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首页> 外文期刊>日本建築学会计画論文集 >Field Measurements in the Kiel Canal, Germany: Ship Waves, Drawdown, and Sediment Transport
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Field Measurements in the Kiel Canal, Germany: Ship Waves, Drawdown, and Sediment Transport

机译:德国基尔运河的现场测量:船舶波,绘制和沉积物运输

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摘要

Ship waves and ship-induced flows are the main hydrodynamic loads on waterway beds and embankments. However, the underlying physical processes are not yet understood fully. Recent field measurements, conducted in the Kiel Canal, Germany, allow a better understanding of these loads and the resulting (ship-induced) sediment transport. The measurements include high-resolution time series of pressure, three-dimensional flow velocities, and turbidity, collected using stationary as well as vessel-mounted sensors. The focus of this paper is on two aspects. First, existing drawdown estimation approaches are reviewed and validated against field measurements. Based on this, a new approach is derived to improve the general description of ship waves in confined waters. Second, a new approach to estimate the ship-induced sediment transport in the Kiel Canal is developed using turbidity and flow measurements and validated against dredging volumes. Our results show that about 10% of the total transported sediment volume in the Kiel Canal can be attributed to ship traffic, whereas the remaining volume is mainly transported during regular dewatering periods. This paper provides an empirical-based method to estimate ship-induced sediment transport in artificial waterways as basis for future canal management strategies.
机译:船舶波浪和船舶诱导的流动是水道床和堤岸的主要流体动力载荷。但是,尚未完全理解潜在的物理过程。在德国基尔运河进行最近进行的近期田间测量,可以更好地了解这些载荷和所得(船舶诱导的)沉积物运输。测量包括使用固定式以及容器安装的传感器收集的高分辨率时间序列的压力,三维流速和浊度。本文的重点是两个方面。首先,对现有的绘图估计方法进行审查并验证了现场测量。基于此,得出了一种新方法,以改善船舶波在狭窄水域中的普通描述。其次,利用浊度和流量测量开发了一种估计船舶诱导的船舶沉积物传输的新方法,并验证了疏浚卷。我们的研究结果表明,基尔运河中约有10%的运输沉积物体积可归因于船舶交通,而剩余的体积主要在常规脱水期间运输。本文提供了一种基于经验的方法,以估算人工水道中的船舶诱导的沉积物运输作为未来管道管理策略的基础。

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  • 来源
    《日本建築学会计画論文集》 |2020年第4期|04020020.1-04020020.11|共11页
  • 作者单位

    Univ. of Siegen Research Institute for Water and Environment Paul-Bonatz-Str. 9-11 57076 Siegen NW Germany;

    Univ. of Siegen Research Institute for Water and Environment Paul-Bonatz-Str. 9-11 57076 Siegen NW Germany;

    Federal Waterways Engineering and Research Institute Dep. Hydraulic Engineering in Coastal Areas Wedeler Landstr. 157 22559 Hamburg Hamburg Germany;

    Univ. of Siegen Research Institute for Water and Environment Paul-Bonatz-Srr. 9-11 57076 Siegen NW Germany;

    Univ. of Siegen Research Institute for Water and Environment Paul-Bonatz-Str. 9-11 57076 Siegen NW Germany;

    Federal Waterways Engineering and Research Institute Dep. Hydraulic Engineering in Coastal Areas Wedeler Landstr. 157 22559 Hamburg Hamburg Germany;

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