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Electronic
Proceedings |
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Organisation |
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Keywords
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A         (top) | | | | | ABAC |
157 | | ABAQUS |
245 | | academic setting |
288 | | acceleration sensor |
221 | | accident analysis package |
59 | | action research |
141 | | active control |
199, 225 | | active learning |
297 | | active mass driver |
199 | | activity-based cost control |
80 | | activity-based costing |
198 | | ADM |
174 | | ADR |
139 | | advance notice of crimes |
61 | | AEC |
109 | | AEC industry |
70, 160 | | agency cost |
128 | | agent-centered |
111 | | agent-oriented |
214 | | air pollution modelling |
10 | | algorithmic architecture |
189, 193 | | algorithmic complexity |
16 | | allocation problem |
197 | | allocation system |
187 | | anomaly detection |
224 | | ANSYS |
248, 249, 252 | | ant colony optimization |
134 | | application model |
81 | | arcGIS |
63 | | arch bridge modelling |
259, 260 | | architect |
109, 110 | | architectural and structural model |
166 | | architectural design |
174, 193 | | architectural form finding |
186 | | architecture |
186, 289, 299 | | architecture design |
189 | | argumentation |
146 | | artificial intelligence |
43 | | artificial neural networks |
147, 203, 205 | | ARToolkit |
4 | | assembly task |
6 | | assessment |
56, 104, 154 | | asset management |
215 | | augmented reality |
4, 5, 6, 32, 41 | | automated building |
184 | | automated data collection and analysis |
35 | | automatic generation |
64 | | automatic platform gates |
219 | | automation |
57, 117, 145 | | autonomous |
214 | | axiology |
179 | | axisymmetric yield |
252 | |
B         (top) | | | | | bare-steel |
207 | | barriers |
108 | | barriers to IT implementation |
112 | | BCLAM |
252 | | BDI |
103 | | beams |
208 | | benchmarking |
79 | | benefits |
104 | | bifurcation |
228 | | BIM |
3, 12, 33, 41, 69, 71, 72, 73, 74, 75, 77, 78, 79, 80, 82, 84, 85, 86, 88, 89, 90, 91, 93, 114, 155, 160, 164, 167, 170, 178, 184, 212, 231, 281, 288, 302, 303 | | BIM adoption |
70 | | BIM adoption and implementation |
79 | | BIM cost versus value |
303 | | BIM education |
281 | | BIM function |
72 | | BIM in design delivery and maintenance |
303 | | BIM in practice |
303 | | BIM manager |
71 | | BIM pilot project |
72 | | BIM skills |
71 | | BIM software |
72 | | BIM specialist |
71 | | BIM teaching |
71, 289 | | Biot’s consolidation |
277 | | biotechnology |
184 | | blast-wave propagation |
27 | | blind-bolts |
255, 256 | | boolean operation |
260 | | boundary conditions |
229 | | boundary elements |
275 | | box-girder bridge |
266 | | bridge |
13, 271 | | buckling |
240, 248, 249, 251, 252 | | building |
178 | | building aerodynamics |
171 | | building automation |
47 | | building automation and control |
44 | | building design |
171 | | building energy efficiency |
118 | | building envelope |
84 | | building information modelling |
70, 81, 83, 92, 93, 94, 289 | | building management |
43, 46 | | building material |
110 | | building performance |
26, 84 | | building performance analysis |
116 | | building renovation |
26 | | building seismic fragility |
68 | | building simulation |
177 | | buildings |
2 | | business courses |
290 | | business models |
45 | | business process |
13 | | business value |
130 | |
C         (top) | | | | | C* |
246 | | cable-stayed bridges |
267, 270, 271 | | CAD |
153, 159, 164, 174, 212 | | CAE |
174 | | CALS/EC |
13 | | case study |
93 | | case-based reasoning |
48, 106 | | cash flow |
107 | | cause analysis |
135 | | cellular automata |
235 | | centrality |
137 | | CFD |
27, 170 | | CG |
64 | | challenges |
2 | | change management |
74, 149, 159 | | change orders |
147 | | changes |
149 | | chlorine |
203 | | choice of information |
60 | | chronographic |
126 | | circular cylinder |
