首页> 外文会议>ASME Turbine Technical Conference and Exposition >COMPARISON OF HETEROGENEOUS AND HOMOGENEOUS COOLANT INJECTION MODELS FOR LARGE EDDY SIMULATION OF MULTIPERFORATED LINERS PRESENT IN A COMBUSTION SIMULATOR
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COMPARISON OF HETEROGENEOUS AND HOMOGENEOUS COOLANT INJECTION MODELS FOR LARGE EDDY SIMULATION OF MULTIPERFORATED LINERS PRESENT IN A COMBUSTION SIMULATOR

机译:燃烧模拟器中存在的多级衬里大型涡流模拟的异质和均匀冷却剂注入模型的比较

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With the goal of increasing the thermodynamic efficiency of aircraft engines, the temperature in the combustion chamber has risen to the point where the gas temperature is above the melting point of materials used in the chamber and cooling systems are mandatory. Today, most of the existing lean burn combustors rely on multiper forated liners to keep hot gases away from the walls. However, resolving all holes of the combustor in the CFD design phase remains beyond currently available computational resources, so the effusion cooling system is often modeled by homogeneously injecting air on the whole surface of the liner, especially in the context of Large Eddy Simulation (LES) based CFD. This paper investigates a novel approach to simulate the effect of jets emitted from discrete holes on the flow inside a combustion chamber. In this new modeling approach, jet diameters are treated to be resolvable by the grid while conserving the correct mass and momentum flow rate. LES are performed on the combustion simulator of the engine representative FACTOR test rig at two different operating points and compared to measurement data as well as previous simulations obtained using a homogeneous air injection modeling on liners. The new approach shows globally similar results as the well validated homogeneous injection model and is applicable on realistic industrial geometries at a negligible level of additional cost (+0.3%).
机译:随着增加飞机发动机的热力学效率的目的,燃烧室中的温度上升到气体温度高于腔室中使用的材料的熔点是强制性的。如今,大多数现有的瘦燃烧燃烧器依赖于多人伪装衬垫,使热气体远离墙壁。然而,在CFD设计阶段中解决燃烧器的所有孔仍然超出当前可用的计算资源,因此流入冷却系统通常通过均匀地注入衬垫的整个表面上的空气来建模,尤其是在大涡模拟的背景下(LES基于CFD。本文研究了模拟从离散孔发出的射流效果的新方法。在这种新的建模方法中,射流直径被栅格可分解,同时保留正确的质量和动量流速。在两个不同的操作点的发动机代表性因子试验台的燃烧模拟器上对LES进行,并与测量数据相比以及在衬里上使用均匀的空气喷射建模获得的先前模拟。新方法显示全球相似的结果作为良好的验证的均匀注射模型,适用于现实的工业几何形状,其额外的额外成本(+ 0.3%)。

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