Sur Ritobrata, Boucher Thomas J, Renfro Michael W, Cetegen Baki M
Department of Mechanical Engineering, 191 Auditorium Road, Unit-3139, University of Connecticut, Storrs, Connecticut 06269, USA.
Appl Opt. 2010 Jan 1;49(1):61-70. doi: 10.1364/AO.49.000061.
A diode laser sensor was developed for partial pressure and temperature measurements using a single water vapor transition. The Lorentzian half-width and line intensity of the transition were calibrated for conditions relevant to proton exchange membrane (PEM) fuel cell operation. Comparison of measured and simulated harmonics from wavelength-modulation spectroscopy is shown to yield accuracy of +/-2.5% in water vapor partial pressure and +/-3 degrees C in temperature despite the use of a single transition over a narrow range of temperatures. Collisional half-widths in air or hydrogen are measured so that calibrations can be applied to both anode and cathode channels of a PEM fuel cell. An in situ calibration of the nonlinear impact of modulation on laser wavelength is presented and used to improve the accuracy of the numerical simulation of the signal.
开发了一种二极管激光传感器,用于利用单一水蒸气跃迁进行分压和温度测量。针对与质子交换膜(PEM)燃料电池运行相关的条件,对该跃迁的洛伦兹半高宽和谱线强度进行了校准。结果表明,尽管在较窄的温度范围内使用单一跃迁,但通过波长调制光谱法测量和模拟谐波的比较,在水蒸气分压方面的精度可达±2.5%,在温度方面的精度可达±3℃。测量了空气或氢气中的碰撞半高宽,以便校准可应用于PEM燃料电池的阳极和阴极通道。提出了调制对激光波长的非线性影响的原位校准方法,并用于提高信号数值模拟的精度。