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Transmitted Intensity Variations in a Plastic-Clad Silica Optical Fiber by Exposing to Gasoline Octane Numbers 87 and 92 at Different Temperatures

机译:暴露于汽油辛烷值87和92的塑料包覆石英光纤在不同温度下的透射强度变化

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We show in this paper the performance of transmitted light through a plastic clad (polymer) optical fiber, caused by optic fiber contact with commercial gasoline at different temperature influences. Our experimental setup is based in the methodology of the evanescent field absorption and the changes of the refractive index. The selected spectrum range studied is from 1100 to 1800 nanometers (nm) with temperature variation range from 5 to 50℃. We found the intensity transmitted increases in the 1500 to 1550 nm when the optical fiber is exposed to gasoline octane numbers 87 and 92, respectively. It is also found too that in 1200 nm the transmittance variation on the fiber due to temperature changes is negligible, compared with the hydrocarbon influence. This result let us know that 1200 nm wavelength can be used for a leak hydrocarbon sensor.
机译:我们在本文中展示了由塑料包覆(聚合物)光纤传输的光的性能,这是由光纤在不同温度影响下与商用汽油接触引起的。我们的实验装置基于van逝场吸收和折射率变化的方法。研究的选定光谱范围是1100至1800纳米(nm),温度变化范围是5至50℃。我们发现,当光纤分别暴露于汽油辛烷值87和92时,透射强度在1500至1550 nm之间增加。还发现与碳氢化合物的影响相比,在1200 nm处由于温度变化而导致的光纤透射率变化可以忽略不计。这个结果让我们知道泄漏碳氢化合物传感器可以使用1200 nm波长。

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