Influence of moonpool on the total resistance of a drillship by the effect of water motions inside the moonpool

Sivabalan Ponnappan, S. Sankunny
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Abstract

Moonpools are openings right through the hull from continuous deck to bottom of the ship, allowing equipment or mini-submarines to be put into the water at a location on the vessel with minimum ship motion. Open moonpools in a drillship are causing additional resistance when the ship is in forward speed. It was shown that the water inside the moonpool started to oscillate at forward speed. The water mass in the moonpool is subjected to sloshing and piston modes. The vertical motion is piston mode and the longitudinal one is called as sloshing mode. This water particle motion inside the moonpool is mainly depended on the geometry, moonpool depth, and encountered wave frequency. Out of this, moonpool geometry is one of the key factors for the performance of the moonpool. The varying cross-section geometry is one of the practically possible and economically feasible solutions to reduce the oscillation to a considerable level is attempted in this paper. Also the resistance caused by the moonpool and the free surface generated around the hull is investigated with the use of computer simulation.
月池内水运动对钻井船总阻力的影响
“月池”是一种从连续甲板一直延伸到船底的开口,可以让设备或迷你潜艇在船上的某个位置以最小的船体运动投入水中。当船在前进速度时,钻井船上开放的月池会产生额外的阻力。结果表明,月池中的水开始以向前的速度振荡。月池中的水质量受到晃动和活塞模式的影响。纵向运动称为活塞运动,纵向运动称为晃动运动。这种水粒子在月池内的运动主要取决于月池的几何形状、月池深度和遇波频率。其中,月池几何形状是影响月池性能的关键因素之一。变截面几何是一种实际可行和经济可行的解决方案,以减少振荡到相当大的水平,本文试图。利用计算机模拟研究了月池和船体周围自由表面所产生的阻力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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