Rothamer David A, Hanson Ronald K
Mechanical Engineering Department, University of Wisconsin-Madison, 1500 Engineering Drive, Madison, Wisconsin 53706, USA.
Appl Opt. 2010 Nov 20;49(33):6436-47. doi: 10.1364/AO.49.006436.
A new diagnostic technique for measurements of temperature and pressure distribution in gaseous flows has been developed. The technique, based on infrared planar laser-induced fluorescence (IR-PLIF), is applicable to all IR-active species. A simple two-line excitation approach is used for measurements of temperature, while pressure measurements utilize online excitation on one rotational line and offline excitation on another. A demonstration of the technique in a supersonic underexpanded jet of 30% CO2 and 70% N2 was performed, and the results are, to the best of our knowledge, the first demonstration of temperature and pressure imaging using IR-PLIF. The developed diagnostic shows potential for single-shot two-dimensional measurements of temperature and pressure in gaseous flows.
一种用于测量气流中温度和压力分布的新型诊断技术已被开发出来。该技术基于红外平面激光诱导荧光(IR-PLIF),适用于所有具有红外活性的物质。采用一种简单的双线激发方法来测量温度,而压力测量则利用一条转动线上的在线激发和另一条转动线上的离线激发。在由30%的二氧化碳和70%的氮气组成的超声速欠膨胀射流中对该技术进行了演示,据我们所知,结果是首次使用IR-PLIF进行温度和压力成像的演示。所开发的诊断方法显示了对气流中的温度和压力进行单次二维测量的潜力。