• 제목/요약/키워드: Power line icing

검색결과 5건 처리시간 0.022초

송전선의 전선도약 해석에 관한 연구 (A Study on the Analysis of Galloping for Power transmission line)

  • 김환성;변기식
    • Journal of Advanced Marine Engineering and Technology
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    • 제25권5호
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    • pp.1051-1057
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    • 2001
  • In this paper, we deal with three types of modelling method for the analysis of galloping in power transmission line (PTL). The single mass model is obtained under linearization method and it is applied into f-order model. On these models, the nature frequencies of PTL are obtained and it makes an effects on the galloping directly. In simulation, we verify that the maximum magnitude of nature frequency depends on the galloping distance of PTL. Also from the analysis of frequency response, a few of reduction method for galloping are introduced which is effected by distance of PTL, wind velocity and icing types.

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Describing Function Method를 이용한 송전선의 전선도약(Galloping)현상 해석에 관한 연구 (The Analysis of Power Line Galloping by Describing Function Method)

  • 노창주;박한석;변기식
    • 대한전기학회논문지
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    • 제41권4호
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    • pp.339-345
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    • 1992
  • Estimates of maximum amplitudes of conductor galloping are needed in order to determine appropriate phase-to-phase clearances on the overhead lines. One approach to obtaining these estimates is through the use of mathematical models of conductor galloping. Unfortunately, the models that consider both vertical conductor motion (Den Hartog type) and torsional conductor motion are often too complex for practical use. However, the estimates of maximum amplitude obtained from galloping models that assume only vertical (Den Hartog type) conductor motion tend to be too conservative. This paper presents the DF method to obtain the estimates of the amplitude and the frequency of galloping limit cycle, along with the wind pressure at which they occur, from a nonlinear dynamic model that considers both Den Hartog type and torsional conductor motion. From these results, the useful data for the line design guide and further insight into the mechanism of the conductor galloping are obtained.

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스페이서 강성과 간격이 송전선 갤러핑에 미치는 영향분석 (Effect Analysis of Spacer Stiffness and Interval on Galloping of Power Transmission Lines)

  • 오윤지;손정현
    • 한국기계가공학회지
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    • 제18권1호
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    • pp.52-58
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    • 2019
  • Due to icing and snow, power transmission lines have asymmetric cross sections, and their motion becomes unstable. At this time, the vibration caused by the wind is called galloping. If galloping is continuous, short circuits or ground faults may occur. It is possible to prevent galloping by installing spacers between transmission lines. In this study, the transmission line is modeled as a mass-spring-damper system by using RecurDyn. To analyze the dynamic behavior of the transmission line, the damping coefficient is derived from the free vibration test of the transmission line and Rayleigh damping theory. The drag and lift coefficient for modeling the wind load are calculated from the flow analysis by using ANSYS Fluent. Galloping simulations according to spacer stiffness and interval are carried out. It is found that when the stiffness is 100 N/m and the interval around the support is dense, the galloping phenomenon is reduced the most.

다물체 동역학을 이용한 송전선의 슬릿점프 시뮬레이션 (Sleet Jump Simulation of Power Transmission Line by Using Multi-Body Dynamics)

  • 김지욱;손정현
    • 한국산업융합학회 논문집
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    • 제20권5호
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    • pp.431-439
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    • 2017
  • Since the power transmission line(PTL) passes through the high mountain and heavy snowfall region, it is necessary to keep the stability of the PTL. In this study, PTL is modeled as a mass-spring-damper system by using RecurDyn. The lumped mass model is verified by calculated from the simulation comparing the deflection analysis according to the sag and tension. In order to analyze the dynamic behavior of PTL, a damping coefficient for a multi-body model is derived by using the free vibration test and Rayleigh damping theory. Sleet jump simulation according to the region is performed. The maximum jump height, icing sag and amount of jump are confirmed. Also, the amount of jump and the reaction force at the supporting point according to the tension and load of ice are analyzed, respectively. As a result, it is noted that the amount of jump and reaction force are influenced more by the load of ice than by the tension of PTL.

빙축열냉방시스템의 운전효율에 관한 조사연구 (Study and Survey of Operating Efficiency with Cool Storage System)

  • 손학식;심창호;김강현;김재철
    • 에너지공학
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    • 제11권1호
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    • pp.1-9
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    • 2002
  • 우리나라에 보급된 축냉시스템 이용효율 향상과 전력사용 합리화 방안을 제시함으로써 빙축열 시스템의 보급활성화를 통한 하절기 피크부하 경감에 기여코자 빙축열 설비의 성능시험을 실시한 결과 COP주간 3.8, 축열 3.0대비 30% 이상 성능이 감퇴한 주간 2.6∼3.4, 축열 2.1∼3.0정도로 냉동기가 가동되고 있으며, 축열율은 15개 건물 중 3개 건물(21.4%)만이 축열능력 대비 40% 이상의 축열을 실시하고 있는 것으로 분석되었다. 이처럼 운전성능 감퇴를 개선하기 위하여는 축냉(빙축열)설비 운전시 빈번히 발생하는 3-Way 밸브오동작, 냉각능력 감소, 팽창밸브 동작 부적절, 운전모드별 제어설정 오류 등에 의한 축냉능력 감퇴현상을 시정하고, 냉동기의 브라인배관 By-pass, Ice Slurry system운전모드별 배관분리, 냉온수펌프의 회전수제어 등의 배관계통 개선검토가 필요하며, 축냉(비축열) 시스템특징 별로는 Ice on Coil system은 냉방부하 확장성에 제약, Ice Ball system은 축열조의 수밀유지, Ice lens system의 제빙운전시 COP 저하, Ice Slurry system은 주간 운전시 저온운전에 따른 낮은 COP, Ice Harvest system은 Hot Gas 탈빙으로 동력손실증가 등에 대한 개선이 향후 축냉(빙축열)시스템의 운전성능 향상을 위해 필요한 것으로 도출되었다.