Abstract Efficient infinite-swept wing solver for steady and unsteady compressible flows
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Efficient infinite-swept wing solver for steady and unsteady compressible flows

机译:高效的无限扫掠机翼求解器,用于稳定和不稳定的可压缩流

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AbstractAn efficient Navier–Stokes solver for the infinite-swept wing problem is presented. The new flow solution, that reproduces correctly the physics responsible for cross-flow effects, is obtained around a two-dimensional stencil. On the contrary, existing state-of-the-art methods rely on a three-dimensional stencil. Numerical details are followed by an extensive validation campaign, including steady and unsteady compressible flows. The test cases are for single and multi-element aerofoils in both laminar and turbulent regimes. Under identical conditions (numerical settings, grids, etc.), the computational cost of the proposed solver was reduced by at least 75% compared to that of existing state-of-the-art methods. This was also confirmed employing various turbulence models. With a limited effort required to enhance an existing computational fluid dynamics solver (either two or three-dimensional), the infinite-swept wing method was implemented in an industrial-grade package used across Europe for rapid engineering analysis.
机译: 摘要 针对无限掠过的机翼问题,提出了一种有效的Navier-Stokes求解器。新的流动解决方案可以在二维模具周围获得,该解决方案正确地再现了造成横流效应的物理原理。相反,现有的最新技术依赖于三维模具。数值细节之后是广泛的验证活动,包括稳定和不稳定的可压缩流。测试案例适用于层流和湍流状态下的单元素和多元素翼型。在相同的条件下(数字设置,网格等),与现有技术相比,拟议的求解器的计算成本至少降低了75%。还证实了采用各种湍流模型。通过增强现有的计算流体动力学求解器(二维或三维)的有限努力,在欧洲范围内使用的工业级包装中实现了无限扫掠翼方法,用于快速工程分析。

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