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Fiber-Optic Strain-Gage Tank Level Measurement System for Cryogenic Propellants

机译:低温推进剂的光纤应变计储罐液位测量系统

摘要

Measurement of tank level, particularly for cryogenic propellants, has proven to be a difficult problem. Current methods based on differential pressure, capacitance sensors, temperature sensors, etc.; do not provide sufficiently accurate or robust measurements, especially at run time. These methods are designed to measure tank-level, but when the fluids are in supercritical state, the liquid-gas interface disappears. Furthermore, there is a need for a non-intrusive measurement system; that is, the sensors should not require tank modifications and/or disturb the fluids. This paper describes a simple, but effective method to determine propellant mass by measuring very small deformations of the structure supporting the tank. Results of a laboratory study to validate the method, and experimental data from a deployed system are presented. A comparison with an existing differential pressure sensor shows that the strain gage system provides a much better quality signal across all regimes during an engine test. Experimental results also show that the use of fiber optic strain gages (FOSG) over classic foil strain gages extends the operation time (before the system becomes uncalibrated), and increases accuracy. Finally, a procedure is defined whereby measurements from the FOSG mounted on the tank supporting structure are compensated using measurements of a FOSG mounted on a reference plate and temperature measurements of the structure. Results describing the performance of a deployed system that measures tank level during propulsion tests are included.
机译:坦克高度的测量,特别是对于低温推进剂的坦克高度,已被证明是一个难题。基于差压,电容传感器,温度传感器等的当前方法;不能提供足够准确或可靠的测量,尤其是在运行时。这些方法旨在测量罐的液位,但是当流体处于超临界状态时,液-气界面会消失。此外,需要一种非侵入式的测量系统。也就是说,传感器不应该需要修改水箱和/或干扰流体。本文介绍了一种简单有效的方法,可通过测量支撑油箱的结构的很小的变形来确定推进剂质量。介绍了验证该方法的实验室研究结果,以及来自已部署系统的实验数据。与现有压差传感器的比较表明,应变仪系统在发动机测试期间的所有状态下均提供了质量更好的信号。实验结果还表明,在经典的箔片应变仪上使用光纤应变仪(FOSG)可以延长操作时间(在系统未经校准之前),并提高了准确性。最后,定义了一种程序,通过该程序,可以使用安装在参考板上的FOSG的测量值和该结构的温度测量值来补偿安装在罐支撑结构上的FOSG的测量值。包括描述在推进测试过程中测量油箱液位的已部署系统性能的结果。

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