首页> 外文期刊>Arabian Journal for Science and Engineering >Optimization Damping of Viscous Dampers to Prevent Collisions Between Adjacent Structures with Unequal Heights as a Case Study
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Optimization Damping of Viscous Dampers to Prevent Collisions Between Adjacent Structures with Unequal Heights as a Case Study

机译:以粘性阻尼器的最佳阻尼为例,以防止高度不相等的相邻结构之间发生碰撞

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摘要

Currently, construction is very dense especially in city centers, and adjacent structures are generally preferred in areas whereavailable land is scarce. These structures often have different heights and are generally constructed without a structuralconnection to each other. Since adjacent structures may have different dynamic characteristics, collisions may occur whenthe structures contact each other under earthquake effects. Therefore, this study investigated the optimum values of viscousdampers placed between adjacent structures of unequal height to prevent collisions under different earthquake effects. Inthe optimization problem determined, the objective function was selected to minimize the total damping coefficient of viscousdampers added to the stories. A new algorithm utilizing numerical optimization methods to find the values of dampersbetween the structures was introduced to avoid collisions between adjacent structures of different heights. Structural modelswere used to examine the effects of variations in the height ratios of the structures, the value of damping from the viscousdampers on each floor, the vibration mode of the structures and the values of relative displacement. The proposed methodshowed that when viscous dampers were optimally placed between adjacent buildings of different heights, the relative displacementsunder earthquake impacts could be reduced below a target value, thereby avoiding the risk of collisions.
机译:当前,建筑非常密集,特别是在城市中心,在可用土地稀缺的地区,通常首选邻近的结构。这些结构通常具有不同的高度,并且通常被构造为彼此没有结构连接。由于相邻的结构可能具有不同的动态特性,因此当结构在地震作用下彼此接触时可能会发生碰撞。因此,本研究调查了放置在不等高的相邻结构之间的粘性阻尼器的最佳值,以防止在不同地震作用下发生碰撞。在确定的优化问题中,选择目标函数以使添加到层中的粘性阻尼器的总阻尼系数最小。引入了一种新的算法,该算法利用数值优化方法找到结构之间的阻尼器值,以避免不同高度的相邻结构之间发生碰撞。使用结构模型来检查结构的高宽比变化,每层地板上的粘性阻尼器的阻尼值,结构的振动模式以及相对位移值的影响。所提出的方法表明,在不同高度的相邻建筑物之间最佳放置粘性阻尼器时,可以将地震作用下的相对位移减小到目标值以下,从而避免发生碰撞的风险。

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