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Experimental and numerical study on trim and sinkage of a high speed catamaran vessel in shallow waterways

机译:浅水航道中高速双体船船体纵沉实验与数值研究

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Many areas of seas, harbours and channels that were considered deep and safe for vessel navigation have been changed into dangerous shallow water regions for the new generation vessels due to their drastic increase in size and speed. Hence, the understanding of the safe speed of a vessel to prevent it from grounding when it operates in restricted waterways is gaining more importance. A catamaran vessel, being one of the new generation vessel configurations, is considered here to study the effect of its under-keel clearance of water and also its demi-hull spacing in the determination of a safe vessel speed. The numerical study using RANSE based CFD solver Fluent has been complemented by results obtained from experiments carried out in the towing tank of IIT Madras using the newly commissioned floating false bottom facility.
机译:由于其尺寸和速度的急剧增加,许多被认为对船只航行安全的深海,港口和航道区域已变为新一代船只的危险浅水区域。因此,对于防止船舶在受限水道中行驶时防止其搁浅的安全速度的理解变得越来越重要。这里考虑使用双体船作为新一代船型之一,以研究其龙骨下水清除率以及半船体间距对确定安全船速的影响。使用基于RANSE的CFD求解器Fluent进行的数值研究得到了IIT Madras拖船中使用新调试的浮式假底设备进行的实验结果的补充。

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