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RBF-based mesh morphing approach to perform icing simulations in the aviation sector

机译:基于RBF的网格变形方法,用于航空领域的结冰仿真

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Purpose Numerical simulation of icing has become a standard. Once the iced shape is known, however, the analyst needs to update the computational fluid dynamics (CFD) grid. This paper aims to propose a method to update the numerical mesh with ice profiles.Design/methodology/approach The present paper concerns a novel and fast radial basis functions (RBF) mesh morphing technique to efficiently and accurately perform ice accretion simulations on industrial models in the aviation sector. This method can be linked to CFD analyses to dynamically reproduce the ice growth.Findings To verify the consistency of the proposed approach, one of the most challenging ice profile selected in the LEWICE manual was replicated and simulated through CFD. To showcase the effectiveness of this technique, predefined ice profiles were automatically applied on two-dimensional (2D) and three-dimensional (3D) cases using both commercial and open-source CFD solvers.Practical implications If ice accreted shapes are available, the meshless characteristic of the proposed approach enables its coupling with the CFD solvers currently supported by the RBF4AERO platform including OpenFOAM, SU2 and ANSYS Fluent. The advantages provided by the use of RBF are the high performance and reliability, due to the fast application of mesh smoothing and the accuracy in controlling surface mesh nodes.Originality/value As far as authors' knowledge is concerned, this is the first time in scientific literature that RBF are proposed to handle icing simulations. Due to the meshless characteristic of the RBF mesh morphing, the proposed approach is cross solver and can be used for both 2D and 3D geometries.
机译:目的结冰的数值模拟已成为标准。但是,一旦知道了冰的形状,分析人员就需要更新计算流体动力学(CFD)网格。本文旨在提出一种利用冰剖面更新数值网格的方法。设计/方法/方法本文涉及一种新颖,快速的径向基函数(RBF)网格变形技术,以在工业模型中高效,准确地进行积冰模拟。航空部门。该方法可以与CFD分析链接以动态地重现冰的生长。结果为了验证所提出方法的一致性,通过CFD复制并模拟了LEWICE手册中选择的最具挑战性的冰剖面之一。为了展示这种技术的有效性,使用商业和开源CFD求解器将预定义的冰剖面自动应用于二维(2D)和三维(3D)案例中。实践意义如果冰积聚形状可用,则无网格所提议方法的特性使其能够与目前由RBF4AERO平台(包括OpenFOAM,SU2和ANSYS Fluent)支持的CFD求解器耦合。使用RBF的优势在于网格平滑的快速应用和控制曲面网格节点的准确性,从而具有高性能和可靠性。原始数据/值就作者的知识而言,这是第一次。提出了RBF用于处理结冰模拟的科学文献。由于RBF网格变形的无网格特性,所提出的方法是交叉求解器,可用于2D和3D几何图形。

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