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Analysis of Mixture formation and Flame Development of Diesel Combustion using a Rapid Compression Machine and Optical Visualization Technique

机译:快速压缩机和光学可视化技术分析柴油燃烧的混合物形成和火焰开发

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Mixture formation plays as a key element on burning process that strongly affects the exhaust emissions such as nitrogen oxide(NO_x) and Particulate Matter(PM). The reductions of emissions can be achieved with improvement throughout the mixing of fuel and air behavior. Measurements were made in an optically-accessible rapid compression machine (RCM) with intended to simulate the actual diesel combustion related phenomena. The diesel combustion was simulated with the RCM which is equipped with the Denso single-shot common-rail fuel injection system, capable of a maximum injection pressure up to 160MPa. Diesel engine compression process could be reproduced within the wide range of ambient temperature, ambient density, swirl velocity, equivalence ratio and fuel injection pressure. The mixture formation and combustion images were captured by the high speed camera. Analysis of combustion characteristics and observations of optical visualization of images reveal that the mixture formation exhibit influences to the ignition process and flame development. Therefore, the examination of the first stage of mixture formation is very important consideration due to the fuel-air premixing process linked with the combustion characteristics. Furthermore, the observation of a systematic control of mixture formation with experimental apparatus enables us to achieve considerable improvements of combustion process and would present the information for fundamental understanding in terms of reduced fuel consumption and exhaust emissions.
机译:混合物形成作为燃烧过程的关键元件,强烈影响废气排放,例如氮氧化物(NO_X)和颗粒物质(PM)。在整个燃料和空气行为的整个混合过程中,可以实现排放的减少。用旨在模拟实际柴油燃烧相关现象的光学可接近的快速压缩机(RCM)进行测量。用RCM模拟柴油燃烧,RCM配备有Denso单次共轨燃料喷射系统,能够最大的注射压力高达160MPa。柴油发动机压缩过程可以在广泛的环境温度,环境密度,旋流速度,等效比和燃料喷射压力范围内再现。通过高速相机捕获混合物形成和燃烧图像。图像燃烧特性分析及其光学可视化观察结果表明,混合物形成表现出对点火过程和火焰发育的影响。因此,由于与燃烧特性有关的燃料 - 空气预混合方法,对混合物形成的第一阶段的检查是非常重要的考虑因素。此外,观察用实验装置对混合物形成的系统控制使我们能够实现燃烧过程的相当大改进,并在降低燃料消耗和废气排放方面提出基本理解的信息。

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