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Analysis of tunnel hydrodynamic characteristics for planing trimaran by model tests and numerical simulations

机译:通过模型试验和数值模拟分析平面三体船的隧道水动力特性

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The planing trimaran hull has unique hydrodynamic performance due to the tunnel region. In this paper, results of experimental and numerical studies for the planing trimaran hull are presented to analyze the hydrodynamic characteristics of tunnel and its effect on the hull body. Model tests were carried out for volume based Froude number ranging from 0.90 to 5.87. Resistance, sinkage and trim angle obtained by towing tank show that the planing trimaran has poor resistance performance at the hump region, while it operates quite well in the planing mode. A three dimensional computational fluid dynamic (CFD) code based on the Finite Volume Method (FVM) was used to simulate the forward motion of the hull body with two degrees of freedom (heave and pitch) when Froude number is above 3.16. Calculated results were validated with the experimental data and showed good agreement. Wave profile, dynamic lift, longitudinal center of pressure and flow vectors in the tunnel region at various Froude numbers were provided to explain the hydrodynamic and aerodynamic mechanism of this region. At last, models with different tunnel height and beam were calculated to study the influence of tunnel configuration on hull behaviors and hydrodynamic performance. (C) 2016 Elsevier Ltd. All rights reserved.
机译:由于隧道区域的原因,滑行三体船的船体具有独特的水动力性能。本文介绍了平面三体船船体的实验和数值研究结果,以分析隧道的水动力特性及其对船体的影响。针对基于体积的弗劳德数在0.90至5.87之间进行了模型测试。通过拖曳油箱获得的阻力,下沉和修整角表明,滑行三体船在驼峰区域的阻力性能较差,而在滑行模式下则表现良好。当弗洛德数大于3.16时,基于有限体积法(FVM)的三维计算流体动力学(CFD)代码用于模拟船体的前向运动,具有两个自由度(升沉和俯仰)。计算结果与实验数据进行了验证,并显示出良好的一致性。提供了不同弗洛德数的隧道区域内的波廓,动态升力,纵向压力中心和流向,以解释该区域的流体动力和空气动力机理。最后,计算了不同隧道高度和梁的模型,以研究隧道构型对船体性能和水动力性能的影响。 (C)2016 Elsevier Ltd.保留所有权利。

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