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Two-photon nitric oxide laser-induced fluorescence measurements in a diesel engine

机译:柴油发动机中的两光子一氧化氮激光诱导的荧光测量

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摘要

A two-photon nitric oxide (NO) laser-induced fluorescence (LIF) technique was developed and applied to study in-cylinder diesel combustion. The technique prevents many problems associated with in-cylinder, single-photon NO planar-laser-induced fluorescence measurements, including fluorescence interference from the Schumann-Runge bands of hot O_(2), absorption of a UV excitation beam by in-cylinder gases, and difficulty in rejecting scattered laser light while simultaneously attempting to maximize fluorescence signal collection. Verification that the signal resulted from NO was provided by tuning of the laser to a vibrational off-resonance wavelength that showed near-zero signal levels, which resulted from either fluorescence or interference at in-cylinder pressures of as much as 20 bar. The two-photon NO LIF signal showed good qualitative agreement with NO exhaust-gas measurements obtained over a wide range of engine loads.
机译:二光子一氧化氮(NO)激光诱导的荧光(LIF)技术被开发并应用于研究缸内柴油燃烧。该技术可防止与缸内单光子NO平面激光诱导的荧光测量相关的许多问题,包括来自热O_(2)的Schumann-Runge谱带的荧光干扰,缸内气体吸收UV激发光束,并且在同时尝试最大化荧光信号收集的同时,难以拒绝散射的激光。验证是否由NO产生的信号是通过将激光器调谐到显示接近零信号水平的振动非共振波长来提供的,该信号水平是由荧光或在缸内压力高达20 bar时产生的干扰引起的。两光子NO LIF信号与在广泛的发动机负载下获得的NO废气测量结果显示出良好的定性一致性。

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