Shin Yoon-Soo, Kim Junhee
Department of Architectural Engineering, Dankook University, Yongin 17058, Korea.
Sensors (Basel). 2021 Dec 8;21(24):8211. doi: 10.3390/s21248211.
Liquid dampers, such as tuned liquid dampers (TLDs), are employed to improve serviceability by reducing wind-affected building vibrations. In order to maximize the vibration suppression efficiency of the liquid damper, the tuning frequency of the liquid damper should match the natural frequency of the building. Experimental evaluation of the tuning frequency of a liquid damper performed in a factory prior to installation in a building is a critical task to ensure correct performance, and for this, multipoint measurement of the TLD is required. In this study, a novel liquid level measurement system combining Laser Doppler Vibrometer (LDV) and a stepwise rotating galvanometer scanner was developed to observe liquid sloshing in TLD. The proposed system can measure the liquid level at multiple points simultaneously with a single laser point. In the experimental phase, the liquid damper's natural frequency and mode shape are experimentally evaluated utilizing the developed system. The performance of the proposed system was verified by comparison with the video sensing system.
液体阻尼器,如调谐液体阻尼器(TLD),被用于通过减少受风力影响的建筑物振动来提高使用性能。为了使液体阻尼器的振动抑制效率最大化,液体阻尼器的调谐频率应与建筑物的固有频率相匹配。在将液体阻尼器安装到建筑物之前,在工厂对其调谐频率进行实验评估是确保其正确性能的关键任务,为此,需要对TLD进行多点测量。在本研究中,开发了一种结合激光多普勒振动计(LDV)和步进旋转振镜扫描仪的新型液位测量系统,以观察TLD中的液体晃动。所提出的系统可以用单个激光点同时测量多个点的液位。在实验阶段,利用所开发的系统对液体阻尼器的固有频率和振型进行了实验评估。通过与视频传感系统比较,验证了所提出系统的性能。