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Flow field measurements in an optically accessible, direct-injection spray-guided internal combustion engine using high-speed PIV

机译:使用高速PIV在光学可访问,直接喷射喷雾引导的内燃机中进行流场测量

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High-speed particle image velocimetry has been applied to study the flow field of an optically accessible motored direct-injection spray-guided internal combustion engine. Based on recent improvements in all-solid-state diode-pumped laser- and CMOS camera-technology a large field of view (43 × 44 mm2) was achieved at 6 kHz resulting in a temporal resolution of 1° crank angle at 1,000 rpm. This allows the investigation of the temporal evolution of large-scale flow structures. The flow field was recorded during the latter half of the compression stroke for tumble flow conditions at 500, 1,000 and 2,000 rpm. An analysis of cycle-to-cycle variations has been performed from individual and ensemble-averaged cycles. The temporal evolution of the main vortex center and the kinetic energy shows a few individual cycles with strong variations from the mean caused by a substantially different flow regime. A quantification of cyclic variations using the kinetic energy is possible.
机译:高速粒子图像测速技术已被用于研究光学可访问的机动直接喷射喷雾制导内燃机的流场。基于全固态二极管泵浦激光和CMOS摄像头技术的最新改进,在6 kHz的频率下可获得43×44 mm 2 的宽视野,从而实现了时域分辨率为1,000 rpm时1°曲柄角。这允许研究大规模流动结构的时间演化。在500、1,000和2,000 rpm的滚流条件下,在压缩冲程的后半段记录流场。已经从单个和整体平均周期中进行了周期变化的分析。主旋涡中心和动能的时间演化显示出几个单独的周期,它们的均值之间存在很大差异,这是由明显不同的流动状态引起的。利用动能来量化循环变化是可能的。

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