ISAT-Institute of Sensor and Actuator Technology, Coburg University of Applied Sciences and Arts, 96450 Coburg, Germany.
Diehl Metering, 91522 Ansbach, Germany.
Sensors (Basel). 2022 Sep 2;22(17):6648. doi: 10.3390/s22176648.
Guided acoustic waves are commonly used in domestic water meters to measure the flow rate. The accuracy of this measurement method is affected by factors such as variations in temperature and limescale deposition inside of the pipe. In this work, a new approach using signals from different sound propagation paths is used to determine these quantities and allow for subsequent compensation. This method evaluates the different propagation times of guided Lamb waves in flow measurement applications. A finite element method-based model is used to identify the calibration curves for the device under test. The simulated dependencies on temperature and layer thickness are validated by experimental data. Finally, a test on simulated data with varying temperatures and limescale depositions proves that this method can be used to separate both effects. Based on these values, a flow measurement correction scheme can be derived that provides an improved resolution of guided acoustic wave-based flow meters.
导波在民用水表中常用于测量流量。这种测量方法的准确性会受到温度变化和管内水垢沉积等因素的影响。在这项工作中,使用了一种新的方法,通过不同的声传播路径来确定这些量,并进行后续补偿。该方法评估了导 Lamb 波在流量测量应用中的不同传播时间。使用基于有限元方法的模型来确定被测试设备的校准曲线。通过实验数据验证了对温度和层厚度的模拟依赖性。最后,通过对具有不同温度和水垢沉积的模拟数据进行测试,证明了该方法可用于分离这两种影响。基于这些值,可以推导出一种流量测量校正方案,从而提高基于导波的流量计的分辨率。