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New Approach for Vibration Suppression through Restrictors on Towering Steel Columns with Supporting Frame

机译:带钢柱上钢柱振动抑制的新方法

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Towering steel column with supporting frame is a typical equipment in chemical process engineering. Here, displacement restrictors are proposed to restrict the displacement of the towering and slender equipment while making the column to be structurally nonlinear and statically indeterminate. This study investigated on along-wind and cross-wind vibration characteristics of such equipment with the restrictors experimentally and numerically. A field test is carried out to measure the natural frequency and damping ratio of the 42.5-meter-high equipment vibrating in the wind, which is the prototype of the experimental model. A noncontact excitation system was applied on the experimental model to simulate the wind loads. The displacements and strains of the experimental model are collected under different frame types by changing the heights of displacement restrictors. The numerical simulation and experimental results showed that the height of displacement restrictors has a great influence on the vibration intensity of the equipment. An optimum location, recommended as about 40% of the height, could decrease the vibration intensity and enhance the safety of the equipment. Based on the results, a simplified formula in which the natural frequency and the damping ratio dominate the dynamic behavior of along-wind and cross-wind vibration, respectively, is derived from multi-degrees-of-freedom system. It could be furtherly utilized to predict the amplitude ratio of two structures and select a better design featuring an efficient vibration suppression performance. This work presents an important design guide to the frame-supporting towering process equipment and is of great significance to an economical and safety design.
机译:带支撑框架的高耸的钢柱是化学工艺工程中的典型设备。这里,提出了位移限制器,以限制高耸和细长设备的位移,同时使柱在结构上是非线性的并且静态不确定。本研究在实验和数值上用限流器沿着风和横向风振动特性进行了调查。进行现场测试以测量风中42.5米高的设备的固有频率和阻尼比,这是实验模型的原型。在实验模型上应用非接触式激励系统来模拟风力载荷。通过改变位移限制器的高度,在不同框架类型下收集实验模型的位移和菌株。数值模拟和实验结果表明,位移限制器的高度对设备的振动强度有很大影响。最佳位置,推荐为约40%的高度,可以降低振动强度并增强设备的安全性。基于该结果,分别是自然频率和阻尼比的简化公式分别占据沿着风和横向振动的动态行为,来自多程度自由度系统。可以进一步利用以预测两个结构的幅度比,并选择具有有效振动抑制性​​能的更好的设计。这项工作提出了一个重要的设计指南,框架支持高耸的高耸的工艺设备,对经济和安全设计具有重要意义。

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