唐亚男, 段忠东, 徐枫, 欧进萍, 聂铭, 罗啸宇, 刘小璐. 强风下导线的等效随机静风荷载概率模型[J]. 工程力学, 2024, 41(1): 124-137. DOI: 10.6052/j.issn.1000-4750.2022.03.0217
引用本文: 唐亚男, 段忠东, 徐枫, 欧进萍, 聂铭, 罗啸宇, 刘小璐. 强风下导线的等效随机静风荷载概率模型[J]. 工程力学, 2024, 41(1): 124-137. DOI: 10.6052/j.issn.1000-4750.2022.03.0217
TANG Ya-nan, DUAN Zhong-dong, XU Feng, OU Jin-ping, NIE Ming, LUO Xiao-yu, LIU Xiao-lu. PROBABILISTIC MODEL OF RANDOM EQUIVALENT STATIC WIND LOADS ON TRANSMISSION LINE CABLES UNDER STRONG WINDS[J]. Engineering Mechanics, 2024, 41(1): 124-137. DOI: 10.6052/j.issn.1000-4750.2022.03.0217
Citation: TANG Ya-nan, DUAN Zhong-dong, XU Feng, OU Jin-ping, NIE Ming, LUO Xiao-yu, LIU Xiao-lu. PROBABILISTIC MODEL OF RANDOM EQUIVALENT STATIC WIND LOADS ON TRANSMISSION LINE CABLES UNDER STRONG WINDS[J]. Engineering Mechanics, 2024, 41(1): 124-137. DOI: 10.6052/j.issn.1000-4750.2022.03.0217

强风下导线的等效随机静风荷载概率模型

PROBABILISTIC MODEL OF RANDOM EQUIVALENT STATIC WIND LOADS ON TRANSMISSION LINE CABLES UNDER STRONG WINDS

  • 摘要: 输/配电线路是典型的风振敏感结构,而且导线风荷载往往大于杆塔自身风荷载。结构风荷载常呈现强随机性,合理地考虑这种随机性是输/配电线路抗风设计与风险评估的基础。该文以气弹模型风洞试验为依据,结合随机风振反应基本理论,获得导线等效静风荷载的计算方法;引入强风风场特性参数的随机性,推导并拟合得到导线的等效随机静风荷载概率模型;将建立的随机风荷载概率模型应用于配网结构的可靠度分析中,评估现有配网结构规范设计的可靠度水准。分析结果表明,导线风荷载效应占比大于5%时,按现有配网线路规范设计的构件可靠度指标低于构件呈现二级延性破坏所对应的目标可靠度水平。该文建立的随机风荷载概率模型,考虑了平均风荷载的随机性、脉动风荷载的随机过程性及其对结构的随机动力效应,同时引入了描述脉动风随机过程特性参数的随机性,可应用于强风下输/配电网的抗风设计和风险评估。

     

    Abstract: Transmission and distribution lines are typical wind-sensitive structures, and wind loads on cables are often larger than that on poles or towers. The wind loads always exhibit the strong randomness, which need to be reasonably considered for the design and risk analysis of lines. The method of equivalent static wind loads on cables is established with the combination of random vibration theory and aeroelastic wind tunnel tests. By introducing the randomness of a high wind field, the probabilistic model of random equivalent static wind loads is derived. The established probabilistic load model is applied to the reliability analysis of distribution lines. The reliability analysis results show that: when the line wind load contributes to more than 5% of total wind load on the pole, the reliability index of the pole designed according to the currently used codes is lower than the target reliability level of the pole when it assumes the ductile failure of category 2. With the inclusion of the randomness of mean winds, of the random process of fluctuating winds and its dynamic effects on structures, and of the randomness of parameters used to characterize the fluctuating winds, the model developed in this study can be used to assess the design safety and risk of transmission and distribution networks under strong winds.

     

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