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Numerical prediction of interference factor in motions and added resistance for Delft catamaran 372

机译:代尔夫特筏372动作干扰因子的数值预测和抗性阻力372

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摘要

Multi-hull forms are widely used in maritime applications such as passenger transport and military operations. These vessels' hydrodynamic characteristics may differ from the displacement type ships. This matter makes multi-hull hydrodynamics an important research field to study. Regarding this, the authors focused on the numerical investigation of Delft catamaran 372 that is widely used for benchmarking. Unsteady RANS analyses were conducted at Fr = 0.3 in regular head wave conditions. The numerical approach was first verified and then validated with the available experimental data in terms of calm water resistance and vertical motions. The main highlights of this study are the comprehensive validation study with the literature and the calculation of the interference factor (IF) through total and added resistance in waves. Motion and added resistance transfer functions were obtained for catamaran and demihull geometries. It is concluded that the effects of interference factor in waves are highly important in catamaran forms.
机译:多船体形式广泛用于客运和军事行动等海上应用。这些血管的流体动力学特性可能与位移型船只不同。这件物质使多船体流体动力学成为研究的重要研究领域。关于这一点,作者集中于Delft乘客372的数值调查,这些标准师372广泛用于基准测试。在常规头波条件下在FR = 0.3进行不稳定的RAN分析。首先验证数值方法,然后在平稳的耐水性和垂直运动方面用可用的实验数据验证。本研究的主要亮点是具有文献的全面验证研究和通过总和的干扰因子(IF)的计算和波浪中的抗性。为双体船和Demihull几何形状获得运动和增加电阻传递函数。得出结论,波浪中的干扰因子在双体汉形式中的影响非常重要。

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