• Title/Summary/Keyword: 송전철탑

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다회선철탑의 활용과 기설철탑의 탑고인상공법

  • 이재숙;신상문
    • 전기의세계
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    • v.28 no.12
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    • pp.3-11
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    • 1979
  • 본문에서는 우리나라와 같이 국토가 협소한 외국에 있어 경제성의 앙양과 용지문제를 해소키 위하여 탐택하고 있는 다회선철탑의 건설실태를 소개하고저 한다. 그리고 도로망의 확장 또는 공장, 주택등의 족출은 개설송전소의 지토고의 부족, 시설물과의 안정거리부족 또는 교통방해등의 문제를 가져온다. 이러한 경우 종전에는 철탑을 올려서 문제점을 해소키 위하여 기존철탑을 완전히 해체하여 시공하는 방법을 택하여 왔으나 근래의 외국서적을 참조하면 기존탑을 완전히 해체하지 않고 기존탑에다 소요높이의 결구를 삽입함으로써 그 목적을 달성하고 있으며 어떤경우는 송전을 지속하는 상태에서 탑고을 올리고 있다. 본문에서는 이 공법도 겸하여 소개하고져 한다. 그리고 초고압철탑은 탑고가 높고 그 중량도 무거워져 종능전과 같은 본주의 gin pole을 이용한 철탑조립방식은 율이 올라가지 않고 또 위험성이 내포하고 있다. 따라서 본문은 또 현대적인 초고압철탑의 조립공법도 겸하여 언급하고져한다.

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A Study on the Ultimate Load of Electric Transmission Tower Considering Member Strength and Joint Strength (부재 내력과 접합부 내력을 고려한 송전강관철탑의 극한하중 도출에 관한 연구)

  • Kim, Woo-Bum;Jeon, Bum-Jun;Suh, Yong-Pyo
    • Journal of Korean Society of Steel Construction
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    • v.22 no.5
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    • pp.435-443
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    • 2010
  • The current design practice of an electric transmission tower is based on the allowable stress design. Design strengths of the electric transmission tower's compression member are determined by buckling the strength of the member itself without considering joint strength. There is a possibility of a joint failure prior to the buckling of a member. Therefore, in this study, joint strength is calculated for various member forces, and the shape of joint and database of strength were established. These data was compared with the member strength obtained from previous research studies based on an equivalent nonlinear analysis technique. Finally, practical evaluation and design method to distinguish failure mode in an electric transmission tower member is proposed.

The Behavior and Resistance of Connected-pile Foundations for Transmission Tower from In-situ Lateral Load Tests (송전용 철탑기초의 현장수평재하시험을 통한 연결형 말뚝기초의 거동 및 지지력특성)

  • Kyung, Doo-Hyun;Lee, Jun-Hwan;Paik, Kyu-Ho;Kim, Dae-Hong;Kim, Dae-Hak
    • Journal of the Korean Geotechnical Society
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    • v.28 no.2
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    • pp.57-70
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    • 2012
  • For soft ground, a pile foundation is typically used as a substructure of transmission tower. However, differential settlement between the foundations can cause structural damage of transmission tower. The connected-pile foundation is a type of group foundation consisting of four foundations connected with beams, and it was suggested in USA and Japan. In this study, a series of 1/8 scale model pile tests were performed to investigate the effect of load direction and stiffness of connecting beam on the responses of connected-pile foundation. As a result, the load capacities of the connected-pile foundation were larger than those of the conventional group pile foundation. For example, under the given test conditions in this paper, the resistibility against differential settlement was improved significantly for connected-pile foundation and its efficiency was maximized when the stiffness of connecting beams is about 25% of the mat foundation.

