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A micromachined thermoelectric sensor for natural gas analysis: Thermal model and experimental results

机译:用于天然气分析的微机械热电传感器:热模型和实验结果

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摘要

Natural gas may show significant changes in its chemical composition depending on its origin. Typically, natural gas analysis is carried out using process gas chromatography. However, other methods based on the evaluation of physical properties have recently been reported.rnThermal conductivity sensors are currently used in the analysis of binary mixtures of dissimilar gases. In contrast, natural gas is a complex mixture of mainly hydrocarbons, plus other residual gases as carbon dioxide and nitrogen. In this work, the response of a micromachined sensor integrating a heater and a thermopile is studied, regarding its potential use for natural gas analysis. A finite element thermal model of the device is described, and thermal operation simulations as well as a preliminary sensitivity analysis are reported. Experimental data has been collected and compared with simulated data, showing very good agreement. Results show that small variations in the gas mixture composition can be clearly detected. The sensor appears as a good candidate to be included in low-cost natural gas property analysis and quality control systems.
机译:根据其来源,天然气的化学组成可能会发生重大变化。通常,使用工艺气相色谱法进行天然气分析。但是,最近还报道了其他基于物理性质评估的方法。导热系数传感器目前用于分析异种气体的二元混合物。相反,天然气是主要由碳氢化合物和其他残留气体(如二氧化碳和氮气)组成的复杂混合物。在这项工作中,研究了集成加热器和热电堆的微机械传感器的响应,并探讨了其在天然气分析中的潜在用途。描述了该器件的有限元热模型,并报告了热运行仿真以及初步的灵敏度分析。收集了实验数据并将其与模拟数据进行比较,显示出很好的一致性。结果表明,可以清楚地检测出气体混合物成分的微小变化。该传感器是低成本天然气属性分析和质量控制系统中的理想选择。

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