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A Continuous Liquid-Level Sensor for Fuel Tanks Based on Surface Plasmon Resonance

机译:基于表面等离子体共振的油箱连续液位传感器

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摘要

A standard problem in large tanks at oil refineries and petrol stations is that water and fuel usually occupy the same tank. This is undesirable and causes problems such as corrosion in the tanks. Normally, the water level in tanks is unknown, with the problems that this entails. We propose herein a method based on surface plasmon resonance (SPR) to detect in real time the interfaces in a tank which can simultaneously contain water, gasoline (or diesel) and air. The plasmonic sensor is composed of a hemispherical glass prism, a magnesium fluoride layer, and a gold layer. We have optimized the structural parameters of the sensor from the theoretical modeling of the reflectance curve. The sensor detects water-fuel and fuel-air interfaces and measures the level of each liquid in real time. This sensor is recommended for inflammable liquids because inside the tank there are no electrical or electronic signals which could cause explosions. The sensor proposed has a sensitivity of between 1.2 and 3.5 RIU−1 and a resolution of between 5.7 × 10−4 and 16.5 × 10−4 RIU.
机译:在炼油厂和加油站的大型油箱中,一个标准问题是水和燃料通常占据同一油箱。这是不希望的,并且会引起诸如罐内腐蚀的问题。通常,水箱中的水位是未知的,这会带来问题。我们在此提出一种基于表面等离振子共振(SPR)的方法,以实时检测可以同时容纳水,汽油(或柴油)和空气的储罐中的界面。等离子体传感器由半球形玻璃棱镜,氟化镁层和金层组成。我们已经根据反射率曲线的理论模型优化了传感器的结构参数。该传感器检测水-燃料和燃料-空气界面,并实时测量每种液体的液位。建议将该传感器用于易燃液体,因为在储罐内部没有会引起爆炸的电或电子信号。提出的传感器的灵敏度在1.2到3.5 RIU −1 之间,分辨率在5.7×10 −4 和16.5×10 −4 RIU。

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