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Information Journal Paper

Title

IMPROVEMENT IN MOVING MESH ALGORITHM AROUND A OSCILLATIONAL AIRFOIL

Pages

  71-82

Abstract

 In this paper, a MOVING MESH concept originally introduced to model the general motion of a two-dimensional body is improved. The solution domain is divided into two zones. The first zone, with a circular boundary, includes the moving body and is intended to facilitate the vibrational rotation of the body. This zone is meshed by triangular elements which displace rigidly with the body. The proposed approach suggests replacing the triangular elements in the most exterior layer of the first zone by square ones which reduces their number by half. Present grid configuration also allows the number of nodal points and elements to remain constant. In order to demonstrate the effectiveness of the present method, unsteady and compressible form of the Euler equations are solved for flow over a moving body. The performance of the method is verified by several sample problems and comparing the results with existing numerical and experimental analyses in the literature.

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  • Cite

    APA: Copy

    MIRSAJEDI, S.M., & HOSSEINI ZARJ, M.H.. (2009). IMPROVEMENT IN MOVING MESH ALGORITHM AROUND A OSCILLATIONAL AIRFOIL. JOURNAL OF AEROSPACE SCIENCE AND RESEARCH, 2(2), 71-82. SID. https://sid.ir/paper/199477/en

    Vancouver: Copy

    MIRSAJEDI S.M., HOSSEINI ZARJ M.H.. IMPROVEMENT IN MOVING MESH ALGORITHM AROUND A OSCILLATIONAL AIRFOIL. JOURNAL OF AEROSPACE SCIENCE AND RESEARCH[Internet]. 2009;2(2):71-82. Available from: https://sid.ir/paper/199477/en

    IEEE: Copy

    S.M. MIRSAJEDI, and M.H. HOSSEINI ZARJ, “IMPROVEMENT IN MOVING MESH ALGORITHM AROUND A OSCILLATIONAL AIRFOIL,” JOURNAL OF AEROSPACE SCIENCE AND RESEARCH, vol. 2, no. 2, pp. 71–82, 2009, [Online]. Available: https://sid.ir/paper/199477/en

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