Sanders S T, Wang J, Jeffries J B, Hanson R K
Appl Opt. 2001 Aug 20;40(24):4404-15. doi: 10.1364/ao.40.004404.
Line-of-sight diode-laser absorption techniques have been extended to enable temperature measurements in nonuniform-property flows. The sensing strategy for such flows exploits the broad wavelength-scanning abilities (>1.7 nm approximately 30 cm(-1)) of a vertical cavity surface-emitting laser (VCSEL) to interrogate multiple absorption transitions along a single line of sight. To demonstrate the strategy, a VCSEL-based sensor for oxygen gas temperature distributions was developed. A VCSEL beam was directed through paths containing atmospheric-pressure air with known (and relatively simple) temperature distributions in the 200-700 K range. The VCSEL was scanned over ten transitions in the R branch of the oxygen A band near 760 nm and optionally over six transitions in the P branch. Temperature distribution information can be inferred from these scans because the line strength of each probed transition has a unique temperature dependence; the measurement accuracy and resolution depend on the details of this temperature dependence and on the total number of lines scanned. The performance of the sensing strategy can be optimized and predicted theoretically. Because the sensor exhibits a fast time response (~30 ms) and can be adapted to probe a variety of species over a range of temperatures and pressures, it shows promise for industrial application.
视线二极管激光吸收技术已得到扩展,以实现对非均匀特性流中的温度测量。针对此类流动的传感策略利用了垂直腔面发射激光器(VCSEL)的宽波长扫描能力(>1.7纳米,约30厘米⁻¹),沿单一视线询问多个吸收跃迁。为了演示该策略,开发了一种基于VCSEL的氧气温度分布传感器。将VCSEL光束引导通过包含200 - 700K范围内已知(且相对简单)温度分布的大气压空气的路径。在760纳米附近的氧气A带的R支中,VCSEL在十个跃迁上进行扫描,并且可选地在P支中的六个跃迁上进行扫描。由于每个探测跃迁的谱线强度具有独特的温度依赖性,因此可以从这些扫描中推断出温度分布信息;测量精度和分辨率取决于这种温度依赖性的细节以及扫描的谱线总数。传感策略的性能可以在理论上进行优化和预测。由于该传感器具有快速的时间响应(约30毫秒),并且可以适用于在一系列温度和压力下探测多种物质,因此它在工业应用中显示出前景。