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Synchronous lagrangian and eulerian velocity measurements

机译:同步拉格朗日和欧拉速度测量

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A Phased Array Doppler Sonar (PADS), as developed at SIO, images both acoustic backscatter intensity and Doppler shift over areas up to 90 degrees in bearing by 500 m in range. Sequences of images are recorded continuously for up to two months,with individual "pings" 0.5 to 1.0 seconds apart. The images permit two independent estimates of the mean velocity to be formed over the imaged area: one from the Doppler shift (radial velocity), and another from tracking features from one frame to thenext. For grazing incidence, the Doppler shifts provide an essentially Eulerian velocity estimate, an intensity-weighted average from the wave troughs downward. In contrast, the feature-tracking velocities are Lagrangian. A unique aspect of this is thatboth Eulerian and Lagrangian velocities are estimated from the same data. The difference between these two velocity estimates compares well with the Stokes' drift calculated via linear theory from a resistance wire elevation array.
机译:分阶段阵列多普勒声纳(焊盘),如SIO在SIO,图像均在轴承范围内轴承高达90度的区域上的声反向散射强度和多普勒移位。图像的序列连续记录长达两个月,单个“凸缘”分开0.5至1.0秒。图像允许在成像区域上形成的平均速度的两个独立估计值:一个来自多普勒频移(径向速度),另一个从一个帧跟踪到那样。对于放牧发射,多普勒换档提供了基本上欧拉的速度估计,从波槽向下的强度加权平均值。相比之下,特征跟踪速度是拉格朗日。这方面的一个独特方面是从相同的数据估算欧拉和拉格朗日速度。这两个速度估计之间的差异很好地利用来自电阻线升高阵列的线性理论计算的Stokes的漂移良好。

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