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Quantitative analysis of the near-wall mixture formation process in a passenger car direct-injection Diesel engine by using linear Raman spectroscopy

机译:线性拉曼光谱定量分析乘用车直喷柴油机近壁混合气形成过程

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摘要

Optimum fuel preparation and mixture formation are core issues in the development of modern directinjection (DI) Diesel engines, as these are crucial for defining the border conditions for the subsequent combustion and pollutant formation process. The local fuel/air ratio can be seen as one of the key parameters for this optimization process, as it allows the characterization and comparison of the mixture formation quality. For what is the first time to the best of our knowledge, linear Raman spectroscopy is used to detect the fuel/air ratio and its change along a line of a few millimeters directly and nonintrusively inside the combustion bowl of a DI Diesel engine. By a careful optimization of the measurement setup, the weak Raman signals could be separated successfully from disturbing interferences. A simultaneous measurement of the densities of air and fuel was possible along a line of about 10 mm length, allowing a time- and space-resolved measurement of the local fuel/air ratio. This could be performed in a nonreacting atmosphere as well as during fired operating conditions. The positioning of the measurement volume next to the interaction point of one of the spray jets with the wall of the combustion bowl allowed a near-wall analysis of the mixture formation process for a six-hole nozzle under varying injection and engine conditions. The results clearly show the influence of the nozzle geometry and preinjection on the mixing process. In contrast, modulation of the intake air temperature merely led to minor changes of the fuel concentration in the measurement volume.
机译:最佳的燃料制备和混合气形成是现代直喷(DI)柴油机发展的核心问题,因为这些对于定义后续燃烧和污染物形成过程的边界条件至关重要。可以将局部燃料/空气比视为此优化过程的关键参数之一,因为它可以表征和比较混合物的形成质量。据我们所知,这是首次使用线性拉曼光谱技术直接在DI柴油机的燃烧室内部非侵入地检测燃油/空气比率及其沿几毫米线的变化。通过仔细优化测量设置,可以成功地将弱拉曼信号与干扰干扰区分开。沿着大约10毫米长的线可以同时测量空气和燃料的密度,从而可以在时间和空间上进行局部燃料/空气比的测量。这可以在不反应的气氛中以及在燃烧的操作条件下进行。将测量体积的位置靠近一个喷射流与燃烧室壁的相互作用点,可以对六孔喷嘴在不同的喷射和发动机条件下的混合物形成过程进行近壁分析。结果清楚地表明了喷嘴几何形状和预喷射对混合过程的影响。相反,进气温度的调节仅导致测量体积中燃料浓度的微小变化。

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