首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >EXPERIMENTAL AND NUMERICAL STUDY FOR GAP RESONANCE OF DRILLSHIP MOONPOOL IN WAVES WITH/WITHOUT FORWARD SPEED
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EXPERIMENTAL AND NUMERICAL STUDY FOR GAP RESONANCE OF DRILLSHIP MOONPOOL IN WAVES WITH/WITHOUT FORWARD SPEED

机译:有/无前向波的钻探月池间隙共振的实验和数值研究

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Experimental and numerical studies are carried out to examine the moonpool gap resonance for a drillship at both stationary position and forward speed conditions. The moonpool size and draft are also changed to study their effects for the gap resonance phenomenon. An OpenFOAM based CFD model is developed and the numerical results show good agreement with model tests. Both piston and sloshing modes gap resonances are clearly observed. The study shows that the resonance frequency and RAO of the wave elevation inside the moonpool are subject to the effects of moonpool length, drill ship draft and ship forward speed. The model test shows that moonpool elevation RAO generally significantly increases in head seas and noticeably decreases in following seas condition. It is interesting to notice that the wave flume sidewall significantly depresses the moonpool elevation RAO at a certain frequency regardless of moonpool length and draft. Further study shows that the presence of the flume sidewall results in a trapped mode that coincides with the moonpool piston mode resonance at zero speed. This depresses the peak of the moonpool resonance, which occurs at the same frequency.
机译:进行了实验和数值研究,以检查固定位置和前进速度条件下钻井船的月池间隙共振。还更改了月池的大小和吃水深度,以研究它们对间隙共振现象的影响。开发了基于OpenFOAM的CFD模型,数值结果与模型测试吻合良好。清楚地观察到活塞和晃动模式的间隙共振。研究表明,月池内部波高的共振频率和RAO受月池长度,钻探船吃水和船前进速度的影响。模型测试表明,在公海中,月池高程RAO通常会显着增加,在随后的海况中会显着降低。有趣的是,波浪槽侧壁以一定的频率显着压低了月池高度RAO,而与月池长度和吃水深度无关。进一步的研究表明,水槽侧壁的存在导致了陷波模式,该模式与零速下的月池活塞模式共振相吻合。这抑制了以相同频率出现的月池共振的峰值。

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