Author Contributions
Conceptualization, Q.M. and L.B.; methodology, Q.M., H.W. and J.C.; software, Q.M. and H.W.; validation, Q.M. and H.W.; formal analysis, Q.M. and H.W.; investigation, Q.M.; resources, Q.M.; data curation, H.W.; writing—original draft preparation, H.W.; writing—review and editing, Q.M. and H.W.; visualization, H.W., T.C. and Y.W.; supervision, Q.M., L.B. and J.C.; project administration, Q.M., H.W. and L.B.; funding acquisition, Q.M. and L.B. All authors have read and agreed to the published version of the manuscript.
Figure 1.
Illustrations of the periodic composite structure and the representative cell with . (a) Composite domain . (b) Periodic cell domain Q.
Figure 1.
Illustrations of the periodic composite structure and the representative cell with . (a) Composite domain . (b) Periodic cell domain Q.
Figure 2.
Composite structure with and representative cell Q. (a) Composite domain . (b) Cell domain Q.
Figure 2.
Composite structure with and representative cell Q. (a) Composite domain . (b) Cell domain Q.
Figure 3.
First-order cell functions . (a) . (b) =. (c) .
Figure 3.
First-order cell functions . (a) . (b) =. (c) .
Figure 4.
Approximate solutions of with . (a) Fine solution . (b) Homogenized solution . (c) First-order approximation . (d) Second-order approximation .
Figure 4.
Approximate solutions of with . (a) Fine solution . (b) Homogenized solution . (c) First-order approximation . (d) Second-order approximation .
Figure 5.
Approximate solutions of with . (a) Fine solution . (b) Homogenized solution . (c) First-order approximation . (d) Second-order approximation .
Figure 5.
Approximate solutions of with . (a) Fine solution . (b) Homogenized solution . (c) First-order approximation . (d) Second-order approximation .
Figure 6.
Approximate solution of with and . (a) for . (b) for . (c) for . (d) for .
Figure 6.
Approximate solution of with and . (a) for . (b) for . (c) for . (d) for .
Figure 7.
Comparisons of with and . (a) . (b) .
Figure 7.
Comparisons of with and . (a) . (b) .
Figure 8.
Comparisons of with and . (a) . (b) .
Figure 8.
Comparisons of with and . (a) . (b) .
Figure 9.
The distribution of eigenvalues with and . (a) . (b) .
Figure 9.
The distribution of eigenvalues with and . (a) . (b) .
Figure 10.
Approximate solutions of with . (a) Fine solution . (b) Homogenized solution . (c) First-order approximation . (d) Second-order approximation .
Figure 10.
Approximate solutions of with . (a) Fine solution . (b) Homogenized solution . (c) First-order approximation . (d) Second-order approximation .
Figure 11.
Convergence for with different . (a) . (b) . (c) . (d) . (e) . (f) .
Figure 11.
Convergence for with different . (a) . (b) . (c) . (d) . (e) . (f) .
Figure 12.
Convergence for with different . (a) . (b) . (c) . (d) . (e) . (f) .
Figure 12.
Convergence for with different . (a) . (b) . (c) . (d) . (e) . (f) .
Figure 13.
Approximate solution of for the fifth eigenvalue with . (a) Fine solution . (b) Homogenized solution . (c) First-order approximation . (d) Second-order approximation .
Figure 13.
Approximate solution of for the fifth eigenvalue with . (a) Fine solution . (b) Homogenized solution . (c) First-order approximation . (d) Second-order approximation .
Table 1.
The elastic properties for the composite structure.
Table 1.
The elastic properties for the composite structure.
| Young’s Modules | Poisson’s Ratio | | | | |
---|
Material | 200 | 0.2 | 55.56 | 83.3 | 2.3 | 0.1 |
Material | 15 | 0.2 | 4.17 | 6.25 | 8.3 | 1 |
Table 2.
The information of mesh for the composite structure.
Table 2.