252 | | citizen's environmental consciousness |
20 | | civil engineering |
289 | | claim negotiation |
146 | | clash detection |
91 | | classroom observation |
297 | | climate change |
185 | | cloud computing |
158 | | CO2 emissions |
181 | | coarse-grain simulation |
27 | | COBie |
75 | | cognitive workload |
6 | | collaboration |
152, 160, 288 | | collaboration methodology |
284 | | collaborative design |
166 | | collaborative design and construction |
179 | | collaborative teamwork |
153 | | collapse stimulation |
259 | | collision detection |
16 | | combined action |
236 | | commercial construction |
281 | | common ground |
150 | | communication |
152 | | communication channels |
150 | | complementarity |
230 | | complexity of projects |
127 | | component method |
162, 255 | | composite bridge |
258 | | composite joints |
254 | | computation models |
181 | | computational fluid dynamics |
171 | | computational geometry |
169 | | computer aided design |
30, 167 | | computer application integration |
165 | | computer game |
285 | | computer modelling |
30, 143 | | computer simulation |
190, 194 | | computer vision |
35 | | computer-aided construction and management |
124 | | computer-aided-learning |
299 | | computing |
260 | | conceptual architectural design |
283 | | conceptual modelling |
101 | | concrete filled sections |
256 | | concrete filled steel tube |
240 | | confinement effect |
240 | | conformance checking |
97 | | constitutive modelling |
211 | | constitutive models |
239 | | constrained optimization |
210 | | constraint-satisfaction |
122 | | construction |
8, 51, 55, 69, 77, 90, 105, 115, 129, 152, 158, 164, 293, 301 | | construction control |
269 | | Construction e-business |
111 | | construction emissions |
119 | | construction equipment |
102 | | construction firms |
89, 130 | | construction industry |
181 | | construction law |
145 | | construction layout |
293 | | construction management |
92, 101 | | construction manufacturing |
167 | | construction process |
18, 140, 143, 144 | | construction productivity |
52 | | construction projects |
108, 127, 149, 200 | | construction safety |
5, 52, 53, 278 | | construction scheduling |
9 | | construction simulation |
17 | | construction site equipment |
15 | | construction sites |
39 | | container-terminal operations |
24 | | context-awareness |
54, 157 | | contextual data |
220 | | continuity plate |
265 | | Contract conditions |
148 | | contractor |
142 | | convex walls |
196 | | corrugated steel webs |
258, 269 | | cost |
106, 117 | | cost estimation |
96 | | cost forecasting |
107 | | cost-benefit |
131 | | cost-benefits |
77 | | coupled buildings |
173 | | coupling |
154 | | course |
296 | | crack detection |
36 | | cranes |
53 | | creative intelligence |
295 | | creep fracture |
246 | | CREM |
213 | | crime prevention |
61 | | criteria |
142 | | criteria-referenced assessment |
300 | | critical infrastructure |
136 | | critical region |
25 | | critical success factors |
72 | | cross-ties |
268 | | curriculum |
289 | | curved surface |
195, 196 | | cybernetics |
43 | | cyclic loading |
254 | | cylinders |
248 | | cylindrical cavity expansion |
243 | |
D         (top) | | | | | damage estimating model |
222 | | damage tolerance |
225 | | dampers |
268 | | damping |
274 | | data acquisition and analysis |
213 | | data envelopment analysis |
130 | | data exchange |
154, 155 | | data fusion |
124 | | data interpretation |
224 | | data mining |
37, 45, 211, 220 | | data model |
220 | | data structure coupling |
154 | | database |
220 | | dataflow programming |
176 | | daylighting |
186, 194, 299 | | day-to-day data |
120 | | deactivation element |
25 | | decentralised information management |
212 | | decision modelling |
87 | | decision simulation |
285 | | decision support |
14, 48, 123, 145, 179, 183 | | decision-making |
113, 185 | | decisions generation |
172 | | defect evaluation |
191 | | defective nanotubes |
251 | | deflection monitoring |
