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Investigation of Flow Characteristics in Lean Direct Injection Combustors

机译:稀薄直喷燃烧室的流动特性研究

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This paper investigates nonreacting aerodynamic flow characteristics in lean direct injection (LDI) combustors. An unsteady Reynolds-averaged Navier-Stokes code of the Fluent® solver is used to simulate turbulent, nonreacting, and swirling flow associated with a single-element and a nine-element LDI combustor. Additionally, large eddy simulation is applied to simulate the flowfield within the nine-element combustor. Overall, for the single-element configuration, the numerical predictions both for time-averaged mean and turbulent flow velocity components compare well with the available measurement data. Between the two numerical methods being used for the nine-element configuration, the magnitude of velocities differ significantly near the combustion chamber inlet, although the velocity contour structures display similarities at all of the computed locations. The simulation captures aerodynamic flow features, such as the recirculation regions, the highly complex flow structures at the chamber entrance, and the interface of the adjacent swhiers. The highly turbulent flowfield and the presence of dynamic vortex structures in the proximity of the combustion chamber inlet indicate that a large degree of unsteadiness is associated with this region, which might favorably influence breakup and dispersion of liquid fuel droplets in a combustion simulation.
机译:本文研究了稀薄直接喷射(LDI)燃烧器中的非反应空气流动特性。 Fluent®求解器的非稳态雷诺平均Navier-Stokes代码用于模拟与单元素和九元素LDI燃烧器相关的湍流,非反应性和旋流。此外,采用大涡模拟来模拟九元素燃烧室中的流场。总体而言,对于单元素配置,时间平均平均值和湍流速度分量的数值预测都与可用的测量数据进行了很好的比较。在用于9个元素的配置的两种数值方法之间,速度的大小在燃烧室入口附近明显不同,尽管速度轮廓结构在所有计算位置上都显示出相似性。该模拟捕获了空气动力学的流动特征,例如再循环区域,腔室入口处的高度复杂的流动结构以及相邻晶须的界面。高度湍流的流场和燃烧室入口附近动态涡流结构的存在表明,该区域存在很大程度的不稳定,这可能在燃烧模拟中有利地影响液体燃料小滴的破裂和分散。

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