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Experimental and numerical study of hydrodynamic performance of remotely operated vehicle

机译:远程操作车辆流体动力学性能的实验性和数值研究

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摘要

Nowadays, remotely operated vehicle (ROV) is an integral part of the marine industry. In this study, the hydrodynamic performance of a specific model of ROV is evaluated by numerical and experimental simulations in different Reynolds numbers ranging from 39291 to 157163 and various angles of attack from 0 degrees to 45 degrees. Moreover, two rectangular cubic models with fillet and sharp edges are modeled for comparative study. The wind tunnel and the finite volume methods are used for experimental and numerical simulations, respectively, and the Menter's SST k-omega model is employed to simulate the turbulent flow. The leading edge geometry, angle of attack, and Reynolds number are found to be the most effective factors on the drag forces. Additionally, the fillet edge model had better hydrodynamic performance than the ROV and the sharp edge rectangular cubic model considerably.
机译:如今,远程操作的车辆(ROV)是海洋工业的一个组成部分。在这项研究中,通过不同雷诺数的数值和实验模拟从39291至157163的不同雷诺数和从0度到45度的各种攻击角度评估ROV的特定模型的流体动力学性能。此外,具有圆角和尖锐边缘的两个矩形立方模型被建模用于比较研究。风隧道和有限体积方法分别用于实验和数值模拟,并且采用了导师的SSTK-OMEGA模型来模拟湍流。发现前沿几何,攻角和雷诺数是拖曳力最有效的因素。另外,圆角边缘模型比ROV和锐边矩形立方模型具有更好的流体动力学性能。

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