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Approach for Acoustic Transit Time flow measurement in sections of varying shape: Theoretical fundamentals and implementation in practice

机译:不同形状截面中的声学传递时间流量测量方法:理论基础和实践中的实现

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This paper focuses on the generalization of the Acoustic Transit Time (ATT) flow measurement method currently embodied in ultrasonic flow meters. First, the existing theoretical fundamentals that cover flow measurement in regular conduits are presented and relevant design features of typical ultrasonic flow meters are described. A detailed derivation of a measurement method for the generalized theoretical fundamentals of multipath All flow is then presented. This generalization consists of extending the existing theoretical background in the case of an irregular section, which is defined as a section that has a non-standard shape and/or a varying shape and size, e.g. one that has transition from a rectangular to a circular section. On the basis of the derived generalized theory, the approach for flow measurement in such irregular sections is developed. This approach is then tested numerically using an example of a converging measurement section that represents the water intake of the Kaplan unit. During the test of the new approach, the flow rate and flow profile at the inlet were varied to investigate the effect of such variations on the accuracy of flow rate determination. Results for a significant flow profile and flow rate variations show that the overall error dispersion of the flow rate evaluation is of the order of 0.5%. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文着重介绍了超声流量计中当前所采用的声学传输时间(ATT)流量测量方法。首先,介绍了覆盖常规管道中流量测量的现有理论基础,并描述了典型超声波流量计的相关设计特征。然后给出了多径全流通用理论基础的测量方法的详细推导。这种概括包括在不规则截面的情况下扩展现有的理论背景,该不规则截面被定义为具有非标准形状和/或变化的形状和尺寸(例如,不规则的截面)的截面。从矩形到圆形的过渡部分。基于派生的广义理论,开发了在这种不规则截面中进行流量测量的方法。然后,使用会聚测量部分的示例对这种方法进行数值测试,该部分代表Kaplan单元的进水量。在新方法的测试过程中,改变了入口处的流速和流量曲线,以研究这种变化对流速确定精度的影响。明显的流量曲线和流量变化的结果表明,流量评估的总误差分散度约为0.5%。 (C)2016 Elsevier Ltd.保留所有权利。

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