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

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          Abstract

          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 CO 2-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.

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          Most cited references37

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          Introduction to statistical quality control

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            Fiber-optic liquid-level sensor using a long-period grating.

            A liquid-level sensor based on the refractive-index sensitivity of long-period fiber-optic gratings is proposed and demonstrated. The form of the transmission spectrum of the long-period grating is dependent on the fraction of the length of the long-period grating that is surrounded by the liquid. The sensor shows a large linear range, with sensitivity of 4.8% change in transmission per millimeter, for a long-period grating with a length of 40 mm and a periodicity of 400mu;m .
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              In-fiber reflection mode interferometer based on a long-period grating for external refractive-index measurement.

              We present two novel schemes for refractometry based on a long-period fiber grating- (LPG-) based Michelson interferometer. These schemes are designed to overcome the measurement dependence of previously demonstrated LPG-based refractometry on the immersion depth. The first utilizes an unshielded LPG and the second, a shielded one. Both schemes were tested over a certain refractive-index range, and the measurement of glucose concentration in water was experimentally demonstrated. In addition, the temperature sensitivity of the two schemes is discussed.
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                Author and article information

                Journal
                Sensors (Basel)
                Sensors (Basel)
                Sensors (Basel, Switzerland)
                Molecular Diversity Preservation International (MDPI)
                1424-8220
                2012
                10 April 2012
                : 12
                : 4
                : 4578-4593
                Affiliations
                Department of Construction Engineering, National Yunlin University of Science and Technology, Douliou 64002, Taiwan; E-Mail: g9916703@ 123456yuntech.edu.tw
                Author notes
                [* ]Authors to whom correspondence should be addressed; E-Mail: wangjn@ 123456yuntech.edu.tw ; Tel.: +886-5-534-2601 ext. 4723; Fax: +886-5-531-2049.
                Article
                sensors-12-04578
                10.3390/s120404578
                3355428
                22666046
                fa569754-f0e2-431b-9232-507527fef55a
                © 2012 by the authors; licensee MDPI, Basel, Switzerland.

                This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution license ( http://creativecommons.org/licenses/by/3.0/).

                History
                : 30 December 2011
                : 2 April 2012
                : 3 April 2012
                Categories
                Article

                Biomedical engineering
                liquid level,sensor,long-period fiber grating (lpfg),shewhart control chart,refractive index (ri),wavelength shift,fluid-flow velocity

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