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Computational tools for supporting the testing of civil aircraft configurations in wind tunnels

机译:支持在风洞中测试民用飞机配置的计算工具

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Following a review of well-known CFD packages, this paper presents the mathematical and methodical ideas, which became the basis of the numerical method for a solution of the Reynolds (time)-averaged Navier-Stokes equations (RANS), relevant to supporting testing an aircraft configuration in wind tunnels (WTs). The estimation of finite speed of information propagation due to diffusion is given. Explicit and implicit methods for numerical solution of gasdynamic equations are compared. Stability conditions, taking into account both interaction of convection with diffusion and presence of exponentially varying modes of solution, are considered. Three methods of time stepping organization are described—global, local and fractional time stepping. Numerical boundary conditions for simulation of flow in the WT are proposed. Examples of method implementation for the European Transonic Windtunnel (ETW) case are presented.
机译:在回顾了著名的CFD软件包之后,本文提出了数学和方法论的思想,这些思想成为了求解与支持测试有关的雷诺(时间)平均Navier-Stokes方程(RANS)的数值方法的基础风洞(WT)中的飞机配置。给出了由于扩散引起的信息传播有限速度的估计。比较了气体动力学方程数值解的显式和隐式方法。考虑到对流与扩散的相互作用以及溶液的指数变化模式的存在,考虑了稳定性条件。描述了三种时间步进组织方法-全局,局部和分数时间步进。提出了数值模拟WT中流动的边界条件。给出了欧洲跨音速风洞(ETW)案例的方法实现示例。

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