Analysis of Characteristics of Connected-pile Foundations for Transmission Tower according to Changes of Load and Connection Beam Conditions in Clay (점토지반에서 하중특성 및 연결보조건에 따른 송전철탑용 연결형 말뚝기초의 특성 분석)

  • Kyung, Doohyun;Lee, Junhwan;Paik, Kyuho;Kim, Youngjun;Kim, Daehong
    • Journal of the Korean Geotechnical Society
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    • v.29 no.10
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    • pp.5-18
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    • 2013
  • The differential settlement between the foundations causes the critical damage on the transmission tower constructed in soft ground. Connected-pile foundation for transmission tower structures is an option to prevent the differential settlement. It consists of main foundations and connection beams that are placed between the individual foundations at each corner of tower. In this study, 24 model pile load tests were conducted at a construction site in jeonlabuk-do to investigate the effects of the connection beams on transmission tower foundation. In model tests, various load conditions and connection beam conditions were considered. As the test results, the displacements of connected-pile foundation differed in accordance with load directions. The settlements of connected-pile foundation decreased with the increased stiffness of connection beams, lateral load capacity decreased in accordance with load height, and the lateral load capacity on the failure criteria was similar regardless of load direction.

Analysys of the velocity of wind measurement system in Transmission Line (가공송전선로 풍속시스템 데이터 분석활용)

  • Oh, Jang-Man;Yoon, Dong-Soo
    • Proceedings of the KIEE Conference
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    • 2009.07a
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    • pp.387_388
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    • 2009
  • 대부분의 기상관련 자료가 기상청에 의존할 수밖에 없었던 과거와 달리 한국전력에서 자체적으로 구축한 가공송전선로 풍속시스템은 전국의 송전철탑 정부에 풍속계를 설치하여 철탑에 가해지는 풍압을 산출 할 수 있게 되었다. 2003년 많은 설비피해를 입혔던 태풍매미의 래습을 계기로 기상청에서 제공하는 풍속과 해발고도가 높은 산야를 경유하는 철탑 풍속의 비교를 통해 국지적으로 발생하는 돌풍에 관해서도 충분한 검토가 되어야 한다. 태풍이 많은 일본의 구주전력에서도 자체적으로 풍관측 시스템을 구축하여 운영하고 있으며, 연간,월간 지역별 최대풍속과 순간최대풍속을 측정, 분석 활용할 수 있다.

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Static, Dynamic and Buckling Analyses of a Power Transmission Tower under Wind Load (풍하중을 받는 송전철탑의 정적, 동적 및 좌굴해석)

  • Jung, Hyung-Jo;Shin, Dong-Seung;Moon, Byoung-Wook;Park, Ji-Hun;Lee, Sung-Kyung;Min, Kyung-Won
    • Journal of the Computational Structural Engineering Institute of Korea
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    • v.19 no.4 s.74
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    • pp.369-374
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    • 2006
  • This paper describes dynamic characteristics of a power transmission tower consisting of lots of power lines and insulators. A numerical 3D modeling for the static, dynamic and buckling analyses of the power transmission tower is presented considering the case when the power lines are cut. Eigenvalue analysis indicates that the transmission tower shows different behavior comparing to usual structures governed by several low modes. The transmission tower is governed by lots of modes. It is verified that the transmission tower is structurally safe against the static wind and buckling loads. But the structural and buckling safety is not guaranteed when all power lines are cut, which comes to collapse the transmission tower. Further study is in need to overcome such case. Wind dynamic analysis shows that fluctuating wind loads increase the response of the tower.

국내외 정보

  • Korea Electrical Manufacturers Association
    • NEWSLETTER 전기공업
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    • no.95-6 s.127
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    • pp.17-47
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    • 1995
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송전선 철탑설계에 대하여