218 | | description logics |
99 | | design |
8, 69, 97, 155, 158, 164, 170, 178, 185, 204
| | design analysis |
172, 176 | | design cognition |
283 | | design collaboration |
283 | | design criteria |
223 | | design element |
163 | | design exploration |
151 | | design of R.C. structures |
261 | | design space search |
182 | | differential quadrature |
253 | | digital |
282 | | digital camera |
39 | | digital elevation model |
66 | | digital image correlation |
40 | | digital model |
302 | | digital terrain |
8 | | direct solar radiation |
195 | | disaster |
57 | | disaster monitoring |
217 | | disaster preparedness |
32 | | discrete element |
259 | | discrete element method |
243 | | discrete-event simulation |
119 | | dispute resolution |
147 | | distributed computing |
163 | | distributed cooperation |
159 | | document management |
110, 148 | | doubler plate |
265 | | drift |
264 | | drivers |
108 | | ductility |
265 | | durability information model |
86 | | dynamic analysis |
266 | | dynamic management |
78 | | dynamic response |
277 | |
E         (top) | | | | | early design |
74 | | early design process |
180 | | earthquake analysis |
170 | | earthwork optimization |
202 | | eccentric load |
271 | | e-commerce |
109 | | economic analysis |
75 | | economic feasibility |
131 | | economic model |
75 | | ecotect |
85 | | education |
9, 284, 290, 293, 295, 299 | | e-learning |
296 | | elevated temperature |
207 | | embodied carbon |
82 | | embodied energy |
181 | | emergency |
33 | | emergency management |
12 | | energy |
205 | | energy analysis |
170 | | energy conservation |
234 | | energy control and management |
46 | | energy cost |
19 | | energy dissipation |
173, 242 | | energy efficiency |
19, 45, 47, 116, 178, 180, 183 | | energy performance |
83 | | engagement |
297 | | engineering |
282 | | engineering and construction industry |
109 | | engineering applications |
175 | | engineering calculations |
163 | | engineering education |
280, 281, 291, 292, 298 | | engineering mechanics |
230 | | engineering support |
182 | | entropy |
125 | | environmental management |
119 | | equipment |
57 | | Eurocode |
162 | | evaluation |
102 | | evaluation techniques |
120 | | event tree analysis |
139 | | event-chain |
31 | | event-driven |
31 | | evolutionary computation |
211 | | evolutionary modelling technique |
206 | | evolutionary random process |
276 | | existing housing redesign |
183 | | experiences |
159 | | external pressure |
248, 250, 252 | | extraction of information |
61 | |
F         (top) | | | | | facility maintenance |
76 | | facility management |
55, 212 | | failure costs |
143, 144 | | Failure costs |
140 | | fatigue failure |
205 | | fault detection |
22 | | FDS |
56 | | FEM |
270 | | FEM analysis |
262 | | Fick's law |
203 | | fictitious crack |
227 | | field monitoring |
14 | | financing |
200 | | fingerprinting |
49 | | finite element |
173, 211, 238, 241, 242, 250, 254, 255, 259, 263
| | finite element analysis |
237, 258, 269 | | finite element method |
232, 234, 246 | | finite strip method |
266 | | fire risk management |
34 | | fire safety |
12, 33 | | folded plates |
229 | | four-dimensional information |
58 | | framework |
67 | | free vibration analysis |
270 | | FRP-grid reinforcement |
238 | | FSEC |
34 | | functional design |
156 | | functional simulation |
28 | | functional use |
65 | | fuzzy |
199 | | fuzzy project scheduling |
107 | | fuzzy SAW |
142 | | fuzzy sets theory |
141 | | FWD |
242 | |
G         (top) | | | | | game |
301 | | game engine |
292 | | gaming |
298 | | generation |
66 | | genetic algorithms |
106, 128, 168, 186, 197, 198, 199, 201, 204, 209
| | genetic programming |
207 | | geometrical nonlinearity |
232 | | geoportals |
217 | | geostatistics |
102 | | GIS |
56, 57, 59, 61, 62, 63, 64, 65, 66, 68, 204 | | global teamwork |
150 | | GPS |
54, 218 | | GQJS |
269 | | gradient-enhanced models |
239 | | granular material |
243 | | graph networks |
