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Use of the acoustic transit time method to determine the random uncertainty of planar velocity parameters in water

机译:使用声波传播时间方法确定水中平面速度参数的随机不确定性

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摘要

In hydropower plants, exact knowledge of the absolute discharge is key to monitoring efficiency and other important system parameters. The acoustic transit time method - a standard technique in various test codes for determining the absolute discharge - requires evaluation of planar flow velocities in water. However, the approximation formula for the propagation time of acoustic pulses in this method introduces additional random uncertainties that have - so far - not been examined. This paper shows that these uncertainties can be used to determine the number of acoustic paths required in a single acoustic plane to remain below a particular uncertainty limit. The theoretical analysis presented suggests that common single-path sensor arrangement should be avoided and that multi-path (or close-by) arrangements increase the accuracy of the velocity evaluation, as biasing velocities that result from local flow phenomena are canceled out.
机译:在水力发电厂中,对绝对流量的准确了解是监控效率和其他重要系统参数的关键。声波传播时间方法是确定绝对流量的各种测试代码中的标准技术,它要求评估水中的平面流速。但是,此方法中声脉冲传播时间的近似公式引入了迄今为止尚未检查的其他随机不确定性。本文表明,这些不确定性可用于确定单个声学平面中保持在特定不确定性限值以下所需的声学路径数。提出的理论分析表明,应避免使用普通的单路径传感器布置,而多路径(或近距离)布置可提高速度评估的准确性,因为可以消除由局部流动现象引起的偏置速度。

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