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Tuned liquid column dampers with adaptive tuning capacity for structural vibration control

机译:具有自适应调节能力的可调节液柱阻尼器,用于结构振动控制

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摘要

The natural frequencies of a long span bridge vary during its construction and it is thus difficult to apply traditional tuned liquid column dampers (TLCD) with a fixed configuration to reduce bridge vibration. The restriction of TLCD imposed by frequency tuning requirement also make it difficult to be applied to structure with either very low or high natural frequency. A semi-active tuned liquid column damper (SATLCD), whose natural frequency can be altered by active control of liquid column pressure, is studied in this paper. The principle of SATLCD with adaptive tuning capacity is first introduced. The analytical models are then developed for lateral vibration of a structure with SATLCD and torsional vibration of a structure with SATLCD, respectively, under either harmonic or white noise excitation. The non-linear damping property of SATLCD is linearized by an equivalent linearization technique. Extensive parametric studies are finally carried out in the frequency domain to find the beneficial parameters by which the maximum vibration reduction can be achieved. The key parameters investigated include the distance from the centre line of SATLCD to the rotational axis of a structure, the ratio of horizontal length to the total length of liquid column, head loss coefficient, and frequency offset ratio. The investigations demonstrate that SATLCD can provide a greater flexibility for its application in practice and achieve a high degree of vibration reduction. The sensitivity of SATLCD to the frequency offset between the damper and structure can be improved by adapting its frequency precisely to the measured structural frequency.
机译:大跨度桥梁的固有频率在其建造过程中会发生变化,因此很难使用具有固定配置的传统调谐液柱阻尼器(TLCD)来减少桥梁振动。频率调谐要求对TLCD的限制也使得很难将其应用于固有频率非常低或很高的结构。本文研究了一种半主动调谐液柱阻尼器(SATLCD),其自然频率可以通过液柱压力的主动控制来改变。首先介绍具有自适应调谐能力的SATLCD的原理。然后,针对谐波激励或白噪声激励,分别针对具有SATLCD的结构的横向振动和具有SATLCD的结构的扭转振动分别建立分析模型。 SATLCD的非线性阻尼特性通过等效线性化技术线性化。最后,在频域中进行了广泛的参数研究,以找到可最大程度减少振动的有益参数。研究的关键参数包括从SATLCD中心线到结构旋转轴的距离,水平长度与液柱总长度的比,压头损失系数和频偏比。调查表明,SATLCD可以为实际应用提供更大的灵活性,并可以大大降低振动。 SATLCD对阻尼器和结构之间的频率偏移的敏感性可以通过将其频率精确地调整为所测量的结构频率来提高。

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