
Proceedings
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©2012 Civil-Comp Ltd |
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Keywords
|
A |
|
| a posteriori |
87 |
| a posteriori error estimation |
88 |
| accelerograms of earthquakes |
108 |
| accuracy evaluation |
58 |
| active control |
82 |
| adaptive mesh refinement |
88 |
| adaptive penalty method |
66 |
| adaptive rood pattern search |
57 |
| adaptive three-dimensional mesh |
35 |
| adaptivity |
87 |
| adiabatic flows |
123 |
| adjoint MPI |
7 |
| adjoint Navier-Stokes-Fourier equations |
100 |
| adjoint OpenMP |
7 |
| aerodynamic tunnel |
124 |
| aerodynamics |
129, 130 |
| affinity hydration model |
94 |
| air quality modelling |
35 |
| aircraft |
31, 129, 130 |
| alcali activated fly ash |
21 |
| algorithm |
127 |
| algorithmic differentiation |
7 |
| anisotropic meshing |
33 |
| ANSYS |
101, 104 |
| approximate inverse smoothing |
89 |
| approximation |
94 |
| ARAMIS |
104 |
| arc-length method |
61 |
| artificial boundary layer |
124 |
| artificial immune systems |
66 |
| artificial neural network |
72, 94 |
| assembly |
30, 103 |
| automatic programming |
75 |
|
B |
|
| back-propagation neural network |
68 |
| big bang-big crunch algorithm |
52 |
| bi-linear diagram |
108 |
| Biot's theory |
96 |
| block motion estimation |
57 |
| blood flow simulation |
134, 135 |
| bouncing ball model |
39 |
| boundary element method |
121 |
| Boussinesq approximation |
100 |
| bovine pericardium |
136 |
| bracing members |
69 |
| bracing systems |
69 |
| breaking systems |
99 |
| breathing mechanism |
92 |
| bridging domain method |
19 |
| B-splines |
133 |
| bubble collapse |
116 |
| buckling |
44 |
|
C |
|
| C++ generic programming |
32 |
| CAD surface |
33 |
| CAD-CAE integration |
30 |
| Cagniard method |
97 |
| Caputo derivative |
80 |
| carbon fibre |
27 |
| carotid artery |
136 |
| casting |
58 |
| CATIA |
31 |
| cellular wood material |
104 |
| cement paste |
94 |
| centrifugal force |
117 |
| Chandler model |
138 |
| chaos |
39 |
| characteristic method |
122, 123 |
| characteristics |
81 |
| chemical coupling |
17 |
| chemical transport |
16 |
| classical laminated plate theory |
43 |
| closed-cell material |
95 |
| cloud computing |
12 |
| column |
25 |
| compiler |
8 |
| complementary variational principle method |
85 |
| complex dynamics |
42 |
| component mode synthesis |
87 |
| component-oriented |
73 |
| compressive strength |
71 |
| computation time |
32 |
| computational complexity |
53 |
| computational fluid dynamics |
120, 135 |
| computer aided design |
31, 45 |
| computer generated hologram |
60 |
| concrete |
71 |
| concrete gravity dams |
70 |
| concurrency |
8 |
| conforming mesh |
33 |
| conservation of mass |
122, 123 |
| conservation of momentum |
122, 123 |
| constitutive equation |
48 |
| constitutive model |
110 |
| constrained design spaces |
76 |
| constraint-handling methodologies |
66 |
| contact interface |
99 |
| contact modelling |
83 |
| contact problem |
90 |
| contactless three-dimensional scanning |
59 |
| continualization |
93 |
| continuum theory |
17 |
| contour method |
91 |
| contouring problem |
61 |
| convection-diffusion |
9, 81 |
| convergence |
81 |
| correlation |
57 |
| coupled analysis |
16 |
| coupled CFD-DEM |
120 |
| coupled heat and moisture transport |
14, 15 |
| coupled SDOF models |
109 |
| crack |
46, 92 |
| critical point |
42 |
| cross sectional area |
25 |
| curve discretization |
33 |
| curved crack |
47 |
| curved duct |
85 |
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