利用Rip-Rap系统最大限度地减少螺旋桨引起的沉积物再悬浮

Jure Srše, M. Perkovič, A. Grm
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引用次数: 0

摘要

螺旋桨在操纵过程中引起的泥沙再悬浮是港口日常作业中的一个主要问题。负面影响包括:海洋动植物,削弱泊位结构的沉积物侵蚀,需要疏浚的沉积物沉积物。后来,这导致了港口运营的延迟。几位作者提出了不同的方法来解决这个问题。本文介绍了确定临界螺旋桨射流速度的方法和工具,这是决定银行稳定系统规模的最重要参数。该工具是一个桥梁模拟器,可用于模拟船舶的侵入式离场操作。分析了船舶运动数据,确定了泥沙颗粒的临界剪应力。采用德国方法确定了螺旋桨射流诱导的临界速度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Minimisation of Propeller-Induced Sediment Resuspension with Rip-Rap System
Sediment resuspension caused by the movement of propellers during manoeuvring is a major problem in daily port operations. Negative impacts include: Marine flora and fauna, sediment erosion that weakens berth structures, sediment deposits that require dredging. Later, this leads to delays in port operations. Several authors have proposed different methods to cope with this problem. This paper presents methods and tools to determine the critical propeller jet velocities, which are the most important parameter to determine the size of the bank stabilisation system. The tool is a bridge simulator that can be used to simulate the intrusive departure manoeuvre of a ship. The ship motion data are analysed to determine the critical shear stress of the sediment particles. The critical velocity induced by the propeller jet is determined using the German method.
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