A
- a priori corrector, 7
- acoustic waves, 134, 161–163, 165, 168, 183, 185, 186
- algorithm 1.1 Finite volume corrector computation, 13, 14
- algorithm 1.2 Finite element nonlinear corrector computation, 17
- algorithm 2.2 Transient fixed-point mesh adaptation algorithm, 27, 36
- algorithm 2.3 Convergent transient fixed-point mesh adaptation algorithm for flow with interface, 33, 34
- algorithm 3.2 Multirate time-advancing, 49
- algorithm 4.1 Adjoint-based mesh adaptation for a steady problem, 76, 90, 119
- algorithm 5.1 Viscous goal-oriented mesh adaptation loop for steady flows, 90, 102, 104
- algorithm 6.1 Norm-oriented mesh adaptation for a steady problem, 119, 120
- algorithm 6.1 of Volume 1 Convergent steady fixed-point: Research of asymptotic convergence, 79, 102, 104
- algorithm 7.1 Global transient fixed-point mesh adaptation algorithm, 159
- algorithm 8.1 Third-order global fixed-point, 168, 183
- anisotropic ratio/quotient of an element, 164
- approximation ENO, 171
- Aubin–Nitsche estimate, 86
B, C
- blast wave, 134, 141, 143, 163–165
- cell-agglomeration algorithm, 47
- checkpointing, 140, 159, 182
- code
- convergence order, 23
- corrector system, 4, 6, 9, 11, 14, 121, 122, 127, 130
D, E
- decimation, 78
- defect-correction (DC) corrector, 9
- dispersion error, dissipation error, 174, 183
- early capturing (EC) property of an adaptation, 22, 104
- equidistribution adaption method, 155
F, G
- feature-based approach, 21, 65, 77, 104, 105, 111, 114, 119, 124, 125, 127, 128, 131, 133
- goal-oriented adaptation method, 3, 18, 19, 65, 66, 68, 69, 76, 77, 79, 81, 83, 111–113, 116, 119, 126, 131–133, 146, 148, 155, 158, 160, 161, 168, 171
L, M
- level set method, 21, 22, 30
- median finite volume cell, 47, 171
- multiscale mesh adaptation, 21
- MUSCL upwind scheme, 45, 62
N, R, S
- numerical convergence order, 184
- recovery methods, 7, 78, 103, 161
- Spalart–Allmaras turbulence model, 9, 10, 129
- superconvergent scheme, 55
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