In this paper, an efficient mesh deformation technique for hybrid-unstructured grids, based on radial basis functions, has been developed. The principle procedure adopted for this scheme can be divided into two steps. First, a series of radial basis functions are constructed by an interpolation method according to the displacements of moving boundary points. Later, the displacements of all points in the computation domain are determined by the aforementioned radial basis function series. To improve the efficiency, data reduction should be introduced into the interpolation process. Consequently, a multilevel subspace radial basis function interpolation method based on a double-edged greedy algorithm is presented to create an approximate interpolation for all moving boundary points. This method is computationally efficient, preserves orthogonality, and has no dependency on the type of flow solver. Typical deformation problems of a LANN wing, DLR-F6 wing-body-nacelle-pylon configuration and DLR-F11 high-lift configuration with hybrid-unstructured grid are selected as the test cases for demonstration of the current implementation. Results show that the present mesh deformation method has good efficiency and robustness for large and complex deformation problems.
机构:
Chinese Acad Sci, Inst Mech, Beijing, Peoples R ChinaChinese Acad Sci, Inst Mech, Beijing, Peoples R China
Tang, Han
Zheng, Guannan
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Chinese Acad Sci, Inst Mech, Beijing, Peoples R China
Univ Chinese Acad Sci, Sch Engn Sci, Beijing, Peoples R ChinaChinese Acad Sci, Inst Mech, Beijing, Peoples R China
Zheng, Guannan
Zhang, Yuchen
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Chinese Acad Sci, Inst Mech, Beijing, Peoples R China
Univ Chinese Acad Sci, Sch Future Technol, Beijing, Peoples R ChinaChinese Acad Sci, Inst Mech, Beijing, Peoples R China
Zhang, Yuchen
Wang, Xinjiang
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China Acad Launch Vehicle Technol, Beijing, Peoples R ChinaChinese Acad Sci, Inst Mech, Beijing, Peoples R China
Wang, Xinjiang
Huang, Chengde
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Chinese Acad Sci, Inst Mech, Beijing, Peoples R ChinaChinese Acad Sci, Inst Mech, Beijing, Peoples R China
机构:
Fraunhofer Chalmers Res Ctr Ind Math, Gothenburg, SwedenChalmers Univ Technol, Dept Math Sci, S-41296 Gothenburg, Sweden
Jakobsson, Stefan
Patriksson, Michael
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Chalmers Univ Technol, Dept Math Sci, S-41296 Gothenburg, Sweden
Univ Gothenburg, Dept Math Sci, Gothenburg, SwedenChalmers Univ Technol, Dept Math Sci, S-41296 Gothenburg, Sweden
Patriksson, Michael
Rudholm, Johan
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Chalmers Univ Technol, Dept Math Sci, S-41296 Gothenburg, Sweden
Univ Gothenburg, Dept Math Sci, Gothenburg, SwedenChalmers Univ Technol, Dept Math Sci, S-41296 Gothenburg, Sweden
Rudholm, Johan
Wojciechowski, Adam
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Chalmers Univ Technol, Dept Math Sci, S-41296 Gothenburg, Sweden
Univ Gothenburg, Dept Math Sci, Gothenburg, SwedenChalmers Univ Technol, Dept Math Sci, S-41296 Gothenburg, Sweden
机构:
State Key Laboratory of Aerodynamics, China Aerodynamics Research and Development Center
Computational Aerodynamics Institute, China Aerodynamics Research and Development CenterState Key Laboratory of Aerodynamics, China Aerodynamics Research and Development Center
Zhong ZHAO
Rong MA
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Computational Aerodynamics Institute, China Aerodynamics Research and Development CenterState Key Laboratory of Aerodynamics, China Aerodynamics Research and Development Center
Rong MA
Lei HE
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Computational Aerodynamics Institute, China Aerodynamics Research and Development CenterState Key Laboratory of Aerodynamics, China Aerodynamics Research and Development Center
Lei HE
Xinghua CHANG
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State Key Laboratory of Aerodynamics, China Aerodynamics Research and Development Center
Computational Aerodynamics Institute, China Aerodynamics Research and Development CenterState Key Laboratory of Aerodynamics, China Aerodynamics Research and Development Center
Xinghua CHANG
Laiping ZHANG
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State Key Laboratory of Aerodynamics, China Aerodynamics Research and Development Center
Computational Aerodynamics Institute, China Aerodynamics Research and Development CenterState Key Laboratory of Aerodynamics, China Aerodynamics Research and Development Center