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Temperature profiles for axially symmetrical distributions using integrated optical fiber sensing

机译:使用集成光纤传感的轴向对称分布的温度曲线

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Abstract: The temperature distributions for some hot gaseous systems are axially symmetrical. Examples include the air convected about a heated point or cylindrical source and gas discharges contained in cylindrical tubes. Such temperature distributions may be determined using an integrated optical fiber sensing technique, in which the fiber of one arm of an optical fiber interferometer passes along a chord of the hot gas system, and the measured phase shift provides an integrated temperature along the chord. By repeating this measurement for chord positions throughout the axially symmetrical temperature distribution, and carrying out an Abel transformation of the resultant data, a radial temperature profile can be determined. The integrated optical fiber sensing technique has been applied to the convected air flow above a small volume source of heat. The radial temperature profiles measured using the integrating sensor were compared with profiles obtained using an optical fiber probe sensor, a thermocouple and an unbound laser interferometer. The results reveal many advantages for the integrated optical fiber sensor in respect of precision, resolution and convenience of use. !4
机译:摘要:某些热气态系统的温度分布是轴向对称的。示例包括围绕加热点或圆柱形源对流的空气以及圆柱形管中包含的气体排放。可以使用集成光纤感测技术来确定这种温度分布,在集成光纤感测技术中,光纤干涉仪的一根臂的光纤沿热气系统的弦通过,并且所测得的相移沿弦提供了积分温度。通过在整个轴向对称温度分布上对弦位置重复进行此测量,并对所得数据进行Abel变换,可以确定径向温度曲线。集成的光纤传感技术已应用于小体积热源上方的对流气流。将使用积分传感器测量的径向温度曲线与使用光纤探头传感器,热电偶和非束缚激光干涉仪获得的曲线进行比较。结果揭示了集成光纤传感器在精度,分辨率和使用便利性方面的许多优势。 !4

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