The information of mesh for the composite structure.
| Fine Mesh | Cell | Homo |
---|
| | | | | | | Mesh | Mesh |
---|
Nodes | 1597 | 2529 | 4289 | 16,897 | 67,073 | 267,265 | 1193 | 1089 |
Elements | 3048 | 4864 | 8320 | 33,280 | 133,120 | 532,480 | 2256 | 2048 |
Mesh size | 0.0422 | 0.0331 | 0.0234 | 0.0117 | 0.00586 | 0.00293 | 0.0485 | 0.0442 |
CPU Times (s) | 12 | 35 | 61 | 146 | 472 | 3278 | 68(SOTS solution) |
Table 3.
Comparisons of the eigenvalues for the multiscale computations with .
Table 3.
Comparisons of the eigenvalues for the multiscale computations with .
i | | | | | | | |
---|
1–4 | −0.0434 | −0.0428 | −0.0428 | −0.0436 | 0.015179 | 0.015313 | 0.0016252 |
| | | |
5, 6 | −0.0436 | −0.0428 | −0.0427 | −0.0436 | 0.035812 | 0.036136 | 0.013300 |
| | | |
7, 8 | −0.0439 | −0.0428 | −0.0427 | −0.0445 | 0.047208 | 0.047621 | 0.016048 |
| | | |
9–12 | −0.0443 | −0.0428 | −0.0427 | −0.0451 | 0.051254 | 0.051915 | 0.0068505 |
| | | |
13, 14 | −0.0450 | −0.0428 | −0.0427 | −0.0451 | 0.025084 | 0.025374 | 0.011814 |
| | | |
15, 16 | −0.0454 | −0.0428 | −0.0427 | −0.0457 | 0.033410 | 0.033805 | 0.012559 |
| | | |
17–20 | .0456 | −0.0428 | −0.0427 | −0.0461 | 0.050095 | 0.050709 | 0.0073711 |
| | | |
Table 4.
Comparisons of the eigenvalues for the multiscale finite element computations with .
Table 4.
Comparisons of the eigenvalues for the multiscale finite element computations with .
i | | | | | | | |
---|
1–4 | −0.0429 | −0.0428 | −0.0428 | −0.0430 | 0.011124 | 0.011158 | 0.0077493 |
| | | |
5, 6 | −0.0430 | −0.0428 | −0.0428 | −0.0431 | 0.034942 | 0.035010 | 0.029303 |
| | | |
7, 8 | −0.0430 | −0.0428 | −0.0428 | −0.0432 | 0.041627 | 0.041735 | 0.033887 |
| | | |
9–12 | −0.0431 | −0.0428 | −0.0428 | −0.0433 | 0.045934 | 0.046094 | 0.034883 |
| | | |
13, 14 | −0.0433 | −0.0428 | −0.0428 | −0.0434 | 0.000029903 | 0.000042627 | 0.0090362 |
| | | |
15, 16 | −0.0434 | −0.0428 | −0.0428 | −0.0435 | 0.0073696 | 0.0074652 | 0.0038372 |
| | | |
17–20 | −0.0434 | −0.0428 | −0.0428 | −0.0436 | 0.022608 | 0.022761 | 0.0086160 |
| | | |
Table 5.
The relative errors of the real part of the eigenfunctions of the multiscale finite element computations in norm with and .
Table 5.
The relative errors of the real part of the eigenfunctions of the multiscale finite element computations in norm with and .
i | | | | |
---|
1–4 | 1/8 | 0.062853 | 0.049287 | 0.032068 |
| 1/16 | 0.028503 | 0.018853 | 0.016703 |
5, 6 | 1/8 | 0.091823 | 0.073718 | 0.052404 |
| 1/16 | 0.043631 | 0.029022 | 0.026550 |
7, 8 | 1/8 | 0.10173 | 0.066192 | 0.071713 |
| 1/16 | 0.053611 | 0.034565 | 0.030627 |
9–12 | 1/8 | 0.14855 | 0.13038 | 0.089557 |
| 1/16 | 0.10238 | 0.089901 | 0.087278 |
13, 14 | 1/8 | 0.13746 | 0.13078 | 0.057244 |
| 1/16 | 0.048186 | 0.041428 | 0.030246 |
Table 6.
Comparisons of the eigenvalues for the multiscale finite element computations with .
Table 6.
