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Numerical Investigation of an Optical Soot Sensor for Modern Diesel Engines

机译:现代柴油发动机光学烟灰传感器的数值研究

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It has been extensively evidenced that modern diesel engines generate a considerable amount of soot nanoparticles. Existing soot sensors are not suitable for such nanoparticles. Current standard gravimetric techniques are extremely insensitive to fine soot particles. Soot diagnostics developed for research purposes, e.g., laser-induced incandescence, do not provide quantitative characterization, and expanded practical applications of these techniques are hardly conceivable. This paper addresses this emerging need for monitoring nano-sized soot emissions. Here, we investigated the use of polarization modulated scattering (PMS) for soot sensing in engine environments. The technique involves 1) measuring laser scattering by soot particles at multiple angles while varying the polarization states of the incident laser beam, 2) determining multiple elements of the Mueller matrix from the measured signals, and 3) inferring properties of the soot particles from these elements. This paper details the sensing concept and the algorithm used to retrieve soot characteristics.
机译:已经广泛证明了现代柴油发动机产生了相当大量的烟灰纳米颗粒。现有的烟灰传感器不适用于这种纳米颗粒。目前的标准重量技术对细烟灰颗粒非常不敏感。为研究目的开发的烟灰诊断,例如激光诱导的白炽性,不提供定量表征,并且难以想象这些技术的扩展实际应用。本文解决了监测纳米大小烟灰排放的新兴需求。在这里,我们调查了在发动机环境中使用偏振调制散射(PMS)以进行烟灰感测。该技术涉及1)通过多个角度测量激光散射,同时改变入射激光束的偏振状态,2)从测量的信号确定穆勒矩阵的多个元件,以及3)从这些信号中推断出烟灰颗粒的特性元素。本文详细说明了传感概念和用于检索烟灰特性的算法。

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