首页> 外文会议>Fiber Optic Sensor and Applications V; Proceedings of SPIE-The International Society for Optical Engineering; vol.6770 >Development of an FBG-Based Low Temperature Measurement System for Cargo Containment of LNG Tankers
【24h】

Development of an FBG-Based Low Temperature Measurement System for Cargo Containment of LNG Tankers

机译:基于FBG的LNG液货船货物围护低温测量系统的开发

获取原文
获取原文并翻译 | 示例

摘要

Given the growing demand for oil and natural gas to meet the world's energy needs, there is nowadays renewed interest in the use of liquefied natural gas (LNG) systems. For LNG to remain in its liquid phase, the gas has to be kept at cryogenic temperatures ( < 160℃). And, as part of the LNG supply process, it becomes necessary to transport it using massive carrier tankers with cargo hulls operating at low temperatures and using special insulating double-wall construction. The safe and reliable storage and transportation of LNG products calls for low temperature monitoring of said containers to detect the onset of any potential leaks and possible thermal insulation degradation. Because of the hazardous nature of this cargo, only intrinsically-safe, explosion proof devices can be used. Optical fiber sensors-such as fiber Bragg gratings-are ideal for this application given their dielectric nature and multi-point sensing telemetry capability.In this paper, we describe the development of an on-line, multi-point FBG-based low temperature monitoring system based on a network of specially packaged FBG temperature and strain sensors mounted at critical locations within the inner hull, cofferdam and secondary barriers of a LNG carrier tanker. Given the stringent cryogenic operating temperature conditions, pertinent FBG designs, coatings and packaging approaches were formulated along with adequate installation techniques and integration of the interrogating FBG electronics into the tanker's overall SCAD A monitoring system. FBG temperature sensors were demonstrated to be stable and sensitive over the 80-480K range. Stability is ± 0.25K or better with repeated calibrations, and long term stability at 480K is ~0.2mK/hour.
机译:鉴于对满足世界能源需求的石油和天然气的需求不断增长,如今人们对使用液化天然气(LNG)系统重新产生了兴趣。为了使LNG保持液相状态,必须将气体保持在低温(<160℃)下。并且,作为液化天然气供应过程的一部分,有必要使用带有低温运行的货船的大型运输船和特殊的绝缘双层结构来运输。 LNG产品的安全可靠的存储和运输要求对所述容器进行低温监控,以检测任何潜在泄漏的发生和可能的隔热性能下降。由于该货物的危险性,只能使用本质安全的防爆设备。鉴于光纤传感器(如布拉格光栅)的介电特性和多点传感遥测功能,它们是该应用的理想选择。在本文中,我们描述了基于在线,多点FBG的低温监测的发展该系统基于特殊包装的FBG温度和应变传感器网络,该传感器安装在LNG液货船的内壳,围堰和次要屏障内的关键位置。考虑到严苛的低温操作温度条件,制定了相关的FBG设计,涂层和包装方法,以及适当的安装技术,并将讯问的FBG电子设备集成到油轮的整个SCAD A监控系统中。事实证明,FBG温度传感器在80-480K范围内稳定且敏感。反复校准后,稳定性为±0.25K或更高,而在480K下的长期稳定性为〜0.2mK /小时。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号