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Underwater pressure measurement using fibre optic Extrinsic Fabry Perot Interferometric (EFPI) Sensors

机译:使用光纤法布里珀罗干涉仪(EFPI)传感器进行水下压力测量

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A fibre optic extrinsic Fabry Perot Interferometer (EFPI) sensor is developed for monitoring pressure in the underwater and sub-seabed under simulated conditions. The sensor is robust in design and is fabricated entirely from Silica glass. The EFPI is formed at the tip of the fibre, where the single mode is spliced to a 200μm capillary, sealed by a 200μm Multimode, which forms the diaphragm. The diaphragm thickness is reduced by polishing and etching with hydrofluoric (HF) acid to about 2-3 urn for a high sensitivity. The thickness of the diaphragm is monitored online during polishing and HF etching. The spectrum of the fibre optic sensor (FOS) is interrogated using a broad band optical light source and an optical spectrometer. The sensitivity of the sensor achieved is 0.6cmH_2O, excellent for small depth-changes. Experimental measurements with saturated salt water and chlorophyll pigmentation of different standards were tested, to simulate the sub-sea conditions where a stability of 0.7cmH_2O was reached with a drift of less than 10% under the simulated conditions.
机译:开发了一种光纤外在法布里珀罗干涉仪(EFPI)传感器,用于在模拟条件下监控水下和海底压力。该传感器设计坚固,完全由二氧化硅玻璃制成。 EFPI形成在光纤的尖端,单模连接到200μm毛细管上,并由200μm多模密封,从而形成了隔膜。通过使用氢氟酸(HF)进行抛光和蚀刻,可将隔膜的厚度减小至约2-3 um,以实现高灵敏度。膜片的厚度在抛光和HF蚀刻过程中在线监测。使用宽带光源和光谱仪对光纤传感器(FOS)的光谱进行询问。传感器的灵敏度为0.6cmH_2O,非常适合小深度变化。测试了用饱和盐水和不同标准品的叶绿素色素沉着进行的实验测量,以模拟海底条件,其中在模拟条件下达到0.7cmH_2O的稳定性且漂移小于10%。

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