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首页> 外文期刊>Applied optics >Investigation of spatially resolved light absorption in a spark-ignition engine fueled with propane/air
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Investigation of spatially resolved light absorption in a spark-ignition engine fueled with propane/air

机译:丙烷/空气燃料火花点火发动机的空间分辨光吸收研究

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摘要

UV absorption in the combustion phase of spark-ignition engines strongly influences laser-induced-fluorescence measurements and flame-emission techniques because of the attenuation of a laser and/or signal light. This absorption was assessed with spatial, spectral, and temporal resolutions in an optically accessible research engine. Absorption was measured along a line for different crank-angle positions throughout the combustion phase of the engine by use of spectrally resolved transmittance measurements of both broadband illumination from a deuterium lamp and emission of laser-excited hot oxygen. Evaluating the spatial patterns of absorptivity revealed that no increased absorption can be attributed to the flame-front region and that homogeneous absorption cross sections for the whole burned-gas region can be assumed. The temporal change of absorption was shown to depend on the pressure effect with only negligible changes in absorption cross sections. Results obtained from the absorption measurements are applied for spatially resolved corrections of two-dimensional laser-induced-fluorescence measurements of NO concentration fields obtained under different operating conditions.
机译:由于激光和/或信号光的衰减,火花点火发动机燃烧阶段的紫外线吸收强烈影响激光诱导的荧光测量和火焰发射技术。在光学可访问的研究引擎中通过空间,光谱和时间分辨率评估了这种吸收。使用氘灯的宽带照明和激光激发的热氧气的发射,通过光谱解析的透射率测量,在整个发动机燃烧阶段,沿着一条线测量了不同曲轴角位置的吸收率。对吸收率的空间模式进行评估表明,吸收增加不能归因于火焰前部区域,并且可以假定整个燃烧气体区域的吸收横截面均匀。结果表明,吸收的时间变化取决于压力效应,吸收截面的变化很小。从吸收测量获得的结果用于在不同操作条件下获得的NO浓度场的二维激光诱导荧光测量的空间分辨校正。

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