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Development of a sensitive experimental set-up for LIF fuel wall film measurements in a pressure vessel

机译:开发用于压力容器中LIF燃料壁膜测量的灵敏实验装置

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This paper focusses on fundamental investigations of fuel wall films, which are formed when the spray impinges on the piston or cylinder walls. To reproduce the wide range of operating conditions within homogeneously charged gasoline direct-injection engines, it is necessary to use a film thickness measurement method, which can be applied inside a high-pressure, high-temperature vessel. Hence, we developed a method based on laser-induced fluorescence that reaches: a precision better than 1 mu m, a geometric resolution of 31 mu m and a practical applicability for wall film thicknesses smaller 80 mu m. To obtain accurate film thickness results, we provide a detailed description of the selection of the surrogate fuel isooctane with 3-pentanone as fluorescence tracer and the resulting assembly of the excitation source, beam expander, filters, camera and the essential image processing. Furthermore, advantages and disadvantages of other possible solutions are discussed. Earlier publications provide only little information about the accuracy of their calibration and measurement procedures. Therefore, we tested and compared three basic calibration methods to each other and provide an analysis of possible errors, such as the influence of the preferential evaporation of 3-pentanone. Finally, images of resulting wall films are presented, and practical considerations for the execution of the measurements like recording timings are discussed.
机译:本文着重于对燃料壁膜的基础研究,该燃料壁膜是在喷雾撞击到活塞或汽缸壁上时形成的。为了在均质装料的汽油直喷发动机中重现广泛的工作条件,必须使用一种可以在高压高温容器内应用的膜厚测量方法。因此,我们开发了一种基于激光诱导荧光的方法,该方法可以达到:精度优于1μm,几何分辨率为31μm,并且对于小于80μm的壁膜厚度具有实际适用性。为了获得准确的膜厚结果,我们提供了以3-戊酮为荧光示踪剂的替代燃料异辛烷的选择以及激发源,扩束器,滤光片,照相机和基本图像处理的最终组件的详细描述。此外,还讨论了其他可能解决方案的优缺点。较早的出版物仅提供很少有关其校准和测量过程准确性的信息。因此,我们对三种基本的校准方法进行了测试和比较,并对可能的误差进行了分析,例如3-戊酮优先蒸发的影响。最后,介绍了所得壁膜的图像,并讨论了执行诸如记录时间之类的测量的实际考虑。

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