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Flow and Scour around Idealized Porous Engineered Log Jam Structures

机译:在理想化的多孔工程日志堵塞结构周围流动和冲刷

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摘要

Engineered log jams (ELJs) are used widely in practice as a river restoration measure. One desired feature of an ELJ is its porous nature, which plays an important role in hydrodynamics and sediment response. Currently there are very limited studies of porous hydraulic structures such as ELJs, and ELJs often are treated as solid obstructions for the purpose of flow and scour predictions. In this study, laboratory experiments were conducted to examine flow and bathymetric response near porous versus nonporous ELJ structures emplaced in an experimental flume. Time-averaged velocity, turbulent fluctuations, and the initial and final bathymetry were measured for four cases of porous and nonporous structures. Alterations in the flow field near the porous structure resulted in reduced maximum scour depths and lower total transport of bed material. It was found that existing predictive equations for scour geometry fail to match experimental data for the porous structures due to the lack of consideration of porosity's role in altering the flow conditions. Conceptual models of the flow zones and the stages of erosion were presented and discussed. A simple predictive model for scour depth around ELJs was developed.
机译:作为河流恢复措施,设计的原始化的日志卡纸(ELJS)被广泛使用。 ELJ的一个所需特征是其多孔性质,在流体动力学和沉积物反应中起着重要作用。目前,对诸如ELJS的多孔液压结构的研究非常有限,而ELJS通常被视为固体障碍物,以便流动和冲刷预测。在该研究中,进行了实验室实验以检查在实验水槽中施加的多孔与无孔的ELJ结构附近的流动和碱基响应。测量了多孔和无孔结构的四个案例测量了时间平均速度,湍流波动和初始和最终碱基替代。多孔结构附近的流场中的变化导致最大的血液深度和床材料的总运输较低。结果发现,由于缺乏考虑在改变流动条件时,由于缺乏考虑孔隙度的作用而导致的洗涤几何的现有预测方程不能匹配多孔结构的实验数据。介绍并讨论了流量区的概念模型和侵蚀阶段。开发了一种简单的ELJS深度深度预测模型。

著录项

  • 来源
    《Journal of Hydraulic Engineering》 |2021年第1期|04020089.1-04020089.17|共17页
  • 作者单位

    Dept. of Civil and Environmental Engineering Pennsylvania State Univ. State College PA 16802;

    Dept. of Civil and Environmental Engineering Pennsylvania State Univ. State College PA 16802;

    Dept. of Civil and Environmental Engineering Institute of Computational and Data Sciences Pennsylvania State Univ. 223B Sackett State College PA 16802;

  • 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; Sediment transport; Porosity; Engineered log jam (ELJ);

    机译:冲刷;沉积物运输;孔隙率;工程日志堵塞(ELJ);

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