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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Simultaneous measurements of fuel concentration and temperature in gas jets by laser induced breakdown spectroscopy
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Simultaneous measurements of fuel concentration and temperature in gas jets by laser induced breakdown spectroscopy

机译:激光诱导击穿光谱通过同时测量燃料浓度和气体喷射中的温度

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Laser induced breakdown spectroscopy (LIBS) enables quantitative measurements of the equivalence ratio in flames, spray and gas jets. Although there are always considerable temperature differences between the calibrations and the LIBS measurements in flames and fuel jets, the temperature effects on LIBS were rarely mentioned and not corrected in the previous LIBS measurements. In this study, a novel method to simultaneously measure the equivalence ratio and the gas temperature by LIBS in a single laser shot is proposed. This method can correct the temperature effects based on the linear correlation between the peak intensity ratio (PIR) of atomic lines and the gas temperature. The PIR of H656/N746 and the full width at half maximum (FWHM) of H656 are employed to establish calibration curves with the equivalence ratio and the gas temperature, respectively, and both of calibrations show high coefficients of determination (R-2). Then, the measurement accuracy and precision of the proposed method are discussed in detail. The total uncertainties in measurements of equivalence ratio and gas temperature are estimated by 5.6% and 5.8%, respectively. Finally, the simultaneous measurements of equivalence ratios and gas temperatures in methane jets at different positions and at different injection pressures are conducted. The comparison of equivalence ratios before and after correction of the temperature effects indicates that the accuracy of the fuel concentration measurements by LIBS would be remarkably degraded if the temperature variations were neglected.
机译:激光诱导的击穿光谱(Libs)能够在火焰,喷雾和气体喷射中的等效比的定量测量。尽管在火焰和燃料喷射器中的校准和LIBS测量中存在始终存在相当大的温度差异,但很少提及对Libs的温度效应,并且在先前的Libs测量中不校正。在该研究中,提出了一种同时测量单个激光射击中的Libs同时测量等效率和气体温度的新方法。该方法可以基于原子线的峰强度比(PIR)与气体温度之间的线性相关性来校正温度效应。 H656 / N746的PIR和H656的半最大(FWHM)的全宽分别与等效比和气体温度分别建立校准曲线,并且校准两者都显示出高系数(R-2)。然后,详细讨论所提出的方法的测量精度和精度。等效率和气体温度测量的总不确定性分别估计为5.6%和5.8%。最后,对不同位置和不同注射压力进行甲烷喷射中的等效比率和气体温度的同时测量。在温度效应校正之前和之后的等效比率的比较表明,如果忽略温度变化,Libs的燃料浓度测量的准确性会显着降低。

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