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SEDIMENT DYNAMICS IN LAGOS HARBOUR - RECONNAISSANCE ON EFFECTS OF DREDGING

机译:拉各斯港的沉积动力学 - 侦察疏浚效果的侦察

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摘要

Due to economic growth, Lagos Harbour is expanding. Capital dredging is needed to allow larger vessels to call the port. As harbour siltation is already a problem, increase of maintenance dredging is a worry. In the past no data was available to understand the hydraulics and sediment transport to estimate maintenance dredging volumes. This paper presents the reconnaissance of the sediment dynamics in the harbour, based on field data and MIKE21 model simulations. Measurements of sediment concentration, salinity and flow velocity show that estuarine circulation occurs, transporting sediment from the ocean into the port. However, more upstream in the Commodore channel, at the location where dredging will be carried out, this circulation is small. Model simulations show that at that location, bed shear stresses are large, also after dredging. Therefore, fine sediment can not accumulate in the deepened areas and this will not result in large dredging volumes. Sand transport however can cause sedimentation, as bed forms can migrate. These mechanisms are also observed in initial sand transport simulations, but need to be studied further to fully understand the sediment dynamics in the harbour.
机译:由于经济增长,拉各斯港正在扩大。需要资本疏浚,以允许更大的船只呼叫港口。由于港口淤积已经存在问题,因此增加了维护疏浚是担心的。在过去,没有数据可以了解液压和沉积物运输,以估算维护疏浚卷。本文介绍了港口沉积动力学的侦察,基于现场数据和Mike21模型模拟。沉积物浓度,盐度和流速的测量结果表明,河口循环发生,将海洋的沉积物输送到港口。然而,在商品频道中更多上游,在疏浚的位置,这种循环很小。模型模拟显示,在该位置,床剪切应力大,也在疏浚后。因此,细沉积物不能积聚在加深的区域中,这不会导致大型疏浚卷。然而,砂传输可能导致沉降,床形式可以迁移。在初始砂传输模拟中也观察到这些机制,但需要进一步研究以完全理解港口的沉积动力学。

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