Comparisons of the eigenvalues for the multiscale finite element computations with .
i | | | | | | | |
---|
1–4 | −0.2031 | −0.2083 | −0.2084 | −0.2036 | 0.015179 | 0.015313 | 0.0016252 |
| | | |
5, 6 | −0.2707 | −0.2882 | −0.2884 | −0.2770 | 0.035813 | 0.036137 | 0.013300 |
| | | |
7, 8 | −0.3602 | −0.3920 | −0.3923 | −0.3706 | 0.047211 | 0.047624 | 0.016048 |
| | | |
9–12 | −0.4755 | −0.5222 | −0.5228 | −0.4807 | 0.051258 | 0.051919 | 0.0068509 |
| | | |
13, 14 | −0.5129 | −0.5373 | −0.5376 | −0.5009 | 0.025086 | 0.025376 | 0.011815 |
| | | |
15, 16 | −0.6163 | −0.6560 | −0.6565 | −0.6005 | 0.033413 | 0.033809 | 0.012561 |
| | | |
17–20 | −0.6771 | −0.7436 | −0.7444 | −0.6658 | 0.050180 | 0.050795 | 0.0071311 |
| | | |
Table 7.
Comparisons of the eigenvalues for the multiscale finite element computations with .
Table 7.
Comparisons of the eigenvalues for the multiscale finite element computations with .
i | | | | | | | |
---|
1–4 | −0.2045 | −0.2083 | −0.2084 | −0.2072 | 0.011125 | 0.011158 | 0.0077494 |
| | | |
5, 6 | −0.2711 | −0.2882 | −0.2882 | −0.2854 | 0.034934 | 0.035011 | 0.029304 |
| | | |
7, 8 | −0.3638 | −0.3920 | −0.3921 | −0.3867 | 0.041629 | 0.041738 | 0.033889 |
| | | |
9–12 | −0.4800 | −0.5222 | −0.5223 | −0.5118 | 0.04.5883 | 0.046047 | 0.0034823 |
| | | |
13, 14 | −0.5374 | −0.5373 | −0.5374 | −0.5282 | 0.000025645 | 0.000039700 | 0.0090371 |
| | | |
15, 16 | −0.6469 | −0.6560 | −0.6561 | −0.6421 | 0.0073904 | 0.0074660 | 0.0038376 |
| | | |
17–20 | −0.7123 | −0.7436 | −0.7438 | −0.7241 | 0.022688 | 0.02.2841 | 0.0087380 |
| | | |
Table 8.
The relative errors of the real part of the eigenfunctions for the multiscale finite element computations in norm with and .
Table 8.
The relative errors of the real part of the eigenfunctions for the multiscale finite element computations in norm with and .
i | | | | |
---|
1–4 | 1/8 | 0.053329 | 0.029489 | 0.021533 |
| 1/16 | 0.026916 | 0.013382 | 0.012700 |
5, 6 | 1/8 | 0.080252 | 0.046301 | 0.037830 |
| 1/16 | 0.041669 | 0.020936 | 0.020197 |
7, 8 | 1/8 | 0.10108 | 0.055112 | 0.042573 |
| 1/16 | 0.05.1786 | 0.025064 | 0.023878 |
9–12 | 1/8 | 0.13398 | 0.093321 | 0.078345 |
| 1/16 | 0.10544 | 0.090213 | 0.090860 |
13, 14 | 1/8 | 0.089517 | 0.073068 | 0.032400 |
| 1/16 | 0.039818 | 0.029129 | 0.024539 |
Table 9.
Convergence of to the first eigenvalue = − and its corrections.
Table 9.
Convergence of to the first eigenvalue = − and its corrections.
| | | | | | |
---|
1/2 | −0.1542 | −0.2084 | −0.1321 | 0.20038 | 0.20067 | 0.058009 |
| | |
1/4 | −0.1947 | −0.2085 | −0.1894 | 0.041002 | 0.041501 | 0.014665 |
| | |
1/8 | −0.2031 | −0.2084 | −0.2036 | 0.015179 | 0.015313 | 0.0016252 |
| | |
1/16 | −0.2045 | −0.2084 | −0.2072 | 0.011125 | 0.011158 | 0.0077494 |
| | |
1/32 | −0.2049 | −0.2083 | −0.2081 | 0.0098826 | 0.009891 | 0.0090399 |
| | |
1/64 | −0.2046 | −0.2083 | −0.2083 | 0.010605 | 0.010607 | 0.010394 |
| | |