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Bulbous pier: Alternative to bridge pier extensions.

机译:球茎墩:代替桥墩延伸。

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摘要

Bridge deck splashing causes deterioration to the bridge structure and renders the bridge unsafe for motorist and pedestrians. The traditional countermeasure for bridge deck splashing is pier extension, the pier extension moves the pier wave away from the bridge deck, but retrofitting existing bridges with pier extensions is costly. This research proposes the bulbous pier concept as an alternative to pier extension.;The decrease in the pier wave produced by the bulb is due to energy subtracted by the bulb via two forces, the viscous resistance, and the wave-making resistance. The proposed mathematical model for the bulbous pier design follows the model used for a mono hull ship. Under the mono hull model, the bulb length follows under the region were the viscous resistance is dominant. This allows for omitting the wave-making resistance. Since the wave-making resistance is obtained via modeling, the proposed set of equation do not requires modeling to calculate the pier wave reduction.;The proposed equations to calculate non-bulb pier wave height (PL nb) are based in the assumption that the water energy is converted into potential energy at the pier- bulb intersection and determines the pier wave height. This assumption ignores the complex water-air interactions and the energy losses due to the water flow change of direction.;The proposed equation introduces a correction factor, this factor account for the underestimation of the PLnb and provides a safety factor in the design bulbous piers.
机译:桥面飞溅会导致桥梁结构恶化,并使驾驶者和行人不安全。防止桥面飞溅的传统对策是桥墩延伸,桥墩延伸使桥墩波远离桥面,但是用桥墩延伸来改造现有桥梁的成本很高。这项研究提出了球根墩的概念,可以代替球墩的延伸。球泡产生的墩波的减少是由于球泡通过两个力(粘性阻力和造波阻力)减去了能量。鳞茎状码头设计的拟议数学模型遵循用于单壳船的模型。在单壳模型下,球茎长度在粘性阻力占主导的区域以下。这样可以省去产生波的阻力。由于造浪阻力是通过建模获得的,因此所提出的方程组不需要建模即可计算码头波减少量;;所提出的用于计算非灯泡码头波高(PL nb)的方程是基于以下假设:水的能量在码头-灯泡交叉处转换为势能,并确定码头的波高。该假设忽略了复杂的水-空气相互作用以及由于水流方向变化而引起的能量损失。所提出的方程式引入了一个校正因子,该因子说明了PLnb的低估,并为设计球根墩提供了安全系数。 。

著录项

  • 作者

    Chavez, Amilcar.;

  • 作者单位

    University of Nevada, Las Vegas.;

  • 授予单位 University of Nevada, Las Vegas.;
  • 学科 Civil engineering.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 188 p.
  • 总页数 188
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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