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首页> 外文期刊>The Journal of the Acoustical Society of America >Exploring interaction effects in two-component gas mixtures using orthogonal signal correction of ultrasound pulses
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Exploring interaction effects in two-component gas mixtures using orthogonal signal correction of ultrasound pulses

机译:使用超声脉冲的正交信号校正探索两组分气体混合物中的相互作用效应

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摘要

Within Sweden and the EU, an increased use of biogas gas and natural gas is encouraged to decrease emission of carbon dioxide. To support more effective manufacturing, distribution, and consumption of energy gases, new methods for the measurement of the calorimetric value or the gas composition are needed. This paper presents a method to extract and visualize variations in ultrasound pulse shape, caused by interaction effects between the constituents of a two-component gas mixture. The method is based on a combination of principal component analysis and orthogonal signal correction. Pulse-echo ultrasound experiments on mixtures of oxygen and ethane in the concentration range from 20% to 80% ethane show that the extracted information could be correlated with the molar fraction of ethane in the mixture. © 2005 Acoustical Society of America.
机译:在瑞典和欧盟内部,鼓励增加使用沼气和天然气以减少二氧化碳的排放。为了支持更有效地制造,分配和消耗能源气体,需要一种用于量热值或气体成分测量的新方法。本文提出了一种提取和可视化超声脉冲形状变化的方法,该变化是由两组分气体混合物的成分之间的相互作用引起的。该方法基于主成分分析和正交信号校正的组合。在浓度范围为20%到80%的乙烷中的氧气和乙烷混合物的脉冲回波超声实验表明,提取的信息可能与混合物中乙烷的摩尔分数相关。 &复制; 2005年美国声学学会。

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