  • 김정부;홍부식
    • 전기의세계
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    • v.28 no.10
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    • pp.9-16
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    • 1979
  • 근래 우리나라의 국민소득이 높아짐에 따라 가전제품의 수요가 늘고, 중화학공업의 발달에 따라 전력수요가 급격히 증가하고 있다. 이에 반하여 석유가는 매년 증가하고 있으므로 기력발전소를 지양하고 대용량의 원자력, 양수발전소, 석탄발전소가 건설되고 있는 경향이 있다. 발전소는 입지조건상 해안 또는 강변에 위치하고 있으며 수요지와는 거리가 멀고 또는 계통의 안전도(Stability), 신뢰도(Reliability)를 높이기 위하여 154KV와 345KV 송전선으로 전계통을 연계하고 있다. 송전선의 전력운송능력을 증대시키기 위하여 복도체 또는 사도체로 하고 있으며 전선도 ACSR에서 TACSR로 하는 나라도 있다. 현재 미국에서는 765KV Canada에서는 735KV 송전선으로 운전되고 있으며 장차 1500KV 송전선도 곧 실용화된다고 한다. 이에 따라 송전선의 지지물인 철탑도 대형화되어가고 높이도 증가하게 되어 이의 제작및 건설비가 막대하게 들게되며 앞으로는 용지확보도 더욱 어렵게 되어 송전선의 회전수를 2 또는 4회선으로 건설하여야 될것이다. 송전선철탑설계는 종래에는 Cremona도식해법에 의하여 설계하였으나 이의 작도및 하중조건이 많아지면 부재의 정확한 설계하중을 산출하는 데는 많은 시간과 노력이 필요하다. 이러한 불편을 헤소하기 위하여 Ritter의 수치해석법(moment 방법)을 이용한 전산화 및 설계이론에 대하여 소개하고자 한다.

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Seismic Performance Evaluation and a Comparative Study on the Design Wind and Earthquake Loads for Power Transmission Towers (송전철탑의 내진성능평가 및 설계 풍하중과 지진하중의 비교 연구)

  • Hwang, Kyeong-min;Chun, Nak-hyun;Jang, Jung-bum;Yun, Kwan-hee;Kim, Tae-kyun
    • KEPCO Journal on Electric Power and Energy
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    • v.5 no.2
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    • pp.75-81
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    • 2019
  • In this study 24 power transmission towers were selected by considering various variables such as power transmission capacity, height and structural type to evaluate their seismic performance using the standard design response spectrum recently announced by the government. In addition, the stresses and sectional forces generated by the current design wind loads and revised seismic ones were compared to review the effects on the design of power transmission towers when the government-required seismic standards were raised. The results of seismic performance evaluation for the target power transmission towers showed that they had seismic capacity of 0.31~0.91g, and that they met the level of the earthquake-resistant special grade, which is the 2,400-year earthquake return periods and secured seismic safety. Further, the sectional forces caused by earthquakes in the towers were 33~82.5% of the ones due to wind loads, and it was also confirmed that the design wind loads were more dominant than design earthquake ones under the elevated seismic standards.

Measurement and Analysis of Electric and Magnetic Fields near 345[kV] Transmission Tower (345[kV] 송전철탑 주변에서 전장과 자장의 측정과 분석)

  • 이복희;이승칠;안창환;길형준;전덕규;길경석
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.12 no.3
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    • pp.14-21
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    • 1998
  • In this paper, the measurements of ELF electric and magnetic fields due to double circuit 345[kV} transmission lines are made using planar-type electric field sensor and multitum loop-type magnetic field sensor, and the magnitudes of electric and magnetic fields are illustrated by a three-dimensional plot. Also, in order to predict the magnetic field strength with lad variation, a typical daily load current curves of the transmission lines are displayed because the magnetic field is changed with load current. experimental results of ELF electric and magnetic fields along center line versus lateral distance are compared with the theoretical values computed by using the FIELDS program. The electric field intensity in and around a transmission tower is lowered, and the greatest point of the magnetic field is shifted to the heavy load line but generally is given the trend that the peak value appear at the central part of the transmission tower. The magnitudes of the maximum electric and magnetic fields in the vicinity of a transmission tower are less than 3.5[kV/m] and $20[{\mu}T]$, respectively. The measured electric and magnetic fields are satisfied with limits and guidelines recommended by various authorized international institutes.

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