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Serviceability Assessment Method of Stay Cables with Vibration Control Using First-Passage Probability

机译:使用第一通道概率的振动控制保持电缆的可维护性评估方法

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摘要

As the construction of long-span bridges such as cable-stayed bridges increases worldwide, maintaining bridge serviceability and operability has become an important issue in civil engineering. The stay cable is a principal component of cable-stayed bridges and is generally lightly damped and intrinsically vulnerable to vibration. Excessive vibrations in stay cables can potentially cause long-term fatigue accumulation and serviceability issues. Previous studies have mainly focused on the mitigation of cable vibration within an acceptable operational level, while little attention has been paid to the quantitative assessment of serviceability enhancement provided by vibration control. This study accordingly proposed and evaluated a serviceability assessment method for stay cables equipped with vibration control. Cable serviceability failure was defined according to the range of acceptable cable responses provided in most bridge design codes. The cable serviceability failure probability was then determined by means of the first-passage problem using VanMarcke's approximation. The proposed approach effectively allows the probability of serviceability failure to be calculated depending on the properties of any installed vibration control method. To demonstrate the proposed method, the stay cables of the Second Jindo Bridge in South Korea were evaluated and the analysis results accurately reflected cable behavior during a known wind event and show that the appropriate selection of vibration control method and properties can effectively reduce the probability of serviceability failure.
机译:由于长跨度桥梁等缆绳桥​​梁的构造,全球增加,保持桥梁可用性和可操作性已成为土木工程的重要问题。支架电缆是缆绳撑杆桥的主要成分,并且通常会轻微阻尼,本质上易受振动。保持电缆的过度振动可能会导致长期疲劳积累和可维护性问题。以前的研究主要集中在可接受的运营水平内减轻了电缆振动,而通过振动控制提供的可维护性增强的定量评估已经很少关注。这项研究如此提议和评估了配备振动控制的可支撑电缆的可靠性评估方法。根据大多数桥梁设计代码提供的可接受电缆响应范围定义了电缆可维护性故障。然后通过使用vanmarcke的近似来确定电缆可用性故障概率。所提出的方法有效地允许根据任何安装的振动控制方法的性质来计算可靠性失败的可能性。为了证明所提出的方法中,第二珍岛大桥在韩国的斜拉索进行评价,一个已知的风力事件并显示在分析结果准确地反映电缆行为振动控制方法和属性的适当选择能有效地降低的可能性可用性损失。

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  • 来源
    《Mathematical Problems in Engineering》 |2019年第11期|4138279.1-4138279.9|共9页
  • 作者单位

    UNIST Sch Urban & Environm Engn Ulsan 44919 South Korea;

    UNIST Sch Urban & Environm Engn Ulsan 44919 South Korea;

    UNIST Sch Urban & Environm Engn Ulsan 44919 South Korea;

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