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首页> 外文期刊>BHM Berg und Huttenmannische Monatshefte >Monitoring Physical Fluid Properties Using a Piezoelectric Tuning Fork Resonant Sensor
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Monitoring Physical Fluid Properties Using a Piezoelectric Tuning Fork Resonant Sensor

机译:使用压电音叉谐振传感器监测物理流体特性

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摘要

For fluid analysis applications, such as oil condition monitoring, fuel quality, or gas concentration measurements, resonant sensors deliver an outstanding performance when signal processing is optimized and the fluid-mechanical model of the electromechanical resonator is suitable and accurate for the particular resonator. By combining recent advancements, significant improvements in accuracy, measurement speed, dynamic range, and suppression of cross-sensitivities could be achieved. These features enable the development of new solutions for a variety of measurement issues in industry and bio technology. In this contribution the performance of a highly universal evaluation system is demonstrated using a commercially available quartz crystal tuning fork resonator as sensing element for liquid viscosity and mass density. The obtained results are quantified with respect to an accurate lab bench viscosity and mass density meter. A significant advantage of this system is that it operates reliably and accurately even for strongly damped resonators. Therefore, the sensor elements can be used in a larger viscosity range than with alternative evaluation methods.
机译:对于流体分析应用(例如油况监测,燃料质量或气体浓度测量),当优化信号处理并且机电谐振器的流体力学模型适用于特定谐振器时,谐振传感器可提供出色的性能。通过结合最近的进展,可以实现准确性,测量速度,动态范围和交叉敏感度抑制的显着改善。这些功能使我们能够针对工业和生物技术中的各种测量问题开发新的解决方案。在这一贡献中,使用市售的石英音叉谐振器作为液体粘度和质量密度的传感元件,展示了高度通用的评估系统的性能。相对于精确的实验室工作台粘度和质量密度计,对获得的结果进行了量化。该系统的显着优点是,即使对于强阻尼的谐振器,它也可以可靠,准确地运行。因此,与其他评估方法相比,可以在更大的粘度范围内使用传感器元件。

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