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Application of acoustic-Doppler current profiler and expendable bathythermograph measurements to the study of the velocity structure and transport of the Gulf Stream

机译:声学多普勒电流剖面仪和消耗性水温仪测量值在研究墨西哥湾流的速度结构和输运中的应用

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摘要

The degree to which Acoustic-Doppler Current Profiler (ADCP) and expendable bathythermograph (XBT) data can provide quantitative measurements of the velocity structure and transport of the Gulf Stream is addressed. An algorithm is used to generate salinity from temperature and depth using an historical Temperature/Salinity relation for the NW Atlantic. Results have been simulated using CTD data and comparing real and pseudo salinity files. Errors are typically less than 2 dynamic cm for the upper 800 m out of a total signal of 80 cm (across the Gulf Stream). When combined with ADCP data for a near-surface reference velocity, transport errors in isopycnal layers are less than about 1 Sv (10 to the 6th power cu m/s), as is the difference in total transport for the upper 800 m between real and pseudo data. The method is capable of measuring the real variability of the Gulf Stream, and when combined with altimeter data, can provide estimates of the geoid slope with oceanic errors of a few parts in 10 to the 8th power over horizontal scales of 500 km.
机译:本文探讨了声多普勒电流剖面仪(ADCP)和消耗性水温仪(XBT)数据可以定量测量墨西哥湾流的速度结构和输运的程度。一种算法用于使用西北大西洋的历史温度/盐度关系从温度和深度生成盐度。已经使用CTD数据模拟了结果,并比较了真实和伪盐度文件。在整个80厘米(横跨墨西哥湾流)的总信号中,上部800 m的误差通常小于2动态厘米。当与ADCP数据结合以获取近地表参考速度时,等深层中的输运误差小于约1 Sv(10到6功率cu m / s),而实际区域中上部800 m的总输运差异和伪数据。该方法能够测量墨西哥湾流的实际变化,并且与高度计数据结合使用时,可以在500 km的水平尺度上以10到8次方的几分之一的海洋误差提供大地水准面坡度的估计值。

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