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Characterization of multi-barge flotilla impact forces on wall structures

机译:多驳船舰对墙体结构的冲击力的表征

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Engineering standards employed in the United States to design concrete waterway control structures for barge impact loading are principally based on data collected from full-scale experimental barge flotilla (barge tow) impact tests. Due to logistical constraints and test costs, the range of parameters that can be varied during physical experiments is typically limited. Consequently, design standards based on such tests have the potential to be undesirably conservative with respect to determination of design impact loads. In the present study, analytical techniques (numerical simulations) are used to quantify barge impact loads over a wider range of conditions than that which would typically be feasible using experimental testing. Nonlinear dynamic finite element models of barge flotillas are developed to accurately represent inelastic barge crushing and inter-barge wire-rope lashing behavior. The models are validated against experimental test data and subsequently used to conduct parametric studies to quantify the influences of impact speed, impact angle, flotilla size, and load measurement technique. A key finding with implications for design efficiency is that flotilla impact loads are strongly correlated to the momentum of only barges in the lead row of a flotilla, rather than total momentum of the entire flotilla, as has been assumed in the development of past design standards. Furthermore, it is found that the load measurement technique used in prior experimental impact tests artificially increased the measured loads, relative to impacts from non instrumented barges, thereby introducing additional conservatism into previously developed design standards. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在美国用于设计用于驳船冲击载荷的混凝土水道控制结构的工程标准主要是基于从大规模实验性驳船船队(驳船拖曳)冲击试验中收集的数据。由于后勤方面的限制和测试成本,在物理实验期间可以改变的参数范围通常受到限制。因此,基于这种测试的设计标准在确定设计冲击载荷方面可能会不合要求地变得保守。在本研究中,使用分析技术(数值模拟)来量化驳船的冲击载荷,该载荷在比使用实验测试通常可行的更大范围的条件下进行。建立了驳船絮网的非线性动态有限元模型,以准确表示非弹性驳船的破碎和驳船之间的钢丝绳绑扎行为。这些模型已根据实验测试数据进行了验证,随后用于进行参数研究,以量化冲击速度,冲击角度,船队尺寸和载荷测量技术的影响。一个对设计效率有影响的重要发现是,船群的冲击载荷与船首仅靠驳船的动量密切相关,而不是整个船群的总动量,这与过去设计标准的发展一样。 。此外,发现在先前的实验冲击测试中使用的负载测量技术相对于非仪表化驳船的冲击,人为地增加了测得的负载,从而在先前开发的设计标准中引入了更多的保守性。 (C)2016 Elsevier Ltd.保留所有权利。

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