • This paper examines the thermal circuit of underground tunnels installed power cables. It can be appreciated to understand the mechanism of heat transfer and to calculate the current carrying capacity of power cables in tunnel.

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New leakage detection system for the hydraulic system of EHV underground oil-filled cables (초고압 OF 케이블 급유계통의 조기이상검지시스템)

  • Kim, Y.;Seong, J.K.;Han, C.S.
    • Proceedings of the KIEE Conference
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    • 2000.07c
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    • pp.1966-1968
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    • 2000
  • Globally, oil-filled paper-insulated cables and cross-linked polyethylene-insulated cables have been mainly applied for a underground power transmission line. The oil-filled cable has the hydraulic system in which insulating oil, expanded and contracted by temperature changes, is absorbed and supplied. This system enable us to detect oil leakages from the cable. But it has some problems such as difficulty in detecting minor leakages and a relatively long period of fault detecting. And so, this paper introduce a new leakage detection system, improved from the current one.

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A Study on Lightning Overvoltage Characteristics of Grounding Systems in Underground Distribution Power Cables

  • Jung, Chae-Kyun;Jung, Yeon-Ha;Kang, Ji-Won
    • Journal of Electrical Engineering and Technology
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    • v.9 no.2
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    • pp.628-634
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    • 2014
  • This paper investigates the transient characteristics of grounding systems used in under-ground distribution power cables. Recently, two kinds of grounding system are used for underground distribution cables in Korea. The first one is conventional multi-point grounding system, the other is newly proposed non-bundled common grounding system. The non-bundled common grounding system has an advantage the decreasing the power loss due to decrease of the shield circulation current. In this paper, the lightning overvoltage induced in neutral wire (in case of non-bundled common grounding system, overvoltage between opened neural wires and grounding in each phase) of these two kinds of grounding systems are estimated and compared by field tests and EMTP simulations. The EMTP simulation methods are firstly verified by comparison of measurement and simulation. Finally, the insulation level against lightning is expected by EMTP simulation results using verified model.