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带主梁的简化模型与响应面联合 的桥梁船撞易损性分析方法
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Vessel-collision Vulnerability Analysis Method of Bridge Structures Based on Simplified Model with Girders and Response Surface
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    摘要:

    以往桥梁船撞动力分析以给定事件确定性分析为主,难以反映船撞作用的偶然性和概率性特征,以及不同能量撞击下的桥梁损伤演化特征. 为此,本文面向两类典型船舶,以桥梁墩柱受船舶撞击后的剩余承载能力作为损伤评估指标,较为系统地研究了桥梁船撞易损性. 首先,建立了受压RC墩柱受到侧向冲击后剩余承载能力的直接模拟方法,通过与试验结果进行对比,验证了该模拟方法的有效性. 然后,基于一座典型连续钢筋混凝土梁桥,建立了两种不同的有限元简化模型,并进行了比较和验证. 提出一种有限元简化模型与响应面代理模型联合的桥梁船撞易损性分析方法,获得了两类典型船舶撞击下的桥梁易损性曲线. 结果表明:所建立的响应面具有良好的精度,可替代复杂的非线性有限元计算;两类船舶类型撞击下的桥墩剩余承载力的响应特征区别较大,在球艏船撞击下剩余承载能力随船速的增大而均匀减少,而在受驳船撞击时,剩余承载能力与临界船速密切相关,呈现出双折线的特征,在进行样本设计时需基于临界速度进行分段;在相同船速及质量的情况下,驳船撞击所造成的结构损伤以及失效的概率普遍要高于球艏船撞击,实际设计中应尤为关注.

    Abstract:

    The past studies primarily performed the deterministic dynamic analysis of vessel-bridge collision for a given collision event,which hardly reflected the contingency and probability characteristics of ship collision,as well as the damage evolution of bridge under impacts with various energy. For this reason,this study systematically investigated the vulnerability of a bridge under collisions of two typical vessels,where the residual capacity of bridge piers after vessel impacts was used as the damage assessment index. Firstly,a direct finite element (FE) simulation method was established to predict the residual capacity of axially-loaded RC column after lateral impact. The rationality of the simulation method was verified by the test results. Then,based on a typical continuous girder bridge,two different simplified FE model were established,compared and validated. By combining the validated simplified FE model and the response surface method,a vulnerability analysis method of the vessel-bridge collision was established,and the vulnerability curves of the bridge were obtained for the impacts of two kinds of typical ships. The results show that the response surface has good accuracy and is able to replace the complex nonlinear FE calculation;The response characteristics of the residual capacity of the pier are quite different for the impact of two types of vessels:the residual capacity of the pier under the impact of the bulbous-bow ship decreases uniformly with the increase of the ship speed,while the residual capacity is closely related to the critical ship speed under the impact of the barge and exhibits the bilinear characteristics so that the sample design needs to be segmented based on the critical speed;Under the same ship speed and quality,the probabilities of structural damage and failure caused by barge impacts are generally higher than those caused by bulbous-bow ship impacts,which should be paid special attention in the practical design.

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樊伟?覮,孙洋,申东杰,刘斌.带主梁的简化模型与响应面联合 的桥梁船撞易损性分析方法[J].湖南大学学报:自然科学版,2021,48(3):34~43

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  • 在线发布日期: 2021-03-23
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