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Development and assessment of efficient models for barge impact processes based on nonlinear dynamic finite element analyses

机译:基于非线性动态有限元分析的驳船撞击过程有效模型的开发和评估

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The impact of vessels straying out of control poses a serious hazard for bridge piers located in navigation waterways. In order to accurately predict the dynamic responses of the bridge piers subjected to barge impact and to design bridge piers which can resist such impact, the impact forces need to be accurately defined. Empirical formulas such as those provided by AASHTO Guide Specification are currently extensively used for predicting the equivalent static impact forces. Whilst such equivalent static methods cannot accurately reflect the actual dynamic phenomena in a barge impact event, sophisticated finite-element (FE) simulations are computationally expensive. This paper aims to establish a coupled model which can replicate the complex full barge impact model (FBIM) with sufficient accuracy. In this coupled model, the barge model is simplified into a mass-spring model (MSM) whilst the pier is modeled using discrete masses and discrete beam elements. The parameters introduced by MSM are determined using the proposed strategies in this paper. Linear elastic pier columns with fixed bases and cantilevered tops are employed to assess the prediction quality of the proposed coupled model for different impact scenarios.
机译:船只失控的冲击对位于航行水道中的桥墩构成了严重的危害。为了准确地预测遭受驳船冲击的桥墩的动力响应并设计可以抵抗这种冲击的桥墩,需要精确地定义冲击力。目前,诸如AASHTO指南规范中提供的经验公式已广泛用于预测等效静冲击力。尽管这种等效的静态方法无法准确反映驳船撞击事件中的实际动态现象,但复杂的有限元(FE)模拟在计算上却非常昂贵。本文旨在建立一个能够以足够的精度复制复杂的全驳船撞击模型(FBIM)的耦合模型。在此耦合模型中,将驳船模型简化为质量-弹簧模型(MSM),同时使用离散质量和离散梁单元对墩进行建模。 MSM引入的参数是使用本文提出的策略确定的。具有固定基部和悬臂顶部的线性弹性墩柱被用来评估所提出的耦合模型在不同冲击情况下的预测质量。

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