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Jet-nozzle method for measuring response times of scalar sensors used in liquids and gases

机译:用于测量液体和气体中使用的标量传感器的响应时间的喷射喷嘴方法

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摘要

Response time is a central characteristic of sensors measuring solute concentrations. Knowing the response time of the sensor under realistic conditions is critically important when measuring rapid changes, e.g., oxygen concentration fluctuations for aquatic eddy covariance flux calculations. Response times therefore should be determined under conditions that are similar to those the sensor is exposed to when deployed for the actual measurements. This study introduces a new method for quantifying the response time of mini- or microsensors measuring solute concentrations in liquids and gases. The method is based on the rapid switching of the supply of two fluids with different oxygen concentration to the sensor without removing the sensor from the fluid flow. The device uses a jet nozzle moved by electromagnetic actuators, and the switching of the calibration fluids is monitored by a reference sensor with a response time<0.001 s. The functionality of the device is demonstrated for a fast oxygen optode system that consisted of a fiber minioptode connected to an oxygen meter that was read by a data logger. With the setup described here, the method permits reproducible response time measurements with a resolution of 0.01 s±0.001 s (SD, n=60). With this technique, the response time characterization of aquatic sensors can be standardized.
机译:响应时间是测量溶质浓度的传感器的中心特征。在测量快速变化时,了解传感器的响应时间在现实条件下是至关重要的,例如,水生涡流通量计算的氧浓度波动。因此,应在类似于传感器在部署实际测量时暴露于传感器的条件下确定响应时间。本研究介绍了量化测量液体和气体中溶质浓度的致响态的响应时间的新方法。该方法基于对传感器的不同氧气浓度的两个流体供应的快速切换,而不从流体流去除传感器。该装置使用由电磁致动器移动的喷嘴喷嘴,并且通过参考传感器监测校准流体的切换,响应时间<0.001秒。用于快速氧气光电系统的功能的功能,该功能由连接到由数据记录器读取的氧仪表的光纤Minioptode组成。利用此处描述的设置,该方法允许具有0.01 s±0.001 s(SD,N = 60)的分辨率的可重复响应时间测量。利用这种技术,可以标准化水生传感器的响应时间表征。

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