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An Improved Step-Type Liquid Level Sensing System for Bridge Structural Dynamic Deflection Monitoring

机译:用于桥梁结构动态挠度监测的改进型阶梯式液位传感系统

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摘要

Real-time and accurate monitoring of dynamic deflection is of great significance for health monitoring and condition assessment of bridge structures. This paper proposes an improved step-type liquid level sensing system (LLSS) for dynamic deflection monitoring. Layout of straight-line-type pipeline is replaced by step-type pipeline in this improved deflection monitoring system, which can remove the interference of the inclination angle on the measurement accuracy and is applicable for dynamic deflection monitoring. Fluid dynamics are first analyzed to demonstrate that measurement accuracy is interfered with by the fluid velocity induced by structural vibration, and ANSYS-FLOTRAN is applied for analyzing the influence range caused by the turbulent flow. Finally, a step-type LLSS model is designed and experimented with to verify the influence of the three key parameters (initial displacement excitation, step height, and distance from the measurement point to the elbow) on the measurement accuracy, and the reasonable placement scheme for the measurement point is determined. The results show that the measurement accuracy mainly depends on the turbulent flow caused by step height. The measurement error gets smaller after about 1.0 m distance from the elbow. To ensure that the measurement error is less than 6%, the distance between the measurement point and the elbow should be larger than 1.0 m.
机译:实时,准确地监测动态变形对桥梁结构的健康监测和状态评估具有重要意义。本文提出了一种用于动态挠度监测的改进的阶梯式液位传感系统(LLSS)。在这种改进的挠度监测系统中,直线型管线的布置由阶梯型管线代替,可以消除倾角对测量精度的干扰,适用于动态挠度监测。首先分析流体动力学,以证明测量精度会受到结构振动引起的流体速度的干扰,然后将ANSYS-FLOTRAN用于分析湍流引起的影响范围。最后,设计并试验了一种阶梯式LLSS模型,以验证三个关键参数(初始位移激励,阶梯高度和从测量点到肘部的距离)对测量精度的影响以及合理的布局方案确定测量点。结果表明,测量精度主要取决于台阶高度引起的湍流。距肘部约1.0 m的距离后,测量误差变小。为确保测量误差小于6%,测量点与弯头之间的距离应大于1.0 m。

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