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Numerical investigation of a fleet of towed AUVs

机译:牵引式AUV车队的数值研究

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摘要

This paper investigates the influence on the fleet of the drag of multiple towed prolate spheroids to determine the hydrodynamic effect of the viscous interaction between hulls and to study the influence of the configuration's shape of multiple hulls in the vee and echelon formations. A series of CFD RANS-SST simulations has been performed at the Reynolds Number 3.2 × 10~6 by a commercial code ANSYS CFX 12.1. Mesh convergence is tested and then validated with experimental and empirical results. The drag of each spheroid is compared against the benchmark drag of a single hull. The results show that the spacing between two hulls determines the individual drag and combined drag. The dominant spacing has been classified into seven zones based on the drag characteristic of twin towed models. Regions are characterised to parallel, echelon, no gain, push, drafting, low interaction, and no interaction. Both the multi-vehicle vee and echelon configurations show limited influence against that of the entire fleet's energy budget. For an individual spheroid where a lower propulsion cost is required, then the use of three/four in vee or echelon formation should be considered. Based on this numerical information, operators can determine the optimal fleet configuration based on energy considerations.
机译:本文研究了多个拖曳的扁球体的拖曳力对舰队的影响,以确定船体之间的粘性相互作用的水动力效应,并研究了多个船体的构型形状在V型和梯形中的影响。雷诺数3.2×10〜6由商业代码ANSYS CFX 12.1执行了一系列CFD RANS-SST仿真。对网格收敛进行测试,然后通过实验和经验结果进行验证。将每个椭球体的阻力与单个船体的基准阻力进行比较。结果表明,两个船体之间的间距决定了单个阻力和组合阻力。根据双拖曳模型的阻力特性,主要间距已分为七个区域。区域具有平行,梯形,无增益,推入,绘制,低交互和无交互的特征。多层车辆的V型和梯形配置对整个车队的能源预算显示出有限的影响。对于需要较低推进成本的单个球体,则应考虑在V型或梯形中使用三/四。基于此数字信息,操作员可以基于能源考虑因素确定最佳车队配置。

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