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Control of wind-induced nonlinear oscillations in suspension bridges using a semi-active tuned mass damper

机译:使用半主动调谐质量阻尼器控制悬索桥中风引起的非线性振荡

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In this article, the along-wind and across-wind response of the suspended cables and the bridge deck response of a suspension bridge subjected to wind loading are studied. The mean wind direction is assumed to be perpendicular to the planes of the suspended cables. It is shown that the suspended cable, if constructed alone, will gallop in the across-wind direction when the mean wind speed exceeds a certain critical wind speed. Similarly the bridge deck, if constructed alone, will gallop when a critical wind speed is exceeded. The construction of a suspension bridge, through coupling the bridge deck with the suspended cables via vertical hangers, increases the critical wind speed at which galloping occurs. However, the increase in the critical wind speed of a suspension bridge over a normal bridge is not sufficient to prevent galloping at moderate wind speeds. This article investigates the use of a passive or semi-active tuned mass damper control mechanism to increase critical wind speed for a flexible suspension bridge without changing the shape or size of the bridge deck cross section.
机译:本文研究了悬索的顺风和横风响应以及风荷载作用下悬索桥的桥面响应。假定平均风向垂直于悬挂电缆的平面。结果表明,如果悬挂式电缆是单独构造的,则当平均风速超过某个临界风速时,它将在横风方向上驰gall。同样,如果单独建造,桥面板将在超过临界风速时驰gall。通过通过垂直吊架将桥面板与悬挂的电缆连接起来,悬索桥的构造可提高发生疾驰的临界风速。然而,悬索桥的临界风速相对于普通桥的增加不足以防止在中等风速下飞驰。本文研究了使用被动式或半主动式调谐质量阻尼器控制机制来增加柔性悬索桥的临界风速,而无需更改桥面横截面的形状或尺寸。

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