33 | | graph theory |
189, 193 | | Grasshopper |
176 | | green urban planning |
3 | | green urbanization |
3 | | ground-borne vibration |
272, 276 | |
H         (top) | | | | | HCI toolkits |
11 | | health and safety |
62 | | health monitoring |
223 | | Helmholtz resonator |
274 | | heterogeneous soil |
244 | | high elevation |
5 | | higher-order shear deformation |
236 | | high-performance computing platform |
174 | | highway |
8, 58, 216 | | highway alignment |
201 | | highway construction |
95 | | highway work zones |
128 | | hindrances |
104 | | hive-grid target |
40 | | holistic design framework |
82 | | homeostat |
43 | | homogenization |
238 | | house-building |
113 | | human computer interaction |
14, 28 | | humidity |
115 | | HVAC components |
22 | | HVAC systems |
118 | | hybrid |
267 | | hybrid HVAC systems |
116 | | hydraulic experiment |
291 | | hydrology |
66 | | hydrostatic pressure |
247 | |
I         (top) | | | | | ICT |
109, 286 | | identification of points |
169 | | IFC |
41, 73, 74, 86, 89, 91, 94 | | IFC standard |
166 | | image processing |
36, 37, 38, 41, 42, 191 | | immersive environment |
33 | | impact risk |
136 | | implementation |
93 | | IMU |
49 | | incentives |
160 | | indoor climate |
183 | | indoor localization |
49 | | indoor tracking |
52 | | industry foundation classes |
23 | | infilled frame |
257 | | infiltration |
203 | | information |
2 | | information architecture |
100 | | information delivery manual |
156 | | information dissemination method |
20 | | information extraction |
94 | | information flow |
51, 55 | | information management |
100 | | information resources |
89 | | information retrieval |
98 | | information technology |
63, 112 | | information visualization |
11 | | infrastructure |
215 | | infrastructure informatics |
1 | | infrastructure management |
1, 217 | | instant feedback |
287 | | institution location |
65 | | insurance |
139 | | integral design |
168, 192 | | integrated design |
85, 288 | | integrated design and delivery solutions |
161 | | integration |
81, 162 | | integrative building design |
151 | | intelligent |
199 | | intelligent building |
43 | | intelligent construction site |
124 | | interaction experience |
286 | | interdependency |
136 | | interdisciplinary studio |
288 | | interface |
10 | | interoperability |
101, 161, 302 | | investment sites |
65 | | IOP tool |
104 | | IPD |
3 | | IRMP |
34 | | isogeometric analysis |
231 | | IT |
158 | | IT capability |
132 | | IT future |
161 | | IT investment |
105 | | IT success |
105, 132 | |
J         (top) | | | | |
K         (top) | | | | | key performance indicators |
79 | | key technology |
165 | | kNN |
49 | | knowledge discovery |
45 | | knowledge management |
98, 191 | |
L         (top) | | | | | labour cost |
113 | | laminated rubber bearing |
263 | | land use |
63 | | landmark |
60 | | landscape design |
8 | | large modular structures |
192 | | layout planning |
15 | | learning |
286, 301 | | learning preferences |
294 | | LEED® certification |
81 | | lessons learned |
135 | | LiDAR |
215 | | life cycle |
1, 75 | | life cycle cost |
87, 108, 180 | | life cycle management |
114 | | life cycle performance assessment |
213 | | light commercial |
19 | | lighting design |
190 | | limit analysis |
238 | | linear programming |
202 | | linear project |
62 | | litigation prediction |
145 | | local property coefficient |
235 | | localization |
239 | | logical conflict |
7 | | long span |
267 | | long stay cable |
268 | | longitudinal approximating functions |
229 | | low impact building |
82 | |
M         (top) | | | | | machine learning |
178 | | magneto-electro-elastic material |
253 | | maintenance |
155, 262 | | maintenance and rehabilitation |
216 | | maintenance changes |
76 | | maintenance planning |
76 | | management information system |
96 | | management system |
58 | | man-machine systems |
138 | | manufacturing |
55 | | mapping |
66, 97 | | marker |
4 | | masonry wall panel |
