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Wavelength modulation diode laser absorption spectroscopy for high-pressure gas sensing

机译:用于高压气体传感的波长调制二极管激光吸收光谱

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摘要

A general model for 1f-normalized wavelength modulation absorption spectroscopy with nf detection (i.e., WMS-nf) is presented that considers the performance of injection-current-tuned diode lasers and the reflective interference produced by other optical components on the line-of-sight (LOS) transmission intensity. This model explores the optimization of sensitive detection of optical absorption by species with structured spectra at elevated pressures. Predictions have been validated by comparison with measurements of the 1f-normalized WMS-nf (for n = 2-6) lineshape of the R(11) transition in the 1st overtone band of CO near 2.3 μm at four different pressures ranging from 5 to 20 atm, all at room temperature. The CO mole fractions measured by 1f-normalized WMS-2f, 3f and 4/ techniques agree with calibrated mixtures within 2.0 %. At conditions where absorption features are significantly broadened and large modulation depths are required, uncertainties in the WMS background signals due to reflective interference in the optical path can produce significant error in gas mole fraction measurements by 1f-normalized WMS-2f. However, such potential errors can be greatly reduced by using the higher harmonics, i.e., 1f-normalized WMS-nf with n > 2. In addition, less interference from pressure-broadened neighboring transitions has been observed for WMS with higher harmonics than for WMS-2f
机译:提出了具有nf检测功能的1f归一化波长调制吸收光谱的通用模型(即WMS-nf),该模型考虑了注入电流调谐二极管激光器的性能以及由其他光学组件在测量线上产生的反射干扰。视线(LOS)传输强度。该模型探索了在高压下对具有结构化光谱的物种进行光吸收灵敏检测的优化。通过在4至5到4的不同压力下,对CO的第一个泛音带中的R(11)跃迁的1f归一化WMS-nf(对于n = 2-6)线形进行测量,已验证了这一预测,接近2.3μm 20 atm,均在室温下进行。通过1f归一化WMS-2f,3f和4 /技术测量的CO摩尔分数与2.0%以内的校准混合物一致。在吸收特征明显变宽且需要大调制深度的条件下,由于1f归一化WMS-2f导致的气体摩尔分数测量中,由于光路中的反射干扰而导致WMS背景信号的不确定性会产生显着误差。但是,通过使用更高的谐波,即n> 2的1f归一化WMS-nf,可以大大减少此类潜在误差。此外,与谐波相比,对于具有更高谐波的WMS,观察到来自压力扩展的相邻过渡的干扰更少-2楼

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  • 来源
    《Applied physics》 |2013年第4期|497-508|共12页
  • 作者单位

    Department of Mechanical Engineering, High Temperature Gasdynamics Laboratory, Stanford University,Stanford, CA 94035, USA;

    Department of Mechanical Engineering, High Temperature Gasdynamics Laboratory, Stanford University,Stanford, CA 94035, USA;

    Department of Mechanical Engineering, High Temperature Gasdynamics Laboratory, Stanford University,Stanford, CA 94035, USA;

    Department of Mechanical Engineering, High Temperature Gasdynamics Laboratory, Stanford University,Stanford, CA 94035, USA;

    Department of Mechanical Engineering, High Temperature Gasdynamics Laboratory, Stanford University,Stanford, CA 94035, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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