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非结构混合网格鲁棒自适应技术 被引量:8
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作者 唐静 崔鹏程 +2 位作者 贾洪印 李彬 李欢 《航空学报》 EI CAS CSCD 北大核心 2019年第10期75-88,共14页
数值格式、湍流模型和计算网格是影响CFD数值模拟精度的3个主要因素。结合流场信息的网格自适应技术具备动态优化计算网格的能力,被NASA列为未来CFD发展的一项关键技术。本文针对非结构混合网格,发展了网格单元分布优化、表面网格几何... 数值格式、湍流模型和计算网格是影响CFD数值模拟精度的3个主要因素。结合流场信息的网格自适应技术具备动态优化计算网格的能力,被NASA列为未来CFD发展的一项关键技术。本文针对非结构混合网格,发展了网格单元分布优化、表面网格几何投影和空间网格协调匹配3项关键技术,建立了高鲁棒性几何保真的网格自适应系统。首先,为了提高自适应方法的鲁棒性和通用性,发展了基于标准面网格的多面体网格单元分布优化方法。其次,发展了仅依赖表面网格信息的局部曲面重构技术,采用参数点映射方法实现了新增表面网格点的几何投影,消除了自适应系统对几何CAD系统的依赖。再次,采用改进的距离函数方法实现了空间网格与投影后表面网格的快速匹配。最后,结合基于流场特征的自适应探测器,采用二阶格式的有限体积方法,开展了30P30N三段翼绕流和三角翼大迎角绕流的网格自适应数值模拟。结果表明,通过网格自适应对网格单元的分布进行优化后,流场求解的收敛性和模拟精度都得到了显著提高。 展开更多
关键词 网格自适应 混合网格 加密和粗化 曲面重构 表面网格投影 30P30N三段翼 三角翼
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A fast mapping method to evaluate immersed boundary hydrodynamic forces
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作者 Shi-Jun Li Jun-Hua Pan Ming-Jiu Ni 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2022年第8期49-57,共9页
Immersed boundary method is a crucial method to deal with particle suspension flow.Particle shapes involved in such flow are usually simple geometry,such as sphere and ellipsoid,which can be conveniently represented b... Immersed boundary method is a crucial method to deal with particle suspension flow.Particle shapes involved in such flow are usually simple geometry,such as sphere and ellipsoid,which can be conveniently represented by the triangular surface grid.When the number of particles and resolution of the surface grid increase,calculating the hydrodynamic force on the particle surface through integration can be time-consuming.Hence,the present paper establishes a fast mapping method to evaluate immersed boundary hydrodynamic force.Firstly,the particle surface grid is generated by an initial triangular element grid.Subsequently,the initial surface grid is refined by bisection refinement to the desired resolution.The final step is to find the triangular element index on the particle triangular surface grid,which contains the projective point.Test cases show that the present mapping algorithm has good accuracy and efficiency for calculating hydrodynamic forces of particles. 展开更多
关键词 Hydrodynamic force Immersed boundary method Particle suspensions Mapping algorithm
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