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Implementation of Ultrasonic Sensing for High Resolution Measurement of Binary Gas Mixture Fractions

机译:超声波传感技术用于二元混合气组分的高分辨率测量

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摘要

We describe an ultrasonic instrument for continuous real-time analysis of the fractional mixture of a binary gas system. The instrument is particularly well suited to measurement of leaks of a high molecular weight gas into a system that is nominally composed of a single gas. Sensitivity < 5 × 10−5 is demonstrated to leaks of octaflouropropane (C3F8) coolant into nitrogen during a long duration (18 month) continuous study. The sensitivity of the described measurement system is shown to depend on the difference in molecular masses of the two gases in the mixture. The impact of temperature and pressure variances on the accuracy of the measurement is analysed. Practical considerations for the implementation and deployment of long term, in situ ultrasonic leak detection systems are also described. Although development of the described systems was motivated by the requirements of an evaporative fluorocarbon cooling system, the instrument is applicable to the detection of leaks of many other gases and to processes requiring continuous knowledge of particular binary gas mixture fractions.
机译:我们描述了一种用于连续实时分析二元气体系统的混合部分的超声仪器。该仪器特别适合测量高分子量气体泄漏到名义上由单一气体组成的系统中。在长时间(18个月)的连续研究中,表明<8×10 −5 的敏感性导致八氟丙烷(C3F8)冷却剂泄漏到氮气中。所描述的测量系统的灵敏度显示为取决于混合物中两种气体的分子质量差异。分析了温度和压力变化对测量精度的影响。还描述了实施和部署长期原位超声泄漏检测系统的实际考虑。尽管所描述的系统的开发是由蒸发碳氟化合物冷却系统的要求推动的,但该仪器可用于检测许多其他气体的泄漏以及需要连续了解特定二元气体混合物馏分的过程。

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