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Temperature-dependent characterization of optical fibres for distributed temperature sensing in hot geothermal wells

机译:地热井中分布式温度传感用光纤的温度相关特性

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摘要

This study was performed in order to select a proper fibre for the application of a distributed temperature sensing system within a hot geothermal well in Iceland. Commercially available high temperature graded index fibres have been tested under in situ temperature conditions. Experiments have been performed with four different polyimide-coated fibres, a fibre with an aluminium coating and a fibre with a gold coating. To select a fibre, the relationship between attenuation, temperature and time has been analysed together with SEM micrographs. Based on these experiments, polyimide fibres have been chosen for utilization. Further tests in ambient and inert atmosphere have been conducted with two polyimide-coated fibres to set an operating temperature limit for these fibres. SEM micrographs, together with coating colour changes have been used to characterize the high temperature performance of the fibres. A novel cable design has been developed, a deployment strategy has been worked out, and a suitable well for deployment has been selected.
机译:进行这项研究的目的是为冰岛热地热井中的分布式温度传感系统选择合适的光纤。市售的高温渐变折射率纤维已经在原位温度条件下进行了测试。已经用四种不同的聚酰亚胺涂覆的纤维,具有铝涂层的纤维和具有金涂层的纤维进行了实验。为了选择光纤,已将衰减,温度和时间之间的关系与SEM显微照片一起进行了分析。基于这些实验,已选择使用聚酰亚胺纤维。已经用两种聚酰亚胺涂层的纤维在环境和惰性气氛中进行了进一步的测试,以设定这些纤维的工作温度极限。 SEM显微照片以及涂层的颜色变化已被用来表征纤维的高温性能。已经开发出新颖的电缆设计,制定了部署策略,并选择了适合部署的井。

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