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Evaluation of hydroelastic responses of a 180k DWT large bulk carrier

机译:180k DWT大型散货船的水弹性响应评估

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The linear hydroelastic theory has been widely used in engineering applications in the past. However, the increasing demand for larger merchant ships makes it necessary to evaluate the influences of second-order nonlinear fluid forces on ship response in seas. In this study, the second-order nonlinear responses induced by sea waves are calculated using generalized second-order wave force theory in the frequency domain. The Fluid-Structure Interaction (FSI) method is presented first in this paper which is used for the assessment of ship response and loads, including both linear and second-order nonlinear methods in the frequency domain. Subsequently, the effects of linear forces on the wave-induced responses and loads for a 180k DWT large bulk carrier with and without forward speed are calculated using pulsating source Green's function and translating-pulsating source Green's function. The second-order nonlinear responses are predicted mainly based on pulsating source Green's function. The numerical results show that the ship responses change significantly at high speed, and there are extra vertical bending moments caused by second-order fluid forces acting on the ship in large-amplitude waves compared to linear results. It indicates that both the speed of the ship and the second-order nonlinear wave forces acting on the ship could amplify the wave-induced responses and vertical bending moments.
机译:线性水弹性理论在过去已广泛用于工程应用中。但是,对大型商船的需求不断增长,因此有必要评估二阶非线性流体力对海上船舶响应的影响。在这项研究中,使用频域中的广义二阶波浪力理论来计算海浪引起的二阶非线性响应。本文首先介绍了流固耦合(FSI)方法,该方法用于评估船舶的响应和载荷,包括频域中的线性和二阶非线性方法。随后,使用脉动源格林函数和平移脉动源格林函数来计算线性力对180k DWT大型散货船有无前进速度的波浪感应响应和载荷的影响。主要基于脉动源格林函数来预测二阶非线性响应。数值结果表明,与线性结果相比,船舶响应在高速状态下发生显着变化,并且由于大幅度波作用在船舶上的二次流体力引起额外的垂直弯矩。这表明船速和作用在船上的二阶非线性波浪力都可以放大波浪感应响应和垂直弯矩。

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