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Optimum combustion chamber geometry for a compression ignition engine retrofitted to run using compressed natural gas (CNG)

机译:用于压缩点火发动机的最佳燃烧室几何形状,用于使用压缩天然气(CNG)运行

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The use of natural gas as an alternative fuels are motivated from the impact in deteriorating quality of air and the energy shortage from petroleum products. Through retrofitting, CI engine runs on CNG, will be able to reduce the negative impact mainly on the use of petroleum products. However, this required the modification of the combustion chamber geometry by reducing the compression ratio to value that suits combustion of CNG. In this present studies, four different shapes and geometries of combustion chamber were designed and simulate using CFD package powered by Ansys workbench, where k-ε turbulence model was used to predict the flow in the combustion chamber. The results of turbulence kinetic energy, velocity vectors and streamline are presented. The enhancement of air-fuel mixing inside the engine cylinder can be observed, where the design with re-entrance and lower center projection provide better results compared to other combustion geometries designs.
机译:作为替代燃料的使用天然气的使用是从恶化的空气质量和石油产品的能量短缺的影响。通过改装,CI发动机在CNG上运行,能够将负面影响效果,主要是对石油产品的使用。然而,这需要通过将压缩比降低到适用于CNG燃烧的值来改变燃烧室几何形状。在本研究中,设计了四种不同的燃烧室的不同形状和几何形状,并使用由Ansys工作台提供的CFD封装进行设计,其中k-ε湍流模型用于预测燃烧室中的流动。提出了湍流动能,速度向量和流线的结果。可以观察到发动机缸内的空气燃料混合的增强,其中与其他燃烧几何设计相比,具有重新入口和下中心投影的设计提供了更好的结果。

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