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首页> 外文期刊>Journal of Sound and Vibration >Active/robust moment controllers for seismic response control of a large span building on top of ship lift towers
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Active/robust moment controllers for seismic response control of a large span building on top of ship lift towers

机译:主动/鲁棒力矩控制器,用于船舶升降塔顶部的大跨度建筑物的地震响应控制

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摘要

The feasibility of using a vertical ship lift to provide a rapid transfer of ships over a large dam is being actively investigated in China. One of the problems encountered in the feasibility study is how to reduce excessive seismic response of a large span machinery building on the top of huge ship lift towers due to a whipping effect. This paper thus explores the possibility of using active/robust piezoelectric moment controllers to prevent the machinery building without/with parameter uncertainty from the whipping effect. The use of moment controllers meets the special space requirement for the machinery building. Basic equations for piezoelectric moment controllers interacting with the building are first derived. The active control of seismic response of the building-ship lift tower system with moment controllers is then presented. The robust moment controllers for the building-ship lift tower system with structural uncertainty are finally addressed. By taking an actual large ship lift structure to be built in China as example, the effectiveness of the proposed moment controllers and the behavior of the controlled ship lift structure are examined. The results show that the active moment controllers can effectively prevent the whipping effect and reduce the seismic response of the building. In the presence of structural uncertainty, the robust moment controllers give superior performance to the active moment controllers but require larger control power. (C) 2002 Elsevier Science Ltd. All rights reserved. [References: 9]
机译:在中国,正在积极研究使用垂直式船舶升降机在大型水坝上快速转移船舶的可行性。可行性研究中遇到的问题之一是如何减少由于鞭打效应而导致的大型船舶吊塔顶部的大型跨度机械建筑物的过度地震响应。因此,本文探讨了使用主动/鲁棒压电力矩控制器来防止机械制造中无/具有鞭打效应参数不确定性的可能性。力矩控制器的使用符合机械制造的特殊空间要求。首先推导了压电力矩控制器与建筑物相互作用的基本方程式。然后介绍了带有力矩控制器的船用升降塔系统的地震反应的主动控制。最后讨论了具有结构不确定性的船用升降机塔系统的鲁棒力矩控制器。以在中国实际建造的大型船舶电梯结构为例,研究了所提出的力矩控制器的有效性和受控船舶电梯结构的性能。结果表明,主动力矩控制器可以有效地防止鞭打效应,并降低建筑物的地震响应。在存在结构不确定性的情况下,坚固的力矩控制器比主动力矩控制器具有更高的性能,但需要更大的控制能力。 (C)2002 Elsevier ScienceLtd。保留所有权利。 [参考:9]

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