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Feasibility of Cavity Ringdown Spectroscopy for Measuring Diesel Exhaust

机译:测量柴油排气的腔匝数光谱的可行性

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Cavity ringdown spectroscopy (CRDS) is one way of measuring small fractional absorption for concentrations down to sub-ppm levels in an optical cavity. The applicability of CRDS for measurement of diesel exhaust is assessed. By use of CRDS, instantaneous exhaust characteristics can be immediately available for engine control. Of specific interest in this set of experiments, are measurements of soot or particulate matter. The goal of these measurements would be to estimates the number density of soot particles based on line-of-sight absorption and an assumption regarding the size distribution of the particles. To test the system, the absorption coefficients of Nitrogen, Carbon Dioxide, and 2',7'-Dichlorofluorescein (DCF) in a test cell at known number densities were measured instead of diesel exhaust. An Nd:YAG-laser provided light at 532 nm for the cavity ringdown measurement. Cavity ringdown waveforms were analyzed with a exponential least squares fit. An equation relation the absorption coefficients to the ringdown time in a test cell was developed including the two parallel windows in the optical cavity. This analysis is based on the assumption that the measured output of the cavity decays exponentially according to a first order expression and the Beer-Lambert law. In the case of Nitrogen, the measurement results were in good agreement with the calculations. An extrapolation to this system performance was compared with a Bosch Smoke measurement unit, typically used for diesel exhaust soot measurement.
机译:腔振荡光谱(CRD)是测量小分数吸收的一种方法,用于浓缩到光学腔中的子PPM水平。评估CRD用于测量柴油排气的适用性。通过使用CRD,可以立即可用于发动机控制的瞬时排气特性。在这组实验中的具体兴趣,是烟灰或颗粒物质的测量。这些测量的目标是估计基于视线吸收的烟灰颗粒的数量密度和关于颗粒的尺寸分布的假设。为了测试系统,测量氮,二氧化碳和2',7'-二氯流荧光素(DCF)在已知数量密度下的氮,二氧化碳和2',代替柴油排气。 ND:YAG激光为532nm提供光,用于腔振荡测量。用指数最小二乘拟合分析腔旋转波形。公式关系在测试电池中的振荡时间与光腔中的两个平行窗口开发。该分析基于假设腔的测量输出根据一阶表达和啤酒兰伯特法指数衰减。在氮的情况下,测量结果与计算吻合良好。将该系统性能的外推与博世烟雾测量单元进行比较,通常用于柴油排气烟灰测量。

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