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Numerical prediction of green water incidents

机译:绿水事件的数值预测

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Green water loads on moored or sailing ships occur when an incoming wave significantly exceeds the freeboard and water runs onto the deck. In this paper, a Navier-Stokes solver with a free surface capturing scheme (i.e. the VOF model; Hirt and Nichols, 1981) is used to numerically model green water loads on a moored FPSO exposed to head sea waves. Two cases are investigated: first, green water on a fixed vessel has been analysed, where resulting waterheight on deck, and impact pressure on a deck mounted structure have been computed. These results have been compared to experimental data obtained by Greco (2001) and show very favourable agreement. Second, a full green water incident, including vessel motions has been modelled. In these computations, the vertical motion has been modelled by the use of transfer functions for heave and pitch, but the rotational contribution from the pitch motion has been neglected. The computed water height on deck has been compared to the experimental data obtained by Buchner (1995a) and it also shows very good agreement. The modelling in the second case was performed in both 2-D and 3-D with very similar results, which indicates that 3-D effects are not dominant.
机译:当进入的波浪大大超过干舷并且水流到甲板上时,会在系泊或航行的船舶上产生绿色水负荷。在本文中,使用带有自由表面捕获方案的Navier-Stokes求解器(即VOF模型; Hirt和Nichols,1981),对暴露于海浪的FPSO上的绿水负荷进行了数值模拟。研究了两种情况:首先,分析了固定船上的绿水,计算了甲板上的水位高度,并计算了甲板安装结构上的冲击压力。这些结果已与Greco(2001)获得的实验数据进行了比较,并显示出非常良好的一致性。其次,对包括船只运动在内的全部绿水事件进行了建模。在这些计算中,垂直运动已通过使用升沉和俯仰传递函数进行建模,但俯仰运动的旋转贡献已被忽略。将甲板上计算出的水高与Buchner(1995a)获得的实验数据进行了比较,也显示出很好的一致性。第二种情况下的建模是在2-D和3-D中执行的,结果非常相似,这表明3-D效果不是主要的。

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