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Estimating flow velocities of the water column using the motion response of an Autonomous Underwater Vehicle (AUV)

机译:使用自主水下车辆(AUV)的运动响应估计水柱的流速

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The WVAM method is a nonacoustic method to calculate the velocity components of a turbulent water column using the motion response of an Autonomous Underwater Vehicle (AUV) without the aid of an Acoustic Doppler Current Profiler (ADCP). This study analyses water velocity measurements estimated using the WVAM method as a function of the turbulence level of the environment by testing the method in an estuary that exhibits strong tidal currents (around 2 m/s). The uncertainty of this method at different water column conditions was computed by comparing the velocity measurements from the WVAM method with those obtained from the AUV mounted ADCP. The WVAM method determines the water velocities by comparing the motion response of the vehicle when operating within turbulent and calm water environments respectively. The motion of the vehicle in the calm water environment was obtained by conducting simulations of the vehicles in calm water under the same control commands executed during the field experiments in turbulent conditions. A reduction in the accuracy of the method in rougher water environments was observed due to the hydrodynamic coefficients of the simulation model reaching their nonlinear range limits. A possible strategy to overcome this limitation and improve the WVAM method's ability to accurately estimate the flow field in the vicinity of AUVs operating in highly turbulent environments is also provided.
机译:WVAM方法是使用自主水下车辆(AUV)的运动响应来计算湍流水柱的速度分量而不借助于声学多普勒电流分析器(ADCP)。该研究通过在浅滩中测试展示强潮流(约2米/秒)的河口中的方法来分析使用WVAM方法估计的水速度测量。通过将来自WVAM方法的速度测量与从AUV安装的ADCP获得的那些进行比较来计算该方法在不同水柱条件下的这种方法的不确定性。 WVAM方法通过分别在湍流和平静的水环境中运行时比较车辆的运动响应来确定水速度。通过在湍流条件下的现场实验期间执行的相同控制命令下进行平静的水模拟来获得平静水环境中的车辆的运动。由于仿真模型的流体动力学系数达到其非线性范围限制,观察到粗糙水环境中的方法的准确性的降低。还提供了克服这种限制和提高WVAM方法准确估计的流场的可能策略,也提供了在高湍流环境中操作的AUV附近的流场。

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