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Long-Period Fiber Grating Sensors for the Measurement of Liquid Level and Fluid-Flow Velocity

机译:长周期光纤光栅传感器,用于测量液位和流体流速

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摘要

This paper presents the development and assessment of two types of Long Period Fiber Grating (LPFG)-based sensors including a mobile liquid level sensor and a reflective sensor for the measurement of liquid level and fluid-flow velocity. Shewhart control charts were used to assess the liquid level sensing capacity and reliability of the mobile CO2-laser engraved LPFG sensor. There were ten groups of different liquid level experiment and each group underwent ten repeated wavelength shift measurements. The results showed that all measurands were within the control limits; thus, this mobile sensor was reliable and exhibited at least 100-cm liquid level measurement capacity. In addition, a reflective sensor consisting of five LPFGs in series with a reflective end has been developed to evaluate the liquid level and fluid-flow velocity. These five LPFGs were fabricated by the electrical arc discharge method and the reflective end was coated with silver by Tollen's test. After each liquid level experiment was performed five times, the average values of the resonance wavelength shifts for LPFG Nos. 1–5 were in the range of 1.35–9.14 nm. The experimental findings showed that the reflective sensor could be used to automatically monitor five fixed liquid levels. This reflective sensor also exhibited at least 100-cm liquid level measurement capacity. The mechanism of the fluid-flow velocity sensor was based on analyzing the relationship among the optical power, time, and the LPFG's length. There were two types of fluid-flow velocity measurements: inflow and drainage processes. The differences between the LPFG-based fluid-flow velocities and the measured average fluid-flow velocities were found in the range of 8.7–12.6%. For the first time to our knowledge, we have demonstrated the feasibility of liquid level and fluid-flow velocity sensing with a reflective LPFG-based sensor without modifying LPFGs or coating chemical compounds.
机译:本文介绍了两种基于长周期光纤光栅(LPFG)的传感器的开发和评估,其中包括用于测量液位和流体流速的移动液位传感器和反射传感器。 Shewhart控制图用于评估液位感测能力和移动式CO2激光雕刻LPFG传感器的可靠性。有十组不同的液位实验,每组进行十次重复的波长偏移测量。结果表明,所有被测物均在控制范围内。因此,该移动传感器可靠,并具有至少100 cm的液位测量能力。另外,已经开发了由五个LPFG与一个反射端串联组成的反射传感器,用于评估液位和流体流速。这五个LPFG通过电弧放电方法制造,反射端通过Tollen's测试镀银。在每个液位实验进行五次后,LPFG编号1–5的共振波长位移的平均值在1.35–9.14 nm的范围内。实验结果表明,反射传感器可用于自动监测五个固定液位。该反射式传感器还具有至少100厘米的液位测量能力。流体流速传感器的机理是基于分析光功率,时间和LPFG长度之间的关系。流体流速测量有两种类型:流入和排出过程。基于LPFG的流体流速与测得的平均流体流速之间的差异被发现在8.7-12.6%的范围内。据我们所知,这是我们第一次证明了使用基于LPFG的反射式传感器进行液位和流体流速传感而无需修改LPFG或涂覆化合物的可行性。

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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