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STTR Phase II: Active Fiber Optic Sensor Array for Cryogenic Fuel Monitoring and Management

STTR Phase II: Active Fiber Optic Sensor Array for Cryogenic Fuel Monitoring and Management
STTR 第二阶段:用于低温燃料监测和管理的有源光纤传感器阵列
批准号:
0956816
负责人:
Philip Swinehart
金额:
$49.94万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2010
资助国家:
美国
项目状态:
已结题
起止时间:
2010-03-01 至 2012-06-30
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项目摘要

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中文摘要
翻译
该小企业技术转让(STTR)第二阶段项目将开发一种多功能有源光纤布拉格光栅传感器技术,用于监测和管理液氢和液化天然气等低温燃料。该技术使用光纤内的光来主动调节传感器温度,这将大大提高光纤传感器在低温环境中的响应度和灵敏度。通过在光纤布拉格光栅传感器上涂覆功能薄膜,可以在低温下同时测量液体燃料液位、空间分布、氢浓度和温度。该计划中开发的有源传感器不受电磁干扰的影响,可以在单根光纤中进行多路复用,从而为地面和太空中的低温燃料管理提供单光纤和单光纤馈通解决方案。该项目更广泛的影响/商业潜力将是开发谨慎的传感技术和系统,以提高液氢和液化天然气燃料使用的安全性和可靠性。作为未来几十年为美国经济提供动力的主要替代燃料,它们具有很高的经济价值,需要准确可靠的计量和管理。拥有一个灵活的多用途系统,可以绝对放心地安装,以监测和管理这些燃料,以及安装系统的健康状况,将对接受这些挥发性燃料作为安全的替代能源产生重大影响。在单根光纤上多路复用多个传感器的能力将使得能够更安全和更经济地穿透低温壁,并且光纤的低腐蚀电位将使得传感器能够沿着地下管道沿着放置。相同的基本有源光纤传感器技术具有扩展到燃料流量和其他经济实用功能的潜力。
英文摘要
This Small Business Technology Transfer (STTR) Phase II project will develop a multi-functional active fiber Bragg grating sensor technology for the monitoring and management of cryogenic fuel such as liquid hydrogen and liquefied natural gas. The proposed technology uses in-fiber light to actively adjust sensor temperature, which will drastically improve responsivity and sensitivity of fiber sensors in the cryogenic environment. By coating fiber Bragg grating sensors with functional films, liquid fuel levels, spatial distribution, hydrogen concentration, and temperature can be simultaneously measured at cryogenic temperatures. Active sensors to be developed in this program are immune to electromagnetic interference and can be multiplexed in a single fiber, which allows a one-fiber and one-fiber-feedthrough solution for the cryogenic fuel management on the ground and in space. The broader impact/commercial potential of this project will be the development of a prudent sensing technology and system to improve the safety and reliability of the use of both liquid hydrogen and liquefied natural gas fuels. As major alternative fuels to power the U.S. economy for decades to come, they share a high economic value that requires accurate and reliable metering and management. Having a flexible, multi-use system available that can be installed with absolute confidence to monitor and manage these fuels, as well as the health of installed systems, will have a major impact on the acceptance of these volatile fuels as safe alternative energy sources. The ability to multiplex many sensors on a single fiber will enable safer and more economical penetrations in cryogenic walls and the low corrosion potential of the fibers will enable sensors to be placed along piping underground. The same basic active fiber sensor technology has the potential to be extended to fuel flow and other economically useful functions.
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