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Zienkiewicz O.C., Taylor R.L. Vol. 3. The finite - tiera.ru

Zienkiewicz O.C., Taylor R.L. Vol. 3. The finite - tiera.ru

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Estuary:<br />

Severn, 226±236<br />

Euler boundary conditions, 305<br />

Euler equation, 8±10, 93, 150, 171±177, 218, 298,<br />

302<br />

Euler ¯ow, 83, 148<br />

Euler problems, 180<br />

Euler solution, 192<br />

inviscid, 209<br />

pure, 209<br />

Euler±Stokes equations, 275<br />

Eulerian ¯ow modelling, 212<br />

Evolution of heat, 121<br />

Exit, ¯ow, 293<br />

Expansion:<br />

<strong>Taylor</strong>, 39, 40<br />

Experiments, physical, 169<br />

Explicit algorithm, 100<br />

Explicit characteristic±Galerkin procedure, 38, 40<br />

Explicit dynamic codes, 132<br />

Explicit form, 76, 275, 284<br />

Explicit method, direct, 175<br />

Explicit mode, fully, 99<br />

Explicit scheme, 43<br />

Explicit semi-explicit, 76<br />

Explicit time marching algorithm, 104<br />

Exponential law, 118<br />

Exterior acoustics, 261<br />

Exterior boundaries, 173<br />

Exterior boundary integrals, 255<br />

Exterior ¯ows, 169, 172<br />

Exterior problems, 252, 253<br />

Exterior region, 256<br />

Exterior series solutions, 255<br />

Exterior solutions, 253<br />

linking to, 255<br />

Exterior surface wave problems, 250<br />

Exterior wave problems, 251<br />

External boundaries, 172, 227<br />

Extremum, local, 176<br />

Ext<strong>ru</strong>sion, 121, 122<br />

transient, 128<br />

Feeder, 144<br />

FEM, wave envelope, 264<br />

Fictitious boundary, 81, 172<br />

Fighter, supersonic, 189<br />

Filling of moulds, 143, 145, 148<br />

Fine ®nite element mesh, 300<br />

Finite di€erences, 2<br />

one-sided, 17<br />

Finite element:<br />

Galerkin, 176<br />

hp-version, 295<br />

hybrid, 295<br />

special, 249<br />

Subject index 321<br />

Finite increment calculus (FIC), 25, 30<br />

Finite volume formulation, 189<br />

First-order closure models, 162<br />

First-order di€raction problem, 268<br />

Flat nosed punch, 129<br />

Floating body, 265, 266<br />

Floating breakwater, 265, 266, 267<br />

Flooding, 231<br />

Flow:<br />

compressible, 10, 48, 50, 66, 108, 170, 174, 224,<br />

275<br />

Euler, 83, 148<br />

high speed, 169, 171, 180<br />

hypersonic, 184, 207<br />

ideal, 3<br />

incompressible, 110, 275<br />

incompressible laminar, 91<br />

incompressible Stokes, 79<br />

inviscid, 10<br />

inviscid incompressible, 93<br />

isothermal, 178<br />

Mach 3, 187<br />

mass, 6<br />

potential, 3, 93<br />

pure Stokes, 98<br />

shallow water, 219, 50<br />

steady-state, 120<br />

Stokes, 2, 91, 118<br />

subsonic, 81, 84, 189<br />

supercritical, 236<br />

supersonic, 185<br />

transonic viscous, 203<br />

turbulent, 164, 275, 289<br />

viscous incompressible, 113<br />

Flow codes, incompressible, 274<br />

Flow coupling, boundary layer-inviscid,<br />

302<br />

Flow-dependent viscosity, 3<br />

Flow equations:<br />

averaged, 162<br />

isothermal compressible, 223<br />

potential, 146<br />

Flow exit, 293<br />

Flow ¯uxes, mass, 92<br />

Flow formulation, 120<br />

Flow modelling, Eulerian, 212<br />

Flow of gases, 3<br />

Flow past a cylinder, 161<br />

Flow past harbour, 235<br />

Flow problems:<br />

compressible viscous, 274<br />

¯uid, 110<br />

high-speed, 280<br />

inviscid, 274<br />

Flow separation, 171, 245<br />

Flow vector, mass, 74

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