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CFD SIMULATION OF A 6-CYLINDER DIESEL ENGINE INTAKE AND EXHAUST MANIFOLD

机译:六缸柴油机进气和排气歧管的CFD模拟

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Exhaust gas recirculation (EGR) is a nitrogen oxide (NOx) emissions reduction technique used in petrol/gasoline and diesel engines. By recirculating a portion of an engine's exhaust, inert gas displaces combustible matter in the cylinder. Because NOx forms primarily when a mixture of nitrogen and oxygen is subjected to high temperature, the lower combustion chamber temperatures caused by EGR decrease the amount of NOx combustion generates. This project aims at optimizing the location of the EGR ports, which are crucial to the operation and efficiency of the EGR system. The Computational Fluid Dynamics (CFD) code ANSYS FLUENT was used to analyze the intake and exhaust manifold working processes. In order to conduct numerical optimization on determining the best EGR port location, a transient CFD model was developed. Real operational transient boundary conditions were applied to the model through user defined functions (UDF), and the results of flow characteristics and EGR distribution was analyzed in detail. The EGR mass flow rate mal-distribution was presented at the transient simulation. This model can be utilized for further optimization purposes.
机译:废气再循环(EGR)是一种减少汽油/汽油和柴油发动机中氮氧化物(NOx)排放的技术。通过再循环发动机排气的一部分,惰性气体置换了气缸中的可燃物。因为当氮和氧的混合物经受高温时主要形成NOx,所以由EGR引起的较低的燃烧室温度降低了NOx燃烧量的产生。该项目旨在优化EGR端口的位置,这对于EGR系统的运行和效率至关重要。计算流体动力学(CFD)代码ANSYS FLUENT用于分析进气和排气歧管的工作过程。为了在确定最佳EGR端口位置时进行数值优化,开发了一个瞬态CFD模型。通过用户定义函数(UDF)将实际的操作瞬态边界条件应用于该模型,并详细分析了流量特性和EGR分布的结果。在瞬态仿真中给出了EGR质量流率分布不均的现象。该模型可以用于进一步的优化目的。

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