KEYWORDSAbstract. Modal analysis is the process of determining the natural frequencies and mode shapes of structures. In practical problems, modal analysis may be repeated many times, resulting in a huge quantity of computations. Although parallel processing technique can reduce the analysis time, civil engineers rarely implement it because it requires high programming skills as well as designing parallel algorithms. In the present paper, the Davidson algorithm is adopted for parallel modal analysis of two-dimensional beams. More precisely, the parallel version of the Davidson algorithm is implemented from scratch. A new proposed method, which is called \Modi ed Checkered Method" (MCM), is introduced, and four versions of the algorithm are implemented. Two out of four versions use rowwise and MCM in combination with Compressed Sparse row Algorithm, while the others utilize the previously mentioned methods without matrix compression. It is shown that the speedup increases when the main matrix of the standard form of eigenvalue problem is not compressed. Moreover, the speedup will increase in comparison to the row-wise division method when MCM is used. It is notable that the implemented Parallel Finite-Element source code is capable of being used in companion with a wide variety of nite elements.
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