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Ormosil Coating-Based Oxygen Sensor for Aircraft Ullage

机译:基于Ormosil涂层的航空器氧气传感器

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Significant emphasis has been placed on fuel tank safety since the TWA flight 800 accident in July 1996. Upon investigation the National Transportation Safety Board (NTSB) determined that the probable cause of the accident was an explosion of the center wing tank (CWT), resulting from ignition of the flammable fuel/air mixture in the tank. The Federal Aviation Administration (FAA) has focused research to support two primary methods of fuel tank protection -- ground-based and on-board -- both involving fuel tank inerting. Ground-based fuel tank inerting involves some combination of fuel scrubbing and ullage washing with Nitrogen Enriched Air (NEA) while the airplane is on the ground (applicable to all or most operating transport airplanes). On-board fuel tank inerting involves ullage washing with OBIGGS (on-board inert gas generating system), a system that generates NEA during aircraft operations. An OBIGGS generally encompasses an air separation module (ASM) to generate NEA, a compressor, storage tanks, and a distribution system. Essential to the utilization of OBIGGS is an oxygen sensor that can operate inside the aircraft's ullage and assess the effectiveness of the inerting systems. OBIGGS can function economically by precisely knowing when to start and when to stop. Toward achieving these goals, InnoSense LLC is developing an all-optical fuel tank ullage sensor (FTUS) prototype for detecting oxygen in the ullage of an aircraft fuel tank in flight conditions. Data would be presented to show response time and wide dynamic range of the sensor in simulated flight conditions and fuel tank environment.
机译:自从1996年7月TWA 800航班事故以来,燃油箱的安全一直受到高度重视。经调查,美国国家运输安全委员会(NTSB)确定,事故的可能原因是中央机翼油箱(CWT)爆炸,导致点燃油箱中的易燃燃料/空气混合物。美国联邦航空管理局(FAA)进行了重点研究,以支持燃油箱保护的两种主要方法-地面和机载-均涉及燃油箱惰化。地面燃油箱惰化包括在飞机处于地面上时(适用于所有或大多数运行中的运输飞机)用富氮空气(NEA)进行的燃料洗涤和残渣洗涤的某种组合。机载燃油箱惰化包括使用OBIGGS(机载惰性气体产生系统)进行残量洗涤,该系统会在飞机运行过程中产生NEA。 OBIGGS通常包含用于产生NEA的空气分离模块(ASM),压缩机,储罐和分配系统。利用OBIGGS必不可少的是一个氧传感器,该氧传感器可以在飞机缺损内部运行并评估惰化系统的有效性。 OBIGGS可以准确地知道何时启动和何时停止,从而在经济上发挥作用。为了实现这些目标,InnoSense LLC正在开发一种全光学燃料箱缺量传感器(FTUS)原型,用于检测飞行条件下飞机燃料箱缺量中的氧气。将提供数据以显示传感器在模拟飞行条件和油箱环境中的响应时间和宽动态范围。

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