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6도체 무볼트형 Spacer Damper의 진동현상에 관한 연구

A Study on the Vibration Phenomenon of 6 Bundle Boltless Spacer Damper

  • 발행 : 2003.05.01

초록

Sparer damper는 다도체 송전선로에서 각 소도체 간의 간격을 유지시켜 주며, 전기적 및 기계적인 외부 요인들에 의해 발생되어진 진동에너지로부터 파생되어지는 각종 피해로부터 전선을 보호하기 위해 적절한 간격을 두고 설치된다. 송전선로에서 발생되어진 진동현상의 결과에 의해 전선의 소손 또는 단선 등의 사고를 방지 및 유지 보수시 어려움을 충분히 감안하여 최적의 요소기술을 구현하는 것이 가장 중요하다. 그러므로 본 논문에서는 Spacer damper에 대한 진동특성 해석은 도선 운동의 지배방정식, Spacer damper의 운동방정식, Spacer damper가 체결된 전선의 경간 내 운동, 정적 처짐 해석 및 유한 차분법에 의한 수치해석 등의 해석적인 방법을 이용하여 정립하였다. 또한 실제 상황에 따라 수시로 변화되는 각종 진동현상을 시뮬레이션하여 Spacer damper의 설치 간격을 검토 하였으며, 새로이 얻어진 해석적인 방법을 토대로 향 후 765kV 송전선로용 6도체 무볼트형 Spacer damper의 각종 진동현상을 해석 할 수 있을 것이다.

Spacer dampers maintain the constant gaps between each conductor in a bundle conductor-transmission line, and are installed at proper intervals to keep a line from all sorts of damages derived from the vibration energy caused by mechanical or electrical external factors. It is most important to embody a technology which considers difficulties of maintenance and repair, and has optimum elements in order to prevent accidents such as destruction by fire or the snapping of a wire by the effect of vibration phenomenon coming from transmission lint In the resent thesis, therefore, the analysis of vibratory characteristics of spacer damper is set up by analytical methods such as the analysis of conductor motion's governing equation, the equation of spacer damper's motion, spacer damper-fastened wire's motion in a span and the numerical analysis of finite difference method. Furthermore, the installation distance between spacer dampers was scrutinized by simulations of various vibration phenomena which change at any time as actual conditions do, and hereafter difference method. Furthermore, the installation distance between spacer dampers was scrutinized by simulations of various vibration phenomena which change at any time as actual conditions do, and hereafter we will be able to analyze all kinds of vibration phenomena coming from a boltless spacer damper with 6 bundle conductor for 765kV transmission line based on new analytical methods.

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참고문헌

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