Current measurement by differential acoustic travel-time reviewed

A. J. Williams
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Abstract

Since 1977 papers have been published and talks presented about measurement of fluid flow by differential acoustic travel-time. The technique is older than these publications but a compilation of these will serve as a research source for understanding the development of the technique through 2014. The earliest papers describe the differential acoustic travel-time technique as applied to a free-fall shear meter and then to a boundary layer array. Next are the benthic boundary layer studies that gave rise to the BASS tripods and their application to the deep-sea sediment transport problem. Deep-sea applications transitioned to shelf depths and the combination of waves and current in estimates of bottom stress. Studies of the upper boundary layer used bottom tripods suspended from surface floats or mounted on tower legs to study air-sea interaction and mixing under waves in the surface boundary layer. Free drifting velocity sensing arrays were deployed to study internal diapycnal mixing. There are a series of papers about Richardson number measurements from RiNo floats. Finally the development of a compact single-point sensor based upon the differential acoustic travel-time technique is described in papers that progress through analyses of performance and enhancements as well as applications of the Modular Acoustic Velocity Sensor, MAVS.
差分声走时电流测量综述
自1977年以来,已经发表了关于用微分声走时测量流体流动的论文和演讲。这项技术比这些出版物更古老,但这些出版物的汇编将作为了解该技术到2014年发展的研究来源。最早的论文描述了差分声波传播时间技术应用于自由落体剪切仪,然后应用于边界层阵列。接下来是底栖边界层研究,产生了BASS三脚架及其在深海沉积物运输问题上的应用。在估计海底应力时,深海应用已过渡到陆架深度以及波浪和洋流的组合。上附面层的研究使用了悬挂在水面浮子上或安装在塔腿上的底三脚架来研究表面附面层波浪下的海气相互作用和混合。采用自由漂移速度传感阵列,研究了内部湍动混合。有一系列关于利用RiNo浮标测量理查德森数的论文。最后,通过分析模块化声速传感器(MAVS)的性能和改进以及应用,介绍了基于差分声走时技术的紧凑型单点传感器的发展。
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