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基于实时混合仿真的索结构电磁阻尼器可行性研究

Feasibility Study of the Electromagnetic Damper for Cable Structures Using Real-Time Hybrid Simulation.

作者信息

Jung Ho-Yeon, Kim In-Ho, Jung Hyung-Jo

机构信息

Korea Advanced Institute of Science and Technology, Department of Civil and Environmental Engineering, KAIST, 291 Daehak-ro, Yuseong-gu, Daejeon 34141, Korea.

出版信息

Sensors (Basel). 2017 Oct 31;17(11):2499. doi: 10.3390/s17112499.

Abstract

Cable structure is a major component of long-span bridges, such as cable-stayed and suspension bridges, and it transfers the main loads of bridges to the pylons. As these cable structures are exposed to continuous external loads, such as vehicle and wind loads, vibration control and continuous monitoring of the cable are required. In this study, an electromagnetic (EM) damper was designed and fabricated for vibration control and monitoring of the cable structure. EM dampers, also called regenerative dampers, consist of permanent magnets and coils. The electromagnetic force due to the relative motion between the coil and the permanent magnet can be used to control the vibration of the structure. The electrical energy can be used as a power source for the monitoring system. The effects of the design parameters of the damper were numerically analyzed and the damper was fabricated. The characteristics of the damper were analyzed with various external load changes. Finally, the vibration-control and energy-harvesting performances of the cable structure were evaluated through a hybrid simulation. The vibration-control and energy-harvesting performances for various loads were analyzed and the applicability to the cable structure of the EM damper was evaluated.

摘要

索结构是大跨度桥梁(如斜拉桥和悬索桥)的主要组成部分,它将桥梁的主要荷载传递至桥塔。由于这些索结构承受着持续的外部荷载,如车辆荷载和风荷载,因此需要对索进行振动控制和持续监测。在本研究中,设计并制作了一种用于索结构振动控制和监测的电磁(EM)阻尼器。电磁阻尼器,也称为再生阻尼器,由永磁体和线圈组成。线圈与永磁体之间的相对运动所产生的电磁力可用于控制结构的振动。电能可作为监测系统的电源。对阻尼器的设计参数进行了数值分析,并制作了阻尼器。分析了阻尼器在各种外部荷载变化下的特性。最后,通过混合模拟评估了索结构的振动控制和能量采集性能。分析了各种荷载下的振动控制和能量采集性能,并评估了电磁阻尼器在索结构上的适用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/033b/5713016/2455e0f5cb75/sensors-17-02499-g001.jpg

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