基于计算机断层扫描的低曲柄转速下柴油机缸内火焰发展的三维测量结果

Yu Gao, Haiyan Chen, Yue Wu, Wenqi Men
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引用次数: 0

摘要

了解燃烧室内燃烧过程的动态对于提高发动机性能至关重要。计算机断层扫描技术可以重建火焰化学发光信号的三维分布,用于分析燃烧室内的火焰发展过程。在这项研究中,利用跨界面计算机断层扫描技术重建了光学发动机在多个低曲柄转速下的火焰强度分布和演变过程。重建后的火焰提供了火焰体积和强度演变的三维信息,在阐明曲柄转速对火焰发展的影响方面具有优势。同时,基于三维结果分析了火焰沿活塞运动方向的发展。这项研究揭示了缸内火焰的三维结构,为今后进一步研究缸内燃烧过程的三维信息提供了可能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Three-dimensional measurements of the in-cylinder diesel flame development under low crank speeds based on computed tomography
Understanding the dynamics of the combustion process in the combustion chamber is critical to improve the performance of the engine. The computed tomography technology makes it possible to reconstruct the three-dimensional distributions of flame chemiluminescence signals which can be used to analyse flame development processes inside the combustion chamber. In this study, the flame intensity distribution and evolution inside an optical engine are reconstructed under multiple low crank speeds, by utilizing cross-interface computed tomography. The reconstructed flames provide 3D information on flame volume and intensity evolution, which presents superiority on clarifying the effects of crank speeds on flame development. Meanwhile, flame development along the piston movement direction is analysed based on the 3D results. The study reveals the 3D structure of the in-cylinder flame and makes it possible for further investigation of the 3D information of the in-cylinder combustion process in the future.
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