首页> 外文会议>Sixth International Conference on Structures Under Shock and Impact held in Cambridge, England, July 2000. >The dynamic behavior of wharf with rubber fender subjected to berthing impact
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The dynamic behavior of wharf with rubber fender subjected to berthing impact

机译:靠舷靠的橡胶护舷码头动态特性

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In this study the dynamic behavior for a bridge type wharf system incorporated with typical HP or pi type rubber fender system is studied when subjected to berthing impact of large cargo ships. Firstly, the type and size of the fender and the mateiral behavior are taken into examination and comparisons are made between the modeling results and the experimental data. Through a simplified material model for the selected type of fender, the behavior of the material can be predicted during the analysis of the structural movement. The traditional analytical method of energy absorption from the fender to estimate the defection and the reactive force to the wharf structure is modified by applying the momentum effect of the ship berthing. Then the dynamic effect can be evaluated through the duration in addition to the magnitude of the exerting reactions on the wharf. It is found that for the same input energy of ship berthing the momentum plays an important role too. Particularly for the ship with heavier weight but less berthing speed, the larger momentum causes larger vibration amplitude on the wharf. For the berthing motion with same energy and comentum, the reactive capability of the fender may play a more important role and this is widely dependent on the type of fenders.
机译:在这项研究中,研究了在大型货船的靠泊冲击下,结合了典型的HP或pi型橡胶护舷系统的桥式码头系统的动力特性。首先,研究了挡泥板的类型和尺寸以及材料的性能,并对建模结果与实验数据进行了比较。通过针对所选挡泥板类型的简化材料模型,可以在结构运动分析期间预测材料的行为。通过应用泊位的动量效应,修改了传统的从护舷吸收能量的分析方法,以估算缺陷和对码头结构的反作用力。然后,除了在码头上施加反应的大小外,还可以通过持续时间评估动态效果。发现对于相同的船舶靠泊输入能量,动量也起着重要作用。特别是对于重量较重但停泊速度较慢的船舶,较大的动量会导致码头的振动幅度较大。对于具有相同能量和结石的靠泊运动,挡泥板的反应能力可能会发挥更重要的作用,这在很大程度上取决于挡泥板的类型。

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