235 | | massive data sets |
1 | | material management |
51 | | material supplier |
110 | | mathematical modelling |
202 | | MDO |
151 | | measurement accuracy |
39 | | mechanical behaviour |
206 | | mechanical properties |
237 | | media |
150 | | mediation |
279 | | metadata |
100 | | metamodeling |
88 | | metrics |
121 | | micromodeling |
88 | | mind mapping |
278 | | mixed reality |
4 | | mobile clients |
22 | | mobile computing |
94 | | mobile device application |
63 | | mobile user |
54 | | mobile workstation |
32 | | modal analysis |
274 | | model |
31, 228, 260 | | model adaptation |
226 | | model based working |
290 | | model versioning |
159 | | modelling |
26, 65, 148 | | modelling technique |
254 | | models |
2, 83, 111 | | model-updating |
226 | | modified compression field |
236 | | Mohr-Coulomb criterion |
245 | | molecular dynamics simulations |
251 | | monitoring |
214, 221 | | Monte Carlo simulation |
141, 143, 144 | | Moodle |
297 | | motion planning |
53 | | MRT |
219 | | multi-agent systems |
50, 103, 146, 214 | | multi-core computers |
42 | | multicriteria optimization |
172 | | multi-media |
282 | | multi-objective genetic algorithm |
187 | | multiobjective optimization |
200 | | multi-scale finite element |
267 | | municipal road |
59 | |
N         (top) | | | | | nanotechnology |
184 | | nano-to-meter-scale building |
184 | | natural disaster |
135 | | natural disaster chain |
31 | | network |
152, 223 | | network-based schedules |
137 | | neural network |
133, 208 | | non-intrusive load monitoring |
47 | | nonlinear |
241 | | nonlinear analysis |
209, 233, 261 | | nonlinear element model |
222 | | nonlinear stiffness |
227 | | nonlocal continuum |
239 | | non-standard and interactive architecture |
73 | | NURBS |
231 | |
O         (top) | | | | | object versioning |
74 | | object-oriented |
80, 89 | | on-line |
282 | | ontology |
98, 101, 103, 113, 157, 280 | | open information exchange |
75 | | OpenBIM |
302 | | OpenGL |
23 | | operator-based modelling |
231 | | optimal design decision |
172 | | optimal premium |
139 | | optimisation |
182, 190, 194, 204 | | optimization |
17, 120, 128, 186, 198, 199, 201, 209, 216, 230
| | organisational readiness |
105 | | organisational soft issues |
132 | | organization |
129 | | organizational and technological reliability |
138 | | organizational-centered |
111 | | OTR |
138 | | outcome-based education |
300 | | out-of-plane loading |
257 | | overall thermal transfer value |
84 | | owner |
142 | |
P         (top) | | | | | panel zone |
265 | | parallel computing |
42 | | parallel technology |
163 | | parameterization |
80 | | parametric |
192 | | parametric design |
73, 194 | | parametric modelling |
95, 168 | | parametric systems modeling |
151 | | partially-restrained |
233 | | passive control |
173 | | passive solar |
192 | | pavement distress detection |
37 | | pavement management |
37 | | pavement management systems |
216 | | pavement stiffness |
242 | | PDR |
54 | | people and IT |
132 | | performance index |
203 | | performance measurement |
117 | | performance monitoring |
11 | | performance-based analysis |
170 | | performance-based maintenance |
22 | | performance-oriented |
192 | | performance-oriented design |
168 | | personalized ventilation |
44 | | photogrammetry |
39 | | physical |
286 | | physical conflict |
7 | | pile foundation |
272 | | pile foundations |
275 | | piles |
241 | | pile-soil-pile interaction |
272 | | pipeline |
62 | | PKPM software |
166 | | planning |
5, 16, 19, 129, 189, 193 | | planning of residential area |
187 | | plastic dissipation energy |
245 | | plastic hinge |
209 | | plasticity |
230 | | poroelasticity |
277 | | position tracking |
54 | | positioning method |
4 | | possibility theory |
141 | | post-earthquake reconnaissance |
36 | | precast concrete |
197 | | precedence |
126 | | prediction software |
275 | | prefabricated construction |
50 | | prequalification |
142 | | pressure hulls |
