魏凯, 赵文玉, 洪杰, 秦顺全. 卷破波斜向作用下方形桥墩砰击荷载研究[J]. 工程力学, 2023, 40(5): 41-48. DOI: 10.6052/j.issn.1000-4750.2021.10.0830
引用本文: 魏凯, 赵文玉, 洪杰, 秦顺全. 卷破波斜向作用下方形桥墩砰击荷载研究[J]. 工程力学, 2023, 40(5): 41-48. DOI: 10.6052/j.issn.1000-4750.2021.10.0830
WEI Kai, ZHAO Wen-yu, HONG Jie, QIN Shun-quan. INVESTIGATION OF THE WAVE SLAMMING LOAD ON THE SQUARE PIER SUBJECTED TO OBLIQUE PLUNGING BREAKING WAVES[J]. Engineering Mechanics, 2023, 40(5): 41-48. DOI: 10.6052/j.issn.1000-4750.2021.10.0830
Citation: WEI Kai, ZHAO Wen-yu, HONG Jie, QIN Shun-quan. INVESTIGATION OF THE WAVE SLAMMING LOAD ON THE SQUARE PIER SUBJECTED TO OBLIQUE PLUNGING BREAKING WAVES[J]. Engineering Mechanics, 2023, 40(5): 41-48. DOI: 10.6052/j.issn.1000-4750.2021.10.0830

卷破波斜向作用下方形桥墩砰击荷载研究

INVESTIGATION OF THE WAVE SLAMMING LOAD ON THE SQUARE PIER SUBJECTED TO OBLIQUE PLUNGING BREAKING WAVES

  • 摘要: 沿海桥梁常受到破碎波浪作用,其中卷破波砰击严重威胁结构安全。该文通过理论和试验相结合的方法研究了方形桥墩受到的卷破波砰击荷载。以结构破波荷载经验计算公式和MLM理论模型为基础,建立了方形截面桥墩卷破波砰击荷载理论计算模型。通过卷破波水槽试验探究砰击角度与砰击荷载的关系;对比不同砰击角度理论和试验下方形桥墩截面砰击压强时程,验证了理论模型的有效性,结合试验与理论模型确定了不同砰击角度下方形桥墩卷曲因子的取值范围。研究表明:卷破波砰击方向与方形桥墩迎水轴向夹角越小,砰击荷载越大;该文提出的理论模型能很好地描述方形截面砰击压强时程随砰击角度的变化情况;根据试验结果拟合得出了方形截面卷曲因子随砰击角度的变化公式。

     

    Abstract: The piers of coastal bridges often suffer from the slamming of breaking waves, and particularly the slamming load of plunging breaking waves threatens the structure safety. The plunging wave slamming load on square piers was studied by both theoretical and experimental investigation. Based on the empirical calculation formula of structural slamming load and MLM theoretical model, a theoretical calculation model of plunging wave slamming load on square section pier is established. The relationship between slamming angle and slamming load is explored by the plunging wave breaking flume test. The effectiveness of the theoretical model is verified by comparing the slamming pressure-time history of the square pier section under different slamming angles. Combined with the test and theoretical model, the range of the curling factor of the square pier subjected to different slamming angles is determined. The results show that, a smaller included angle between the slamming direction of plunging breaking wave and the water facing the axial direction of the square pier leads to larger slamming load, and the theoretical model presented in this paper can well describe the variation of slamming pressure-time history with slamming angle, also the variation formula of curling factor of square section with slamming angle is obtained according to the experimental results.

     

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