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Experimental study of breaking wave loads on elevated pile cap with rectangular cross-section

机译:矩形横截面升高桩帽断裂波荷载试验研究

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摘要

Elevated pile caps are always located close to the still-water level, where breaking waves can induce great impact loads and threaten the structural stability of bridges. This paper focuses on the interaction between breaking waves and an elevated pile cap with arectangular cross-section. An elevated cap specimen under three breaking wave conditions was employed in the experimental program. The breaking wave loads, including the resulting horizontal and vertical loads, overturning moments, and water pressures exerted on the specimen, were measured simultane- ously. The effects of clearance, breaker location, and structural orientation on the breaking wave loads were investigated, and a probabilistic description of breaking wave load was presented. The results show that with increasing clearance, the horizontal breaking wave load and overturning moment increased, while the vertical load decreased when the specimen was above the still-water level. The maximum horizontal wave load was observed when the specimen was located at the breaker tongue of the wave crest. The magnitude of the maximum horizontal and vertical load varied with structural orientations of the elevated pile cap. GEV distribution is effective in modeling the stochastic maximum horizontal and vertical breaking wave load.
机译:升高的桩帽始终位于静止水位,其中断裂波可以引起巨大的冲击载荷并威胁到桥梁的结构稳定性。本文重点介绍断裂波与带有横截面的升高桩帽之间的相互作用。实验计划采用了三个断裂波条件下的升高的盖子样本。同时测量分断波载荷,包括所得到的水平和垂直载荷,推翻的矩和施加在样品上的水压。研究了间隙,断路器位置和结构取向对断裂波载荷的影响,并提出了破碎波负荷的概率描述。结果表明,随着间隙增加,水平断裂波载荷和倾覆的力矩增加,而当样品高于静止水位时,垂直载荷降低。当样品位于波峰的断路器舌头时,观察到最大水平波载荷。最大水平和垂直载荷的大小随着升高的桩帽的结构取向而变化。 GEV分布在模拟随机最大水平和垂直断开波负荷的模拟方面是有效的。

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  • 来源
    《Oceanographic Literature Review》 |2021年第6期|1191-1192|共2页
  • 作者

    J. Hong; K. Wei; Z. Shen;

  • 作者单位

    Department of Bridge Engineering Southwest Jiaotong University Chengdu 610031 China;

    Department of Bridge Engineering Southwest Jiaotong University Chengdu 610031 China;

    Department of Bridge Engineering Southwest Jiaotong University Chengdu 610031 China;

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  • 正文语种 eng
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