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Experimental study of local scour around submerged compound piles in steady current

机译:稳态浸没复合桩周围局部冲刷的实验研究

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摘要

Many subsea structures have non-uniform geometries, which extend only a finite distance above the seabed. To better understand local scour at these structures, this paper presents scour measurements from an experimental study of submerged compound piles comprised of a circular superstructure supported by a circular foundation. The experiments were conducted in the clear-water regime and considered the effect of three different ratios describing the structural geometry: (i) the overall height of the compound structure above the initial bed level to the diameter of the super-structure h(1)/D-1; (ii) the height of the foundation exposed above the initial bed level relative to the overall height of the superstructure h(2)/h(1); and (iii) the diameter of the foundation to that of the superstructure D-2/D-1. In all cases D-2 =? D-1 and h(1) = h(2) = 0 (i.e. the foundation and superstructure where never buried). The experimental results indicate that, if all other parameters are held constant, the non-dimensional equilibrium scour depth S-0/D-2 increases with both h(1)/D-1 and h(2)/h(1), and decreases as D-2/D-1 increases. To quantitatively explain these trends the experimental results are compared with a range of existing methods to predict scour depth for non-uniform (or complex) surface piercing piles. Of these methods it is found that an effective pile height and an effective pile diameter, computed using simple geometric arguments, give good agreement. The concept of effective height is also shown to collapse time-scale measurements of the scour process convincingly across the full range of experimental results and to explain the extent and shape of the local scour hole reasonably well. Collectively, these findings suggest that the calculation of an effective height may be used to provide a reasonable first approximation to estimate the rate and extent of local scour around submerged compound structures.
机译:许多海底结构具有非均匀的几何形状,其仅在海底上方延伸有限距离。为了更好地了解这些结构的局部冲刷,本文介绍了由封闭化合物桩的实验研究介绍了由圆形基础支撑的圆形上层建筑的实验研究。该实验在透明水中进行,并考虑了三种不同比例的效果描述了结构几何形状:(i)初始床级以上的复合结构的总高度为超结构H(1) / D-1; (ii)相对于上层建筑H(2)/ h(1)的总高度,初始床层上方暴露的基础高度; (iii)基础的直径为上层建筑D-2 / D-1的直径。在所有情况下D-2> =? D-1和H(1)> = H(2)> = 0(即从未埋下的基础和上层建筑)。实验结果表明,如果所有其他参数保持恒定,则非尺寸平衡刷深度S-0 / D-2随H(1)/ D-1和H(2)/ H(1)增加,随着D-2 / D-1的增加而降低。为了定量解释这些趋势,将实验结果与一系列现有方法进行比较,以预测非均匀(或复杂)表面刺穿桩的冲刷深度。在这些方法中,发现使用简单的几何参数计算有效的绒头高度和有效的桩直径,给予良好的一致性。有效高度的概念也被证明令人信服地掩盖了冲刷过程的时间尺度测量,令人信服地穿过全系列的实验结果,并合理地解释局部冲泡孔的范围和形状。总的来说,这些发现表明,可以使用有效高度的计算来提供合理的首次近似以估计浸没的复合结构周围的局部冲刷的速率和程度。

著录项

  • 来源
    《Coastal engineering》 |2021年第4期|103831.1-103831.14|共14页
  • 作者单位

    Univ Western Australia Sch Engn Nedlands WA Australia;

    Univ Western Australia Sch Engn Nedlands WA Australia|Univ Western Australia Oceans Grad Sch Nedlands WA Australia;

    Univ Western Australia Sch Engn Nedlands WA Australia;

    Univ Western Australia Sch Engn Nedlands WA Australia|Dalian Univ Technol State Key Lab Coastal & Offshore Engn Dalian Peoples R China;

    HR Wallingford Howbery Pk Wallingford Oxon England;

    HR Wallingford Howbery Pk Wallingford Oxon England;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Scour; Piles; Compound piles; Subsea structure;

    机译:冲刷;桩;复合桩;海底结构;
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