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Experimental study of the velocity field induced by a propeller jet in an inland-ship model and the related bed scour

机译:内陆舰模型中螺旋桨喷射仪引起的速度场的实验研究及相关床冲刷

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The highly turbulent flow induced by ship propellers has a great potential to scour the alluvial bottom of navigational rivers and canals. Characterization of the complex flow field behind propellers is essential for forecasting the scouring action. In this study the velocity field and scour induced by two standard arrangements of propeller, nozzle and rudder from inland vessels are investigated experimentally with a ship model on a scale of 1:16. There are two objectives: first, to identify the influence of the ship stern on the flow field, and second, to assess induced scour depths in relation to maximum current velocities close to the bottom. It is found that the equilibrium scour depths for the two propeller arrangements are of the same order of magnitude, but that the time development of scour is different. The differences can be explained by the converging trend of the flow velocities at the bottom level for the two situations, when the vertical distance between the propeller and the bottom is high. It is also shown that existing relations for the velocity field require amendment when the propeller is ducted, and for adequately considering the effect of the ship stem and rudder type.
机译:船舶螺旋桨引起的高湍流流量有很大的潜力,可以擦除导航河流和运河的冲积底部。螺旋桨后面的复杂流场的表征对于预测防擦动作是必不可少的。在这研究中,通过在1:16的等级上通过实验研究了由内陆血管的两个标准布置引起的螺旋桨,喷嘴和舵的两个标准布置引起的速度场和冲刷。有两个目标:首先,确定船舶船尾对流场的影响,而第二,以评估与靠近底部的最大电流速度相关的诱导的冲刷深度。结果发现,两个螺旋桨布置的平衡冲刷深度具有相同的数量级,但是冲刷的时间发展是不同的。当螺旋桨和底部之间的垂直距离高时,可以通过两个情况下的流速的流速的会聚趋势来解释差异。还表明,当螺旋桨对螺旋桨被管道的情况下,以及充分考虑船杆和舵型的效果时,对速度场的现有关系需要修改。

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