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Measurement of flow rate using straight pipes and pipe bends with integrated piezoelectric sensors

机译:使用直管和管道弯曲与集成压电传感器的流速测量

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The original noninvasive method for measuring the flow rate of liquids proposed in this work relies on the ability of the piezoelectric sensors embedded into pipes or pipe bends to detect the pressure fluctuations of turbulent flow. As the pressure fluctuation is directly related to the flow velocity, the electric responses of the piezoelectric sensors are correlated to the flow rate. Plastic pipes and pipe bends of different curvature radius with embedded piezoelectric ceramics of lead zirconate titanate (PZT) were used for measuring the flow rate of water. The piezoelectric sensors are placed close to the inner surface of pipe to increase their sensitivity to the pressure fluctuations of turbulent flow. Measurements of pipe vibration with accelerometers were also performed for comparison purposes. Frequency domain analyses demonstrate that the response of the piezoelectric sensors is mainly related to the pressure fluctuation of turbulent flow. Preliminary results of tests with straight acrylic pipes and 90 degrees pipe bends made of polyvinyl chloride (PVC) demonstrate the effectiveness of the proposed technique. An interesting sensing performance to flow was observed for the PZT sensors installed in bends of small curvature radius. The disturbances to flow generate high pressure fluctuations in short radius bends, consequently improving the sensitivity to flow rate of the PZT sensors. Volumetric flow rates lower than 0.1 l/s were detected using a 90 degrees bend of r/d = 0.5, with inside diameter d = 21 mm and integrated PZT sensors. As the pressure fluctuation is responsible for the pipe bend vibration, the sensitivity to flow rate of the accelerometers was also significantly improved.
机译:用于测量本工作中提出的液体流量的原始非侵入性方法依赖于压电传感器嵌入管道或管道弯曲的能力以检测湍流流动的压力波动。随着压力波动与流速直接相关,压电传感器的电响应与流速相关。使用铅锆酯钛酸铅(PZT)的嵌入式压电陶瓷的塑料管和管道弯曲用于测量水的流速。压电传感器靠近管道的内表面,以提高它们对湍流流动的压力波动的敏感性。还进行了加速度计的管道振动的测量以进行比较目的。频域分析表明,压电传感器的响应主要与湍流的压力波动相关。用直丙烯酸管和90度管弯曲的测试初步结果和由聚氯乙烯(PVC)制成的90度管弯曲证明了所提出的技术的有效性。对于安装在小曲率半径弯曲的PZT传感器,观察到流动的有趣的感应性能。流动的扰动产生短半径弯曲的高压波动,从而提高了对PZT传感器的流速的灵敏度。使用90度弯曲的R / D = 0.5检测到低于0.1L / s的体积流速,内径D = 21mm和集成的PZT传感器。随着压力波动负责管弯振动,加速度计的流速的灵敏度也显着提高。

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