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A Thickened-Hole Model for Large Eddy Simulations over Multiperforated Liners

机译:多芯衬垫大型涡流模拟的增稠孔模型

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摘要

In aero-engines, mutiperforation cooling systems are often used to shield the combustor wall and ensure durability of the engine. Fresh air coming from the casing goes through thousands of angled perforations and forms a film which protects the liner. When performing Large Eddy Simulations (LES) of a real engine, the number of sub-millimetric holes is far too large to allow a complete and accurate description of each aperture. Homogeneous models allow to simulate multiperforated plates with a mesh size bigger than the hole but fail in representing the jet penetration and mixing. A heterogeneous approach is proposed in this study, where the apertures are thickened if necessary so that the jet-crossflow interaction is properly represented. Simulations using homogeneous and thickened-hole models are compared to a fully resolved computation for various grid resolutions in order to illustrate the potential of the method.
机译:在空气发动机中,塑造冷却系统通常用于屏蔽燃烧室壁并确保发动机的耐用性。 来自套管的新鲜空气通过数千个倾斜的穿孔,并形成保护衬里的薄膜。 当执行真实发动机的大型涡流模拟(LES)时,亚毫米孔的数量太大,无法允许每个孔的完整和准确描述。 均匀型号允许模拟比孔大的网状尺寸的多档板,但在代表喷射穿透和混合时失效。 在该研究中提出了一种异质的方法,其中孔如有必要,使得喷射 - 交叉流相互作用适当地表示。 将使用均匀和厚孔模型进行模拟与各种网格分辨率的完全解决的计算进行了比较,以说明该方法的潜力。

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