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On the relative impact of subgrid-scale modelling and conjugate heat transfer in LES of hot jets in cross-flow over cold platesud

机译:亚网格规模建模与共轭传热在冷板横流中热射流LES中的相对影响 ud

摘要

This work describes numerical simulations of a hot jet in cross-flow with applications to anti-ice systems of aircraft engine nacelles. Numerical results are compared with experimental measurements obtained at ONERA to evaluate the performances of LES in this industrial context. The combination of complex geometries requiring unstructured meshes and high Reynolds number does not allow the resolution of boundary layers so that wall models must be employed. In this framework, the relative influence of subgrid-scale modelling and conjugate heat transfer in LESs of aerothermal flows is evaluated. After a general overview of the transverse jet simulation results, a LES coupled with a heat transfer solver in the walls is used to showudthat thermal boundary conditions at the wall have more influence on the results than subgrid scale models.udCoupling fluid flow and heat transfer in solids simulations is the only method to specify their respective thermal boundary conditions. ud
机译:这项工作描述了横流热射流的数值模拟及其在飞机发动机机舱防冰系统中的应用。将数值结果与在ONERA获得的实验测量结果进行比较,以评估LES在这种工业环境下的性能。需要非结构化网格和高雷诺数的复杂几何形状的组合不允许边界层的分辨率,因此必须使用墙模型。在此框架下,评估了亚网格规模建模和共热传递在空气热流LES中的相对影响。在对横向射流模拟结果进行了总体概述之后,使用LES与壁中的传热求解器相结合来显示 ud,表明壁下的热边界条件比亚网格规模模型对结果的影响更大。固体模拟中的热传递是指定它们各自的热边界条件的唯一方法。 ud

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