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A highly accurate numerical solution of a biharmonic equation

โœ Scribed by M. Arad; A. Yakhot; G. Ben-Dor


Publisher
John Wiley and Sons
Year
1997
Tongue
English
Weight
193 KB
Volume
13
Category
Article
ISSN
0749-159X

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โœฆ Synopsis


The coefficients for a nine-point high-order accuracy discretization scheme for a biharmonic equation โˆ‡ 4 u = f (x, y) (โˆ‡ 2 is the two-dimensional Laplacian operator) are derived. The biharmonic problem is defined on a rectangular domain with two types of boundary conditions: (1) u and โˆ‚ 2 u/โˆ‚n 2 or (2) u and โˆ‚u/โˆ‚n (where โˆ‚/โˆ‚n is the normal to the boundary derivative) are specified at the boundary. For both considered cases, the truncation error for the suggested scheme is of the sixth-order O(h 6 ) on a square mesh (hx = hy = h) and of the fourth-order O(h 4

x , h 2 x h 2 y , h 4 y ) on an unequally spaced mesh. The biharmonic equation describes the deflection of loaded plates. The advantage of the suggested scheme is demonstrated for solving problems of the deflection of rectangular plates for cases of different boundary conditions: (1) a simply supported plate and (2) a plate with built-in edges. In order to demonstrate the high-order accuracy of the method, the numerical results are compared with exact solutions.


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