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Multimegameter-range acoustic data obtained by bottom-mounted hydrophone arrays for measurement of ocean temperature

机译:通过底部安装的水听器阵列获得的数百万米范围的声学数据,用于测量海洋温度

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Acoustic signals transmitted from the ATOC source on Pioneer Seamount off the coast of California have been received at various sites around the Pacific Basin since January 1996. We describe data obtained using bottom-mounted receivers, including US Navy Sound Surveillance System arrays, at ranges up to 5 Mm from the Pioneer Seamount source. Stable identifiable ray arrivals are observed in several cases, but some receiving arrays are not well suited to detecting the direct ray arrivals. At 5-Mm range, travel-time variations at tidal frequencies (about 50 ms peak to peak) agree well with predicted values, providing verification of the acoustic measurements as well as the tidal model. On the longest and northernmost acoustic paths, the time series of resolved ray travel times show an annual cycle peak-to-peak variation of about 1 s and other fluctuations caused by natural oceanic variability. An annual cycle is not evident in travel times from shorter acoustic paths in the eastern Pacific, though only one realization of the annual cycle is available. The low-pass-filtered travel times are estimated to an accuracy of about 10 ms. This travel-time uncertainty corresponds to errors in range- and depth-averaged temperature of only a few millidegrees, while the annual peak-to-peak variation in temperature averaged horizontally over the acoustic path and vertically over the upper 1 km of ocean is up to 0.5/spl deg/C.
机译:自1996年1月以来,太平洋海岸周围的各个地点都收到了来自加利福尼亚沿海先驱海山上ATOC源的声波信号。我们描述了使用底部安装的接收器(包括美国海军声音监视系统阵列)获得的数据从先锋海山源到5毫米。在几种情况下可以观察到稳定的可识别射线​​到达,但是某些接收阵列不太适合检测直接射线到达。在5毫米范围内,潮汐频率(峰峰值之间约50毫秒)的传播时间变化与预测值非常吻合,从而验证了声学测量结果和潮汐模型。在最长和最北端的声波路径上,解析的射线传播时间的时间序列显示出年周期的峰峰值变化约为1 s,以及其他由自然海洋变化引起的波动。尽管只有一个实现年循环的功能,但从东太平洋较短的声波路径的旅行时间来看,年循环并不明显。经低通滤波的行进时间估计为约10 ms的精度。这种旅行时间的不确定性仅对应于几毫米的范围和深度平均温度的误差,而在声波路径上水平平均和海洋上空1 km垂直方向上平均温度的年度峰峰值变化到0.5 / spl deg / C。

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