Harrison Christopher, Jundt Jacques
Schlumberger-Doll Research, 1 Hampshire Street, Cambridge, Massachusetts 02139, USA.
Rev Sci Instrum. 2016 Aug;87(8):085002. doi: 10.1063/1.4960173.
We describe a microfluidic Coriolis effect flowmeter that is simple to assemble, operates at elevated temperature and pressure, and can be operated with a lock-in amplifier. The sensor has a flow rate sensitivity greater than 2° of phase shift per 1 g/min of mass flow and is benchmarked with flow rates ranging from 0.05 to 2.0 g/min. The internal volume is 15 μl and uses off-the-shelf optical components to measure the tube motion. We demonstrate that fluid density can be calculated from the frequency of the resonating element with proper calibration.
我们描述了一种微流科里奥利效应流量计,它易于组装,可在高温高压下运行,并且可以与锁相放大器配合使用。该传感器的流速灵敏度大于每1克/分钟质量流量产生2°的相移,并以0.05至2.0克/分钟的流速为基准进行测试。其内部体积为15微升,并使用现成的光学组件来测量管道运动。我们证明,通过适当校准,可以根据谐振元件的频率计算流体密度。