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A spherical-structure based fiber sensor for simultaneous measurement of ammonia gas concentration and temperature

机译:基于球形结构的光纤传感器,用于同时测量氨气浓度和温度

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A novel fiber sensor for simultaneous measurement of ammonia gas concentration and temperature is proposed. The sensor is fabricated from two sections of single-mode fiber which are cleaved and then a fusion splicer and which is then used to fabricate spherically shaped structures at the end facets. The fusion arc is used to soften the glass which naturally assumes a spherical shape due to surface tension. A short section of multimode fiber is then fusion spliced with the two spherical-shaped ends of the single mode fibers so both the core modes and the cladding modes of the multimode fiber are excited to create two kinds of interference dips: One is created by core modes only which is not sensitive to ammonia gas since the core is isolated by the cladding so the effective refractive index of the core does not change when the refractive index of the environment changes, The other dip is created by the coupling of the core mode and cladding mod, which with a suitable coating is sensitive to ammonia gas. Silica sol-gel was prepared and coated on the fiber surface as a sensing layer for detecting ammonia gas concentration. The experimental results show that the two dips have linear wavelength shift responses but with different sensitivities to ammonia gas concentration (5.03×10~(-4)nm/ppm for dip1 and -2.5×10~(-5)nm/ppm for dip2) and temperature (0.0067 nm/°C for dip1 and 0.0149 nm/°C for dip2. By constructing a wavelength shifts matrix for the two dips vs. ammonia gas concentration and temperature, both the ammonia gas concentration and temperature can be measured simultaneously.
机译:提出了一种用于同时测量氨气浓度和温度的新型纤维传感器。传感器由两个部分的单模光纤制成,其被切割,然后是熔接器,然后用于在端面处制造球形结构。熔接电弧用于软化自然承担由于表面张力引起的球形的玻璃。然后,一条多模光纤的融合用单模纤维的两个球形端部拼接,所以核心模式和多模光纤的包层模型都很兴奋,创建两种干扰点:一个是由核心创建的由于核心被包层隔离,因此仅对氨气不敏感的模式,因此当环境变化的折射率变化时,核心的有效折射率不会改变,因此通过核心模式的耦合产生另一个倾角具有合适涂层的包层MOD对氨气敏感。制备二氧化硅溶胶 - 凝胶并涂覆在纤维表面上,作为检测氨气浓度的感测层。实验结果表明,两次浸渍具有线性波长换档响应,但氨气浓度不同(5.03×10〜(-4)Nm / ppm为DIP2的氨气浓度(5.03×10〜(-4)nm / ppm,DIP2 )和DIP2的温度(0.0067nm /℃和0.0149nm /℃/℃/℃。通过构造两种浸渍与氨气浓度和温度的波长移矩阵,可以同时测量氨气浓度和温度。

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