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Experimental Investigation on the Nonlinear Coupled Flutter Motion of a Typical Flat Closed-Box Bridge Deck

机译:典型平闭箱桥甲板非线性耦合颤动运动的实验研究

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摘要

The nonlinear post-flutter instabilities were experimentally investigated through two-degree-of-freedom sectional model tests on a typical flat closed-box bridge deck (width-to-depth ratio 9.14). Laser displacement sensors and piezoelectric force balances were used in the synchronous measurement of dynamic displacement and aerodynamic force. Beyond linear flutter boundary, the sectional model exhibited heave-torsion coupled limit cycle oscillation (LCOs) with an unrestricted increase of stable amplitudes with reduced velocity. The post-critical LCOs vibrated in a complex mode with amplitude-dependent mode modulus and phase angle. Obvious heaving static deformation was found to be coupled with the large-amplitude post-critical LCOs, for which classical quasi-steady theory was not applicable. The aerodynamic torsional moment and lift during post-critical LCOs were measured through a novel wind-tunnel technique by 4 piezoelectric force balances. The measured force signals were found to contain significantly higher-order components. The energy evolution mechanism during post-critical LCOs was revealed via the hysteresis loops of the measured force signals.
机译:通过在典型的扁平闭合箱桥甲板(宽度深度比率9.14)上通过两自由度截面模型测试进行实验研究非线性后颤动不稳定性。激光位移传感器和压电力余额用于动态位移和空气动力力的同步测量。除了线性颤动边界之外,截面模型具有升降耦合耦合极限循环振荡(LCO),其无限制地增加速度降低的速度。关键后LCO在复杂模式中振动,具有幅度依赖模式模量和相位角。发现明显的起伏变形被发现与大幅度关键后LCO耦合,经典准稳态理论不适用。通过4个压电力余额,通过新的风隧道技术测量关键后LCOS期间的空气动力学扭转力矩和升力。发现测量的力信号包含明显高位的组件。通过测量力信号的滞后环揭示了关键后LCOS期间的能量进化机制。

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