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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Predicting the effect of a Current Deflecting Wall on harbour siltation
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Predicting the effect of a Current Deflecting Wall on harbour siltation

机译:预测电流偏转墙对港口淤积的影响

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A new container dock in the Port of Antwerp, the Deurganckdok, was recently constructed in a location close to the Estuarine Turbidity Maximum (ETM) of the Scheldt River. In order to minimise sedimentation in the new dock, a Current Deflecting Wall (CDW) will be constructed. The aim of this paper is to assess the effect of the CDW on exchange flows and sediment fluxes. Determining this effect requires (1) understanding and reproduction of the sediment dynamics close to the Deurganckdok, and (2) accurate reproduction of the exchange flows between the dock and the Scheldt, and the effect of the CDW thereon. The sediment dynamics close to the Deurganckdok are dominated by a high concentration suspension (near-bed concentrations around 1 g/l) which is advected along the dock by the tidal currents. The sediment concentration is limited by the supply of sediment rather than the flow velocity. Most sediment will temporarily settle from suspension around slack tide. Hence, flood and ebb sediment concentrations are comparable, although the ebb and flood velocities are asymmetric. The peak sediment concentration occurs at the left or right bank of the Scheldt River, depending on the clockwise and counter-clockwise residual cross-channel currents. Exchange flows between the dock and the Scheldt are mainly a combination of horizontal eddies and salinity-driven flows, with velocities around 0.4 m/s. Most sediment enters the dock in a near-bed horizontal eddy, occurring around HW. The main effect of a CDW is a deflection of this sediment patch towards the river, reducing the sediment influx into the dock. The estimated reduction of siltation by the CDW is 18%. Alternative CDW configurations also reduce sedimentation in the dock, but less than computed with the design CDW.
机译:最近,安特卫普港的新集装箱码头Deurganckdok在靠近Scheldt河的最大河道浊度(ETM)的位置建造。为了最大程度地减少新码头中的沉积物,将建造电流偏转墙(CDW)。本文的目的是评估CDW对交换流量和泥沙通量的影响。确定这种影响需要(1)了解和再现靠近Deurganckdok的沉积动力学,以及(2)准确再现码头和Scheldt之间的交换流以及CDW在其上的影响。靠近Deurganckdok的沉积物动力学主要由高浓度悬浮液(近床层浓度约为1 g / l)控制,该悬浮液沿潮汐流平移。沉积物浓度受沉积物供应的限制,而不是流速的限制。大多数泥沙将在松散的潮汐附近暂时悬浮下来。因此,尽管潮汐和潮汐速度是不对称的,但洪水和潮汐沉积物的浓度是可比较的。峰值沉积物浓度出现在Scheldt河的左岸或右岸,这取决于顺时针和逆时针剩余跨通道水流。船坞和Scheldt之间的交换流主要是水平涡流和盐度驱动流的结合,速度约为0.4 m / s。大部分沉积物在HW附近以近床水平涡流进入船坞。 CDW的主要作用是使沉积物斑块向河流偏转,减少了沉积物向码头的涌入。 CDW的淤积估计减少了18%。可选的CDW配置还可以减少码头中的沉积物,但比设计CDW计算的要少。

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