247, 249 | | prevention performance |
219 | | prevention system |
219 | | process and IT |
132 | | process change |
69 | | process modelling |
18 | | process monitoring |
120 | | process oriented product model interface |
156 | | process performance |
140 | | process simulation |
78 | | process-based life-cycle analysis |
198 | | procurement |
69 | | product and process model |
99 | | product data model |
58 | | product modelling |
41, 88, 162 | | productivity |
35, 130, 282 | | productivity analysis |
11 | | productivity improvement |
50 | | productivity monitoring |
124 | | programming language |
280 | | progress |
117 | | progressive collapse |
25 | | project management |
127, 285 | | project optimization |
121 | | project performance |
147 | | property retrieval |
36 | | pseudo excitation method |
266 | |
Q         (top) | | | | | qualitative benefits |
131 | | quantity surveying |
108 | | quasibrittle materials |
230 | |
R         (top) | | | | | R square |
203 | | radio frequency identification |
51 | | railway |
165 | | RBAC |
157 | | RBS connection |
264 | | RBS joints |
265 | | RC beam |
236 | | RC beams |
227 | | RC structures with special columns |
222 | | realistic model |
23 | | real-time location system |
53 | | re-analysis |
287 | | reasoning |
99 | | re-entrant area |
171 | | reference collection |
98 | | refurbishment |
180 | | reinforced concrete |
208 | | reliability |
228 | | remote |
152 | | remote sensing |
217 | | renewable energy |
135 | | representational programming |
176 | | requirement analysis |
118 | | requirements management |
149 | | re-representation |
150 | | resilience engineering |
21 | | resilient |
2 | | resource allocation |
123 | | resource sharing |
278 | | resource-levelling |
125 | | response and recovery |
32 | | response displacement |
221 | | retrofit |
19 | | return on investment |
77 | | RFID |
49, 50, 55, 114, 212, 221 | | RFID security |
114 | | ring-stiffened |
250 | | risk |
121, 143, 185 | | risk analysis |
31 | | risk identification |
140 | | Risk identification |
144 | | risk map |
62 | | risk modelling |
140 | | road construction |
202 | | robustness |
169 | | role-based information access |
157 | | rotation |
207 | | rubber concrete |
206 | |
S         (top) | | | | | safety |
21, 115, 131 | | safety analysis |
90 | | safety and security |
30 | | safety training |
29 | | scaffold |
262 | | scale |
60 | | schedule |
117 | | schedule quality |
137 | | scheduling |
121, 122, 126, 127, 200 | | search engines |
102, 278 | | second order effects |
261 | | sedimentation |
241 | | seismic risk |
68 | | self-repair |
225 | | semantic Web |
97 | | semi-analytical finite strip |
229 | | semi-rigid |
233 | | semi-rigid connection |
209 | | semi-rigid joints |
207, 262 | | sensitivity |
131 | | sensor data |
220 | | sensor placement |
118 | | serially connected isolated system |
263 | | serious games |
298 | | serious gaming |
12 | | shakedown analysis |
245 | | Sharjah City |
68 | | shear |
208 | | SHS joints |
256 | | shuffled complex evolution |
210 | | Sign asset inventory |
38 | | sign inventory |
42 | | similarity |
106 | | simulated annealing |
122 | | simulation |
15, 19, 25, 26, 96, 101, 120, 126, 155, 197, 215, 268, 299, 301 | | simulation game |
9 | | simulation-based optimization |
122 | | single-step method |
270 | | singularity |
228 | | site layout planning |
133, 134 | | smart structures |
214 | | smoke hazards |
56 | | social bookmarking |
278 | | social spaces |
286 | | software design practices |
175 | | software development |
175 | | soil |
273 | | soil-structure interaction |
275 | | solar performance |
195, 196 | | solid modelling |
231 | | solute transport |
244 | | sorts |
176 | | space analysis |
188 | | space layout |
189, 193 | | space perception |
60 | | space syntax |
188 | | space trusses |
232 | | space-connector model |
188 | | spatial constraints |
17 | | spatial data |
67 | | spatial data sharing |
67 | | spatial pattern |
