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首页> 外文期刊>Journal of atmospheric and oceanic technology >Field Verification of ADCP Surface Gravity Wave Elevation Spectra
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Field Verification of ADCP Surface Gravity Wave Elevation Spectra

机译:ADCP表面重力波高程谱的现场验证

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摘要

Acoustic Doppler current profilers (ADCPs) can measure orbital velocities induced by surface gravity waves, yet the ADCP estimates of these velocities are subject to a relatively high noise level. The present paper introduces a linear filtration technique to significantly reduce the influence of noise and turbulence from energy spectra of combined orbital velocity measurements. Data were collected in 13-m-deep water with a 1.2-MHz ADCP sampling in mode 12, where a collocated wave buoy was used for verification. The surface elevation spectra derived from the filtrated and nonfiltrated measurements were compared with corresponding wave buoy spectra. In the frequency range between 0.12 and 0.5 Hz, ADCP- and wave-buoy-derived spectral estimates matched very well, even without applying the filtration technique. At frequencies below 0.12 Hz, the ADCP-derived surface elevation spectra are biased, caused by a depth- varying excess of spectral energy density in the measured orbital velocities, peaking at middepth. Internal waves may provide an explanation for the energy excess, as the experiment was conducted in the region of influence of the Rhine freshwater plume. Alternatively, infragravity waves may be the cause of the depth variation of low-frequency spectral energy density.
机译:声学多普勒电流剖面仪(ADCP)可以测量由表面重力波感应的轨道速度,但是这些速度的ADCP估计值会受到相对较高的噪声级别的影响。本文介绍了一种线性过滤技术,可从组合轨道速度测量的能谱中显着降低噪声和湍流的影响。在模式12下,在13米深的水中以1.2 MHz ADCP采样收集数据,其中使用并置的浮标进行验证。将来自过滤和未过滤的测量结果的表面标高光谱与相应的浮标光谱进行比较。在0.12至0.5 Hz的频率范围内,即使不采用滤波技术,ADCP和浮标的频谱估计也可以很好地匹配。在低于0.12 Hz的频率下,由ADCP衍生的表面仰角光谱是有偏差的,这是由于所测轨道速度中光谱能量密度随深度变化而产生的,并在中深度达到峰值。由于实验是在莱茵河淡水羽流的影响区域进行的,因此内部波可能解释了能量过剩。另外,次重力波可能是低频频谱能量密度深度变化的原因。

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