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A comparison of current profiles collected from bottom- and buoy-mounted instruments

机译:从底座和浮标安装仪器收集的电流曲线的比较

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Current profiles collected using a Nortek Aquadopp profiler mounted in an AXYS Technologies TRIAXYS wave buoy are compared to coincident measurements from nearby bottom-mounted instruments. A 2014 experiment conducted in the Chesapeake Bay with 0 - 3 m waves and 0 - 1 m/s currents suggested that observed discrepancies of 200-400 mm/sec could be due to inadequate resolution of rapid buoy movements and subsequent improper transformation of acoustic Doppler beam data to geographic coordinates. A second, similar experiment was run in 2015-2015 with 4 Hz attitude/acceleration data provided in real time, and high frequency data logged for post-processing and analysis. Mean errors were reduced to ~50 mm/sec, but showed a bias towards overestimating southward velocity. This bias was proportional to vertical shear and increased with depth; several possible explanations were detailed and discarded. While the substantial improvement in performance is notable and the implemented acceleration measurement improvementsshould be made operational, there is research remaining to understand the observed behavior.
机译:使用安装在Axys Technologies TriZiaxys波浮标中的NORTEK AQUADOPP分析器收集的当前配置文件与附近的底部仪器的重合测量相比。在Chesapeake托架中进行的2014年实验,具有0 - 3米波和0 - 1米/秒的电流,表明观察到的200-400 mm / sec的差异可能是由于快速浮标运动的不足和随后的声学多普勒的不正当转换向地理坐标束数据。第二种类似的实验在2015-2015中运行,实时提供了4 Hz姿态/加速数据,并记录了用于后处理和分析的高频数据。平均误差降低到〜50 mm / sec,但显示出偏向南向速度的偏差。这种偏差与垂直剪切成比例,深度增加;有几种可能的解释是详细和丢弃的。虽然性能的大量改善是值得注意的,但实施的加速度测量改进应该运行,仍有研究仍然可以理解观察到的行为。

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