133 | | spatial relation |
188 | | SPEA2 |
187 | | stability |
228, 232, 263 | | stakeholders |
160 | | standard |
97 | | standard queries |
102 | | steel connection |
254 | | steel fibre-reinforced concrete |
237 | | steel frames |
233 | | steel rigid connection |
264 | | steelwork connections |
255 | | stiffness |
264 | | stochastic |
96 | | stochastic finite element |
244 | | stochastic search |
225 | | stone arch bridge |
25 | | strategy |
105 | | structural design |
247 | | structural durability |
86 | | structural dynamics |
234 | | structural health monitoring |
226, 227 | | structural identification |
224 | | structural optimization |
210 | | structural safety |
90, 261 | | structural simulation |
28, 287 | | structural-performance |
221 | | structurational analysis |
279 | | structurational model of technology |
279 | | subcontractor |
123 | | submarines |
247, 248, 249 | | sub-pixel analysis |
40 | | subsidence |
273 | | successful education |
295 | | successful intelligence |
295 | | supermodeling |
88 | | support vector machines |
145 | | surface and underground trains |
276 | | survey |
70 | | survey and design |
165 | | surveying |
293 | | surveyor education |
292 | | sustainability |
178, 179 | | sustainable building design |
177 | | sustainable design |
85 | | sustainable development |
284 | | sustainable energy |
26 | | sustainable infrastructure |
3 | | system dynamics |
21 | | system identification |
226 | |
T         (top) | | | | | tag information |
110 | | tall building |
129 | | tangible display |
8 | | taxonomy |
100 | | teaching quality |
300 | | teamwork |
286 | | technical drawings |
169 | | technology |
279 | | technology skill assessment |
294 | | technology-enhanced instruction |
294 | | temperature |
115 | | temporal logic |
126 | | temporary facility |
7 | | tensegrity structures |
225 | | territorial planning |
65 | | text mining |
61 | | thermal comfort |
48 | | thermal response |
224 | | thermal simulation |
185 | | thin-layer method |
273 | | time history analysis |
264 | | time integration |
234 | | time–cost integration |
80 | | time-dependent |
270 | | time-history analysis |
233 | | toroidal shell |
253 | | torsion-stiffness |
271 | | tower-crane |
131 | | track intrusion |
219 | | trade-off |
180 | | traffic accident |
59 | | traffic simulation |
28 | | training |
285, 290, 296 | | transport schemes |
10 | | transportation construction |
112 | | truss |
210 | | tube face bending |
256 | |
U         (top) | | | | | ultimate bearing capacity |
241 | | ultrasonic sensor |
29 | | uncertainty |
141 | | underground railway |
272, 273 | | United Arab Emirates |
68 | | university curricula |
290 | | unsaturated soil |
244 | | unsupervised clustering |
133 | | user challenges |
70 | | user cost |
128 | | user interaction |
287 | | user-centered design |
291 | | UWB |
52 | |
V         (top) | | | | | variation |
235 | | vaulted roof |
195 | | very fast simulation |
27 | | vibration |
253, 273, 274 | | vibration mitigation |
268 | | video interpretation |
35 | | virtual |
286 | | virtual construction |
23, 78 | | virtual design and construction |
77 | | virtual environment |
284, 293 | | virtual equipment |
291, 292 | | virtual learning environment |
280 | | virtual reality |
7, 8, 12, 29, 33, 41, 283 | | virtual sensors |
116 | | viscous damper |
173 | | visual quality inspection |
191 | | visualization |
13, 14, 18, 21, 182, 281, 287 | | vulnerability |
136 | |
W         (top) | | | | | walls |
196 | | waste |
181 | | waste estimation |
82 | | water distribution networks |
204 | | web-based |
300 | | web-enabled |
164 | | wind turbine |
135, 214 | | wireless sensors |
223 | | wireless technology |
115 | | WLAN |
49 | | wood framing |
167 | | workflow |
153 | | working memory |
6 | | workspace |
7 | | WSNs |
46 | |
X         (top) | | | | | Xbox |
292 | | XML |
94 | | XNA |
292 | |
Y         (top) | | | | |
Z         (top) | | | |
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