电力系统保护与控制
電力繫統保護與控製
전력계통보호여공제
POWER SYSTM PROTECTION AND CONTROL
2015年
2期
19-25
,共7页
赵渊%魏亚楠%范飞%杨清%熊小伏%毛艳丽
趙淵%魏亞楠%範飛%楊清%熊小伏%毛豔麗
조연%위아남%범비%양청%웅소복%모염려
可靠性建模%微振磨损%结构强度时变模型%风雨荷载
可靠性建模%微振磨損%結構彊度時變模型%風雨荷載
가고성건모%미진마손%결구강도시변모형%풍우하재
reliability modeling%fretting of ACSR%time-varying model of structural resistance%real wind and rain load
输电线长期受风导致的振动引起股线间微振磨损,而外部强风雨荷载的冲击进一步加剧了磨损程度,导致断股、断线事故风险显著增加,因此对经受长期微振磨损的输电线在强风雨荷载冲击下的可靠性模型进行研究具有重要实用价值。基于微振磨损的理论模型建立了ACSR的结构强度时变模型,在考虑微振磨损的基础上计入强风雨荷载的影响,结合输电线强度和永久荷载的随机特性,建立输电线时间相依可靠性模型。所提时间相依故障概率模型可以对输电线断股、断线风险进行准确预测并实现恶劣天气下的输电线风险预警。算例结果表明,微振磨损会显著降低输电线的结构可靠性,而强风雨条件下的雨荷载则进一步加剧了事故风险。
輸電線長期受風導緻的振動引起股線間微振磨損,而外部彊風雨荷載的遲擊進一步加劇瞭磨損程度,導緻斷股、斷線事故風險顯著增加,因此對經受長期微振磨損的輸電線在彊風雨荷載遲擊下的可靠性模型進行研究具有重要實用價值。基于微振磨損的理論模型建立瞭ACSR的結構彊度時變模型,在攷慮微振磨損的基礎上計入彊風雨荷載的影響,結閤輸電線彊度和永久荷載的隨機特性,建立輸電線時間相依可靠性模型。所提時間相依故障概率模型可以對輸電線斷股、斷線風險進行準確預測併實現噁劣天氣下的輸電線風險預警。算例結果錶明,微振磨損會顯著降低輸電線的結構可靠性,而彊風雨條件下的雨荷載則進一步加劇瞭事故風險。
수전선장기수풍도치적진동인기고선간미진마손,이외부강풍우하재적충격진일보가극료마손정도,도치단고、단선사고풍험현저증가,인차대경수장기미진마손적수전선재강풍우하재충격하적가고성모형진행연구구유중요실용개치。기우미진마손적이론모형건립료ACSR적결구강도시변모형,재고필미진마손적기출상계입강풍우하재적영향,결합수전선강도화영구하재적수궤특성,건립수전선시간상의가고성모형。소제시간상의고장개솔모형가이대수전선단고、단선풍험진행준학예측병실현악렬천기하적수전선풍험예경。산례결과표명,미진마손회현저강저수전선적결구가고성,이강풍우조건하적우하재칙진일보가극료사고풍험。
The fretting between wires of transmission lines caused by long-term wind-induced vibration results in rupture of wires easily. The impact of strong wind and rain loads exacerbates the risk, which results in a significant increase in broken strand and broken lines. It’s necessary to study reliability modeling of transmission lines which bears long-term fretting under the impact of strong wind and rain loads. According to theoretical models of fretting, the time-varying structural strength model of aluminium conductor steel reinforced (ACSR) is built up, the contact stress between wires is solved. Thereby the time-varying model of structural resistance is built up. According to the joint action of fretting and strong wind and rain loads, the random nature of transmission line strength and permanent load, the time-dependent reliability model of transmission lines are built up. Numerical results show that fretting degrades reliability model and rain load can’t be neglected under strong wind and rain condition. Time-dependent failure probability model can be used to perfect forecast the rupture risk of wires and make risk warning under inclement weather. The example results prove that fretting will reduce the structural reliability of the transmission line significantly and the strong wind and rain loads increase the risk of the accident.