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Intercomparison of Wave Data between Triaxys Directional Wave buoy, ADCP, and Other Reference Wave Instruments

机译:三轴定向波浮标,ADCP和其他参考波仪器之间的波数据比对

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The use of Triaxys directional wave buoy and acoustic Doppler current profiler (ADCP) for wave measurements are relatively recent. The US National Oceanic and Atmospheric Administration's (NOAA) National Ocean Service (NOS) acquired these instruments in 2001 and systematic laboratory and field tests were conducted during 2001 - 2002. This paper describes the field tests conducted near the US Army Corps of Engineers' Field Research Facility (FRF) ocean pier and near the Barren Islands in the Chesapeake Bay. At the FRF site, Triaxys buoy wave measurements were compared with FRF's field standards of pressure sensor arrays and Datawell Waverider buoy. For the Bay test, ADCP was compared with the Triaxys buoy. There are significant numbers of outlier in the Triaxys peak periods at both test sites. In the Chesapeake Bay, which is dominated by high frequency and low energy waves, there is much scatter in the Triaxys data for significant wave heights below 0.2 m. Detailed analyses were performed after these outliers and noisy data were removed. Statistics of differences in significant wave heights, peak periods and directions between each comparative pair were computed and characteristics of frequency and frequency-direction spectra were examined. Overall, correlations between each instrument pair are very good in significant wave heights, fair in wave peak periods (except the ADCP/Triaxys pair), and marginal in wave directions. Triaxys buoy compared better with Waverider buoy than with others. Both ADCP and FRF pressure sensor array exhibit higher resolution in detecting multi-modal and multi-frequency waves. In most cases, energy distribution of spectral peaks in Triaxys buoy data differs significantly from those obtained from FRF pressure sensor array and ADCP.
机译:使用三轴定向波浮标和声学多普勒电流剖面仪(ADCP)进行波浪测量是相对较新的。美国国家海洋与大气管理局(NOAA)国家海洋局(NOS)于2001年购买了这些仪器,并在2001年至2002年期间进行了系统的实验室和现场测试。本文介绍了在美国陆军工程兵团附近进行的现场测试。研究设施(FRF)海洋码头和切萨皮克湾的Barren群岛附近。在FRF现场,将Triaxys浮标的测量结果与FRF的压力传感器阵列和Datawell Waverider浮标的现场标准进行了比较。对于Bay试验,将ADCP与Triaxys浮标进行了比较。在两个测试地点的三轴峰高峰期都有大量异常值。在切萨皮克湾(Chesapeake Bay)中,高频和低能量波占主导地位,对于低于0.2 m的显着波高,三轴仪数据中存在很多散射。在这些异常值和噪声数据被删除之后,进行了详细的分析。计算每个比较对之间的重要波高,峰值周期和方向的差异统计,并检查频率和频率方向频谱的特性。总的来说,每对仪器之间的相关性在明显的波高上非常好,在波峰周期内比较合理(除了ADCP /三轴仪对),在波向上则很小。 Triaxys浮标与Waverider浮标相比,比其他浮标更好。 ADCP和FRF压力传感器阵列在检测多模态和多频波方面均具有更高的分辨率。在大多数情况下,Triaxys浮标数据中光谱峰的能量分布与从FRF压力传感器阵列和ADCP获得的光谱峰的能量分布显着不同。

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