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Effect of high swirl velocity on mixture formation and combustion process of diesel spray

机译:高旋流速度对柴油喷雾混合气形成和燃烧过程的影响

摘要

Diesel engines generate undesirable exhaust emissions during combustion process and identified as major source pollution in the worldwide ecosystem. To reduce emissions, the improvements throughout the premixing of fuel and air have been considered especially at early stage of ignition process. Purpose of this study is to clarify the effects of swirl velocity on flow fuel-air premixing mechanism and burning process in diesel combustion that strongly affects the exhaust emissions. The effects of physical factors on mixture formation and combustion process to improve exhaust emissions are discussed in detail. This study investigated diesel combustion fundamentally using a rapid compression machine (RCM) together with the schlieren photography and direct photography methods. RCM was used to simulate actual phenomenon inside the combustion chamber with changing design parameter such as swirl velocity, injection strategies and variable nozzle concept. The detail behavior of mixture formation during ignition delay period was investigated using the schlieren photography system with a high speed digital video camera. This method can capture spray evaporation, spray interference and mixture formation clearly with real images. Ignition process and flame development were investigated by direct photography method using a light sensitive high-speed color digital video camera. Moreover, the mechanism and behavior of mixture formation were analyzed by newly developed image analysis technique. Under high swirl condition, the ignition delay is extended, the higher heat losses and unutilized high-density oxygen associated with slower initial heat recovery begins might be the explanation for the longer combustion duration, reductions of pick heat release and promote combustion and soot oxidation. The real images of mixture formation and flame development reveal that the spray tip penetration is bended by the high swirl motion, fuel is mainly distributed at the center of combustion chamber, resulting that flame is only formed at the center region of the combustion chamber. It is necessary for high swirl condition to improve fuel-air premixing.
机译:柴油机在燃烧过程中会产生不良的废气排放,被确定为全球生态系统的主要污染源。为了减少排放,尤其是在点火过程的早期阶段,已经考虑了在燃料和空气的预混合中进行的改进。这项研究的目的是弄清涡流速度对柴油机燃烧过程中流动燃料-空气预混机理和燃烧过程的影响,这些影响会严重影响废气排放。详细讨论了物理因素对混合物形成和燃烧过程以改善废气排放的影响。这项研究从根本上研究了使用快速压缩机(RCM)以及schlieren摄影和直接摄影方法进行柴油燃烧的方法。 RCM用于模拟燃烧室内的实际现象,该设计具有不断变化的设计参数,例如旋流速度,喷射策略和可变喷嘴概念。使用带有高速数码摄像机的schlieren摄影系统研究了点火延迟期间混合气形成的详细行为。该方法可以用真实图像清晰地捕获喷雾蒸发,喷雾干扰和混合物形成。使用光敏高速彩色数字摄像机通过直接摄影方法研究了点火过程和火焰的产生。此外,通过新开发的图像分析技术分析了混合物形成的机理和行为。在高涡流条件下,点火延迟时间延长,较高的热损失和未利用的高密度氧气与较慢的初始热回收开始有关,这可能是燃烧持续时间更长,冒热量减少,促进燃烧和烟尘氧化的原因。混合物形成和火焰发展的真实图像表明,喷头的穿透由于高涡旋运动而弯曲,燃料主要分布在燃烧室的中心,导致火焰仅形成在燃烧室的中心区域。对于高涡流条件,必须改善燃料-空气的预混合。

著录项

  • 作者

    Khalid Amir; Manshoor Bukhari;

  • 作者单位
  • 年度 100
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"english","id":9}
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