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New distributed optical sensor for detection and localization of liquid hydrocarbons - Part II: Optimization of the elastomer performance

机译:用于检测和定位液态烃的新型分布式光学传感器-第二部分:弹性体性能的优化

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This paper reports the second part of a work that introduces and describes the testing of a new optical distributed sensor. This new sensor is capable of detecting and locating liquid hydrocarbon leaks on long pipelines. In the first part of this work a number of advantages of this new design were presented. The present part deals specifically with the influence of elastomer preparation on the performance of this sensor, and in a more general way, with the performance of any distributed optical sensor based on optical fiber bending by a swelled elastomer. The results show that the optimal sensor response is obtained when the osmotic pressure developed by the elastomer due to hydrocarbon absorption and the swelling of the elastomer are balanced. Therefore, by modifying the cross-linking density of the elastomer, it is possible to optimize the sensor performance, by finding the condition where the pressure against the fiber is large enough to surpass the resistance of the optical fiber to be bended and, at the same time, the elastomer absorbs enough solvent to bend the fiber at an optimum level. (C) 2003 Elsevier B.V. All rights reserved. [References: 26]
机译:本文报告了工作的第二部分,该工作介绍并描述了新型光学分布式传感器的测试。这种新型传感器能够检测和定位长管道上的液态烃泄漏。在这项工作的第一部分中,介绍了这种新设计的许多优点。本部分专门处理弹性体制备对该传感器性能的影响,并以更一般的方式处理任何基于溶胀的弹性体使光纤弯曲的分布式光学传感器的性能。结果表明,当由碳氢化合物吸收和弹性体膨胀引起的弹性体渗透压平衡时,可获得最佳传感器响应。因此,通过改变弹性体的交联密度,可以通过发现对纤维的压力足够大以超过要弯曲的光纤的电阻的条件,从而优化传感器性能。同时,弹性体吸收了足够的溶剂以使纤维弯曲到最佳水平。 (C)2003 Elsevier B.V.保留所有权利。 [参考:26]

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