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Nonsmooth dynamics prediction of measured bridge response involving deck-abutment pounding

机译:涉及桥台冲击的实测桥梁响应的非光滑动力学预测

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Earthquake-induced deck-abutment contact alters the boundary conditions at the deck level and might activate a different mechanical system than the one assumed during the design of the bridge. Occasionally this discrepancy between the assumed and the actual seismic behavior has detrimental consequences, for example, pier damage, deck unseating, or even collapse. Recently, an insightful shake-table testing of a scaled deck-abutment bridge model , showed unexpected in-plane rotations even though the deck was straight. These contact-induced rotations produced significant residual displacements and damage to the piers and the bents. The present paper utilizes that experimental data to examine the validity and the limitations of a proposed nonsmooth dynamic analysis framework. The results show that the proposed approach satisfactorily captures the planar rigid-body dynamics of the deck which is characterized by deck-abutment contact. The analysis brings forward the role of friction on the physical mechanism behind the rotation of the deck, and underlines the importance of considering the frictional contact forces during deck-abutment interaction even for straight bridges, which typically are neglected. Finally, the paper investigates the sensitivity of the rotation with respect to macroscopic contact parameters (i.e., the coefficient of friction and the coefficient of restitution). Copyright (c) 2017 John Wiley & Sons, Ltd.
机译:地震引起的桥面接触会改变桥面的边界条件,并且可能会激活与桥梁设计过程中假定的机械系统不同的机械系统。有时,假定的地震行为与实际的地震行为之间的这种差异会产生不利的后果,例如,墩墩损坏,甲板不稳固甚至塌陷。最近,按比例缩放的桥台桥模型的有启发性的振动台测试显示,即使桥台是平直的,其平面内旋转也出乎意料。这些由接触引起的旋转会产生明显的残余位移,并损坏桥墩和弯头。本文利用实验数据来检验提出的非平滑动态分析框架的有效性和局限性。结果表明,所提出的方法令人满意地捕获了以甲板-基台接触为特征的甲板的平面刚体动力学。分析提出了摩擦在甲板旋转背后的物理机制上的作用,并强调了即使是通常被忽略的直桥,在甲板与桥墩相互作用期间也要考虑摩擦接触力的重要性。最后,本文研究了旋转对宏观接触参数(即摩擦系数和恢复系数)的敏感性。版权所有(c)2017 John Wiley&Sons,Ltd.

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