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Turning ability analysis of a fully appended twin screw vessel by CFD. Part I: Single rudder configuration

机译:通过CFD分析完全附接的双螺杆容器的旋转能力。第一部分:单舵配置

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The turning circle manoeuvre of a naval supply vessel (characterized by a block coefficient C-B similar to 0.60) is simulated by the integration of the unsteady Reynolds-Averaged Navier Stokes equations coupled with the equations of rigid body motion with six degrees of freedom. The model is equipped with all the appendages, and it is characterised by an unusual single rudder/twin screws configuration. This arrangement causes poor directional stability qualities, which makes the prediction of the trajectory a challenging problem. As already shown in previous works, the treatment of the in-plane loads exerted by the propellers is of paramount importance; to this aim each propeller is simulated by an actuator disk model, properly modified to account for oblique flow effects. The main goal of the present paper is to assess the capability of the CFD tool to accurately predict the trajectory of the ship and to analyse the complex flow field around a vessel performing a turning manoeuvre. Distribution of forces and moments on the main hull, stern appendages and rudder are analysed in order to gain a deeper insight into the dynamic behaviour of the vessel. Validation is provided by the comparison with experimental data from free running tests. (C) 2015 Elsevier Ltd. All rights reserved.
机译:通过将不稳定的雷诺平均Navier Stokes方程与具有6个自由度的刚体运动方程相结合,模拟了海军补给船的转弯机动(其特征为块系数C-B类似于0.60)。该模型配备了所有附件,其特点是具有非同寻常的单舵/双螺杆配置。这种布置导致差的方向稳定性,这使得轨迹的预测成为挑战性的问题。如先前的工作已经显示的那样,螺旋桨施加的平面载荷的处理至关重要。为了达到这个目的,每个螺旋桨都通过一个执行器盘模型进行仿真,并对其​​进行适当修改以解决斜流效应。本文的主要目的是评估CFD工具准确预测船舶航迹的能力,并分析执行转向操作的船舶周围的复杂流场。分析船体,船尾附件和方向舵上的力和力矩的分布,以便对船舶的动态行为有更深入的了解。通过与自由运行测试的实验数据进行比较来提供验证。 (C)2015 Elsevier Ltd.保留所有权利。

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